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            f = 3e4;
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              signal: t
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            jT: () => n,
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            OV: () => s,
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            wD: () => d
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            c = n.K7.softNav,
            d = 5e3,
            u = 500,
            l = {
              INITIAL_PAGE_LOAD: "",
              ROUTE_CHANGE: 1,
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            f = {
              INTERACTION: 1,
              AJAX: 2,
              CUSTOM_END: 3,
              CUSTOM_TRACER: 4
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            h = {
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                  date: !1,
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                  month: !1,
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                  range: !1,
                  search: !1,
                  tel: !1,
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                  time: !1,
                  url: !1,
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                  textarea: !1,
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                  enabled: !0,
                  autoStart: !0
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                  error_sampling_rate: 100,
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              drained: !0,
              type: "lifecycle",
              name: "load",
              feature: void 0,
              data: e
            })));
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        },
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            RI: () => i,
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            bv: () => s,
            eN: () => h,
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            lR: () => l,
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            mw: () => a,
            sb: () => u
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        },
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            TZ: () => i,
            Ug: () => o,
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              Load: 1,
              FullSnapshot: 2,
              IncrementalSnapshot: 3,
              Meta: 4,
              Custom: 5
            },
            c = {
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              [n.g.FULL]: 3e5,
              [n.g.OFF]: 0
            },
            d = {
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                message: "Session was reset",
                sm: "Reset"
              },
              IMPORT: {
                message: "Recorder failed to import",
                sm: "Import"
              },
              TOO_MANY: {
                message: "429: Too Many Requests",
                sm: "Too-Many"
              },
              TOO_BIG: {
                message: "Payload was too large",
                sm: "Too-Big"
              },
              CROSS_TAB: {
                message: "Session Entity was set to OFF on another tab",
                sm: "Cross-Tab"
              },
              ENTITLEMENTS: {
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                sm: "Entitlement"
              }
            },
            u = 5e3,
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              SWITCH_TO_FULL: "switchToFull",
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              PRELOAD: "preload"
            };
        },
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                e.apply(this, r);
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            };
          }
          function i(e) {
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        },
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          r.d(t, {
            T: () => n
          });
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          r.d(t, {
            T: () => n
          });
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        },
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          r.d(t, {
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          });
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            return !0;
          }
          function s(e) {
            return void 0 === e.hostname;
          }
          function o(e) {
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              let r = e[t];
              if (!r) continue;
              if ("*" === r) return void (n = [{
                hostname: "*"
              }]);
              0 === r.indexOf("http://") ? r = r.substring(7) : 0 === r.indexOf("https://") && (r = r.substring(8));
              const i = r.indexOf("/");
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                pathname: a(o, !0)
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          }
        },
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          r.d(t, {
            D: () => i
          });
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              protocol: "data"
            };
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                  port: t.port,
                  hostname: t.hostname,
                  pathname: t.pathname,
                  search: t.search,
                  protocol: t.protocol.slice(0, t.protocol.indexOf(":")),
                  sameOrigin: t.protocol === n.gm?.location?.protocol && t.host === n.gm?.location?.host
                };
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for authors</span></span></a></div></section></div></div><div class="sd-flex-content about-section-container "><div class="about-content-wrapper"><div class="about-content"><div><h2 class="js-journal-info-heading about-section-heading u-h3 u-clr-grey8 u-margin-s-bottom">About the journal</h2><div class="col-xs-24 col-lg-24"><div class="u-margin-xs-bottom text-s"><div data-focus-guard="true" tabindex="-1" style="width:1px;height:0px;padding:0;overflow:hidden;position:fixed;top:1px;left:1px"></div><div data-focus-lock-disabled="disabled"><div class="slide-out u-padding-m-hor" style="height:0" role="dialog" aria-label="Slideout panel"><div class="header-container u-padding-m-ver"><h2 class="title-slideout u-h3 u-text-light" tabindex="-1">Aims &amp; Scope</h2><button type="button" class="button button-secondary close-button button-icon-only" aria-disabled="false" aria-label="close panel"><svg focusable="false" viewBox="0 0 70 128" height="20" class="icon icon-cross"><path d="M68.94 36.12L62 29 35 56 8 29l-7 7 27 27L1 90l7 7 27-27 27 27 7-7-27-27 26.94-26.88"></path></svg></button></div><span class="spaced"><p>Official Journal of: <a href="http://www.gcmas.org/">Gait and Clinical Movement Analysis Society (GCMAS)</a>, <a href="http://www.esmac.org/">European Society of Movement Analysis in Adults and Children (ESMAC)</a>, <a href="http://www.siamoc.it/">Società Italiana di Analisi del Movimento in Clinica (SIAMOC)</a>, and the <a href="http://ispgr.org/cpages/homepage">International Society for Posture and Gait Research (ISPGR)</a> and the <a href="https://nam11.safelinks.protection.outlook.com/?url=https%3A%2F%2Fwww.g-a-m-m-a.org%2F&amp;data=05%7C02%7CI.Garcia%40elsevier.com%7Cec88482b5ed245f102c208dd7e1dfcd1%7C9274ee3f94254109a27f9fb15c10675d%7C0%7C0%7C638805389474474777%7CUnknown%7CTWFpbGZsb3d8eyJFbXB0eU1hcGkiOnRydWUsIlYiOiIwLjAuMDAwMCIsIlAiOiJXaW4zMiIsIkFOIjoiTWFpbCIsIldUIjoyfQ%3D%3D%7C0%7C%7C%7C&amp;sdata=rEAgpwstFdZthQa95p9BeOtEdZmEkuSHest2GplYMwg%3D&amp;reserved=0">German Speaking Society for the Analysis of Human Motor Function and its Clinical Application (GAMMA)</a>.&nbsp;&nbsp;<i>Gait &amp; Posture</i> publishes new and innovative basic and clinical research on all aspects of human movement, locomotion and balance.</p><p>The topics covered include: Techniques for the measurement of <b>gait</b> and <b>posture</b>, and the standardization of results presentation; Studies of normal and <b>pathological gait</b>; Treatment of gait and <b>postural abnormalities</b>; Biomechanical and theoretical approaches to gait and posture; Mathematical models of <b>joint</b> and <b>muscle mechanics</b>; <b>Neurological</b> and <b>musculoskeletal</b> function in gait and posture; The evolution of <b>upright posture</b> and <b>bipedal locomotion</b>; Adaptations of carrying loads, walking on uneven surfaces, climbing stairs etc, running and performing other movements. Spinal biomechanics only if they are directly related to gait and/or dynamic posture and are of general interest to our readers; The effect of aging and development on gait and posture; Psychological and cultural aspects of gait; Patient education. Papers related to efficacy and mechanisms of gait analysis in decision making. The journal is primarily focused on dynamic aspects of human movement and postural control.</p><p>Index bound in last issue of year.</p><p>For details of the <a href="http://www.gcmas.org/">GCMAS</a>, <a href="http://www.esmac.org/">ESMAC</a>, <a href="http://www.siamoc.it/">SIAMOC</a>, <a href="http://www.ispgr.org/">ISPGR</a> please visit their web sites through these links.</p></span></div></div><div data-focus-guard="true" tabindex="-1" style="width:1px;height:0px;padding:0;overflow:hidden;position:fixed;top:1px;left:1px"></div><p class="js-content-container u-margin-m-bottom"><p>Official Journal of: <a href="http://www.gcmas.org/">Gait and Clinical Movement Analysis Society (GCMAS)</a>, <a href="http://www.esmac.org/">European Society of Movement Analysis in Adults and Children (ESMAC)</a>, <a href="http://www.siamoc.it/">Società Italiana di Analisi del Movimento in Clinica (SIAMOC)</a>, and the <a href="http://ispgr.org/cpages/homepage">International Society for Posture and Gait Research (ISPGR)</a> and the <a href="https://nam11.safelinks.protection.outlook.com/?url=https%3A%2F%2Fwww.g-a-m-m-a.org%2F&amp;data=05%7C02%7CI.Garcia%40elsevier.com%7Cec88482b5ed245f102c208dd7e1dfcd1%7C9274ee3f94254109a27f9fb15c10675d%7C0%7C0%7C638805389474474777%7CUnknown%7CTWFpbGZsb3d8eyJFbXB0eU1hcGkiOnRydWUsIlYiOiIwLjAuMDAwMCIsIlAiOiJXaW4zMiIsIkFOIjoiTWFpbCIsIldUIjoyfQ%3D%3D%7C0%7C%7C%7C&amp;sdata=rEAgpwstFdZthQa95p9BeOtEdZmEkuSHest2GplYMwg%3D&amp;reserved=0">German Speaking …</a></p></p><button class="button-link button-link-primary" type="button" data-aa-button="aa-aims-scope-view-full"><span class="button-link-text-container"><span class="button-link-text">View full aims &amp; scope</span></span></button></div></div></div></div></div><div class="society-logo u-display-none-from-md"></div><div class="article-publishing-options"><h2 class="u-h3">Article publishing options</h2><div><div class="apc-subscription-group"><div><div class="publishing-option text-m"><h3 class="u-h4">Open Access</h3><div class="open-access"><div>Article Publishing Charge (APC): USD <!-- -->3,560<!-- --> (excluding taxes).<!-- --> <!-- -->The amount you pay may be reduced during submission if applicable.<div>Review<!-- --> <a class="anchor open-access-policy-link anchor-primary" href="/journal/gait-and-posture/publish/open-access-options"><span class="anchor-text-container"><span class="anchor-text">this journal’s open access policy.</span></span></a></div></div></div></div><div class=""><button type="button" class="button button-secondary text-s compare-apc-button" aria-disabled="false"><span class="button-text-container"><span class="button-text">Compare APCs for other journals<svg focusable="false" viewBox="0 0 54 128" height="20" aria-hidden="true" class="icon icon-navigate-right compare-apc-icon"><path d="M1 99l38-38L1 23l7-7 45 45-45 45z"></path></svg></span></span></button></div></div><div class="publishing-option text-m"><h3 class="u-h4">Subscription</h3><p>No publication fee charged to authors, and published articles are immediately available to subscribers.</p></div></div><div data-focus-guard="true" tabindex="-1" style="width:1px;height:0px;padding:0;overflow:hidden;position:fixed;top:1px;left:1px"></div><div data-focus-lock-disabled="disabled"><div class="slide-out u-padding-m-hor" style="height:0" role="dialog" aria-label="Slideout panel"><div class="header-container u-padding-m-ver"><h2 class="title-slideout u-h3 u-text-light" tabindex="-1"><span class="text-s">Journals</span></h2><button type="button" class="button button-secondary close-button button-icon-only" aria-disabled="false" aria-label="close panel"><svg focusable="false" viewBox="0 0 70 128" height="20" class="icon icon-cross"><path d="M68.94 36.12L62 29 35 56 8 29l-7 7 27 27L1 90l7 7 27-27 27 27 7-7-27-27 26.94-26.88"></path></svg></button></div><div class="apc-comparison"><div class="apc-comparison-title-section"><span class="block text-m">Compare article publishing charges (APCs) for other journals</span><div class="text-s">Add up to 5 journals (from Elsevier or other publishers) to the table below to compare with <b>Gait &amp; Posture<!-- -->.</b></div></div><div class="apc-comparison-table-wrapper"><div class="apc-comparison-table-section"><table><tbody><tr><th class="text-s u-text-bold">Journal Name</th><th class="text-s u-text-bold">Publisher</th><th class="text-s u-text-bold">APC</th><th class="text-s u-text-bold">Impact Factor</th><th class="text-s u-text-bold">CiteScore</th><th class="text-s u-text-bold"></th></tr><tr class="original-journal"><td class="text-xs"><div class="cell-container"><div class="u-text-bold">Gait &amp; Posture</div><div><div class="open-statement-item u-display-inline-block"><span class="js-open-statement-text open-statement-text">Supports <span class="u-text-italic">open access</span></span></div></div></div></td><td class="text-xs"><div class="cell-container"><div>Elsevier</div></div></td><td class="text-xs"><div class="cell-container"><div>USD 3,560</div></div></td><td class="text-xs"><div class="cell-container"><div>2.4</div></div></td><td class="text-xs"><div class="cell-container"><div>5.3</div></div></td><td class="text-xs"><div class="cell-container"><div></div></div></td></tr></tbody></table></div><div class="search-wrapper"><button type="button" class="button button-secondary button-icon-left" aria-disabled="false"><svg focusable="false" viewBox="0 0 86 128" height="20" class="icon icon-plus"><path d="M48 58V20H38v38H0v10h38v38h10V68h38V58z"></path></svg><span class="button-text-container"><span class="button-text">Add journals to compare</span></span></button></div></div><div class="text-xs apc-accordion-section"><ol class="accordion-container u-font-sans " role="tablist"><li class="accordion-panel"><button id="25189-accordion-tab-0" type="button" class="u-display-flex icon-right accordion-panel-title u-padding-xs-ver u-text-left" tabindex="0" role="tab" aria-expanded="false" 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id="metric-popover-Submissiontofirstdecision"><div id="popover-trigger-metric-popover-Submissiontofirstdecision"><button class="button-link button-link-primary button-link-icon-only" type="button" aria-label="Info on Submission to first decision" aria-expanded="false" aria-haspopup="true"><svg focusable="false" viewBox="0 0 128 128" height="20" class="icon icon-info"><path d="M63 8c-14.692 0-28.503 5.721-38.893 16.11C13.72 34.5 8 48.31 8 63c0 30.328 24.672 55 55 55h.01c14.688 0 28.497-5.72 38.883-16.105C112.28 91.505 118 77.692 118 63c0-30.328-24.672-55-55-55zm0 10c24.814 0 45 20.186 45 45 0 12.022-4.68 23.324-13.18 31.824A44.688 44.688 0 0 1 63.01 108h-.008C38.188 108 18 87.814 18 63c0-12.02 4.68-23.32 13.18-31.82S50.98 18 63 18zm-5 16v10h10V34H58zm0 18v40h10V52H58z"></path></svg></button></div></div><div class="label text-s">Submission to first decision</div></div><div class="metric u-padding-s-left" style="--border-color:#A35BBA"><span class="value u-h2">91<!-- --> days</span><div 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style="--border-color:#A35BBA"><span class="value u-h2">193<!-- --> days</span><div class="popover metric-popover u-margin-xs-left" id="metric-popover-Submissiontoacceptance"><div id="popover-trigger-metric-popover-Submissiontoacceptance"><button class="button-link button-link-primary button-link-icon-only" type="button" aria-label="Info on Submission to acceptance" aria-expanded="false" aria-haspopup="true"><svg focusable="false" viewBox="0 0 128 128" height="20" class="icon icon-info"><path d="M63 8c-14.692 0-28.503 5.721-38.893 16.11C13.72 34.5 8 48.31 8 63c0 30.328 24.672 55 55 55h.01c14.688 0 28.497-5.72 38.883-16.105C112.28 91.505 118 77.692 118 63c0-30.328-24.672-55-55-55zm0 10c24.814 0 45 20.186 45 45 0 12.022-4.68 23.324-13.18 31.824A44.688 44.688 0 0 1 63.01 108h-.008C38.188 108 18 87.814 18 63c0-12.02 4.68-23.32 13.18-31.82S50.98 18 63 18zm-5 16v10h10V34H58zm0 18v40h10V52H58z"></path></svg></button></div></div><div class="label text-s">Submission to acceptance</div></div><div class="metric u-padding-s-left" style="--border-color:#A35BBA"><span class="value u-h2">2<!-- --> days</span><div class="popover metric-popover u-margin-xs-left" id="metric-popover-Acceptancetoonlinepublication"><div id="popover-trigger-metric-popover-Acceptancetoonlinepublication"><button class="button-link button-link-primary button-link-icon-only" type="button" aria-label="Info on Acceptance to online publication" aria-expanded="false" aria-haspopup="true"><svg focusable="false" viewBox="0 0 128 128" height="20" class="icon icon-info"><path d="M63 8c-14.692 0-28.503 5.721-38.893 16.11C13.72 34.5 8 48.31 8 63c0 30.328 24.672 55 55 55h.01c14.688 0 28.497-5.72 38.883-16.105C112.28 91.505 118 77.692 118 63c0-30.328-24.672-55-55-55zm0 10c24.814 0 45 20.186 45 45 0 12.022-4.68 23.324-13.18 31.824A44.688 44.688 0 0 1 63.01 108h-.008C38.188 108 18 87.814 18 63c0-12.02 4.68-23.32 13.18-31.82S50.98 18 63 18zm-5 16v10h10V34H58zm0 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Chou, PhD" class="col-xs-4 u-display-inline-block editor-img js-editor-img"/></div><div class="editor-info-container"><div class="js-editor-name name" style="color:#000000">Professor L.-S. Chou, PhD</div><p class="js-editor-affiliation branded text-s u-margin-xs-top" style="color:#000000">Purdue University, Department of Health and Kinesiology, West Lafayette, Indiana, United States</p></div></div></div></div></div></section></div><section class="article-zone" id="article-zone" data-aa-region="aa-article-zone"><div class="grid u-margin-xs-top section-container"><div class="row"><div class="col-sm-24"><div class="u-margin-l-ver"><div class="section-heading-wrapper u-margin-l-ver"><h2 class="section-heading u-h3 js-article-zone-heading" style="--border-color:#A35BBA">Articles</h2></div></div></div></div><div class="col-sm-24"><div class="tabs"><ul class="tab-list" role="tablist" aria-label="Articles"><li class="tab tab-is-selected"><button id="latest-published-tab" type="button" class="tab-title" role="tab" aria-label="Latest published articles" aria-selected="true" aria-controls="latest-published-panel" data-aa-button="aa-latest-articles-tab" tabindex="0"><div class="u-h4">Latest published</div></button></li><li class="tab"><button id="articles-in-press-tab" type="button" class="tab-title" role="tab" aria-label="Articles in press" aria-selected="false" aria-controls="articles-in-press-panel" data-aa-button="aa-articles-in-press-tab" tabindex="-1"><div class="u-h4">Articles in press</div></button></li><li class="tab"><button id="top-cited-tab" type="button" class="tab-title" role="tab" aria-label="Top cited articles" aria-selected="false" aria-controls="top-cited-panel" data-aa-button="aa-top-cited-articles-tab" tabindex="-1"><div class="u-h4">Top cited</div></button></li><li class="tab"><button id="most-downloaded-tab" type="button" class="tab-title" role="tab" aria-label="Most downloaded articles" aria-selected="false" aria-controls="most-downloaded-panel" data-aa-button="aa-most-downloaded-articles-tab" tabindex="-1"><div class="u-h4">Most downloaded</div></button></li><li class="tab"><button id="most-popular-tab" type="button" class="tab-title" role="tab" aria-label="Most popular articles" aria-selected="false" aria-controls="most-popular-panel" data-aa-button="aa-most-popular-articles-tab" tabindex="-1"><div class="u-h4">Most popular</div></button></li></ul><div id="latest-published-panel" class="tab-panel tab-panel-is-selected" role="tabpanel" aria-labelledby="latest-published-tab"><div class="grid js-articles" data-aa-region="aa-latest-published"><div class="row gutters" id="latest-published-articles"><div class="col-sm-24 col-md-12 col-lg-6 js-article-item article-list-item"><div class="u-margin-s-ver u-margin-s-right card"><span class="article-info text-xs"><span class="js-article-subtype">Review article</span><span class="js-open-access"><span class="js-access-indicator u-margin-xs-hor access-indicator-no"></span>Abstract only</span></span><div class="u-font-serif"><div class="text-m u-display-inline"><a class="anchor js-article__item__title__link u-clr-grey8 anchor-primary" href="/science/article/pii/S0966636226001517" data-aa-name="Article title" id="S0966636226001517" usageZone="rslt_list_item"><span class="anchor-text-container"><span class="anchor-text"><span>Optimizing focal vibration therapy for balance and gait: A systematic review</span></span></span></a></div></div><div class="text-s u-clr-grey8 js-article__item__authors">Hongwu Wang, ... Kyle W. Ruffling</div><span class="u-clr-grey8 text-s js-article-item-date">October 2026</span><div hidden="">https://doi.org/10.1016/j.gaitpost.2026.110241</div></div></div><div class="col-sm-24 col-md-12 col-lg-6 js-article-item article-list-item"><div class="u-margin-s-ver u-margin-s-right card"><span class="article-info text-xs"><span class="js-article-subtype">Research article</span><span class="js-open-access"><span class="js-access-indicator u-margin-xs-hor access-indicator-no"></span>Abstract only</span></span><div class="u-font-serif"><div class="text-m u-display-inline"><a class="anchor js-article__item__title__link u-clr-grey8 anchor-primary" href="/science/article/pii/S0966636226001475" data-aa-name="Article title" id="S0966636226001475" usageZone="rslt_list_item"><span class="anchor-text-container"><span class="anchor-text"><span>Upper body kinematics during walking and their relationship to fall risk after stroke</span></span></span></a></div></div><div class="text-s u-clr-grey8 js-article__item__authors">Elissa Embrechts, ... Tamaya Van Criekinge</div><span class="u-clr-grey8 text-s js-article-item-date">October 2026</span><div hidden="">https://doi.org/10.1016/j.gaitpost.2026.110237</div></div></div><div class="col-sm-24 col-md-12 col-lg-6 js-article-item article-list-item"><div class="u-margin-s-ver u-margin-s-right card"><span class="article-info text-xs"><span class="js-article-subtype">Research article</span><span class="js-open-access"><span class="js-access-indicator u-margin-xs-hor access-indicator-no"></span>Abstract only</span></span><div class="u-font-serif"><div class="text-m u-display-inline"><a class="anchor js-article__item__title__link u-clr-grey8 anchor-primary" href="/science/article/pii/S0966636226001256" data-aa-name="Article title" id="S0966636226001256" usageZone="rslt_list_item"><span class="anchor-text-container"><span class="anchor-text"><span>Predicting minimum toe clearance in older adults on different surfaces from level ground data: A machine learning approach</span></span></span></a></div></div><div class="text-s u-clr-grey8 js-article__item__authors">Sylvester Carter, Abolfazl Saghafi</div><span class="u-clr-grey8 text-s js-article-item-date">September 2026</span><div hidden="">https://doi.org/10.1016/j.gaitpost.2026.110215</div></div></div><div class="col-sm-24 col-md-12 col-lg-6 js-article-item article-list-item"><div class="u-margin-s-ver u-margin-s-right card"><span class="article-info text-xs"><span class="js-article-subtype">Research article</span><span class="js-open-access u-text-italic"><span class="js-access-indicator u-margin-xs-hor access-indicator-yes"></span>Open access</span></span><div class="u-font-serif"><div class="text-m u-display-inline"><a class="anchor js-article__item__title__link u-clr-grey8 anchor-primary" href="/science/article/pii/S0966636226001220" data-aa-name="Article title" id="S0966636226001220" usageZone="rslt_list_item"><span class="anchor-text-container"><span class="anchor-text"><span>Impact of height-induced postural threat and arm movement strategies while performing a semi-static balance task: Comparison of postural control and emotional state outcomes between children and young adults</span></span></span></a></div></div><div class="text-s u-clr-grey8 js-article__item__authors">Anna M. Wissmann, ... Johanna Lambrich</div><span class="u-clr-grey8 text-s js-article-item-date">September 2026</span><a class="anchor pdf-download text-s u-margin-xs-ver u-display-block anchor-primary anchor-icon-left anchor-with-icon" href="/science/article/pii/S0966636226001220/pdfft?md5=7afff944e1d0c14d728153a158b14d55&amp;pid=1-s2.0-S0966636226001220-main.pdf" target="_blank" data-aa-name="Pdf link" aria-describedby="S0966636226001220"><svg focusable="false" viewBox="0 0 35 32" height="20" class="icon icon-pdf-multicolor"><path d="M7 .362h17.875l6.763 6.1V31.64H6.948V16z" stroke="#000" stroke-width=".703" fill="#fff"></path><path d="M.167 2.592H22.39V9.72H.166z" fill="#da0000"></path><path fill="#fff9f9" d="M5.97 3.638h1.62c1.053 0 1.483.677 1.488 1.564.008.96-.6 1.564-1.492
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Qiuxia Zhang</div><span class="u-clr-grey8 text-s js-article-item-date">September 2026</span><div hidden="">https://doi.org/10.1016/j.gaitpost.2026.110211</div></div></div><div class="col-sm-24 col-md-12 col-lg-6 js-article-item article-list-item"><div class="u-margin-s-ver u-margin-s-right card"><span class="article-info text-xs"><span class="js-article-subtype">Research article</span><span class="js-open-access"><span class="js-access-indicator u-margin-xs-hor access-indicator-no"></span>Abstract only</span></span><div class="u-font-serif"><div class="text-m u-display-inline"><a class="anchor js-article__item__title__link u-clr-grey8 anchor-primary" href="/science/article/pii/S0966636226001372" data-aa-name="Article title" id="S0966636226001372" usageZone="rslt_list_item"><span class="anchor-text-container"><span class="anchor-text"><span>Ankle joint contact forces and muscle contributions during walking differentiate chronic ankle instability from copers and uninjured controls</span></span></span></a></div></div><div class="text-s u-clr-grey8 js-article__item__authors">Jaeho Jang, ... Erik A. Wikstrom</div><span class="u-clr-grey8 text-s js-article-item-date">September 2026</span><div hidden="">https://doi.org/10.1016/j.gaitpost.2026.110227</div></div></div><div class="col-sm-24 col-md-12 col-lg-6 js-article-item article-list-item"><div class="u-margin-s-ver u-margin-s-right card"><span class="article-info text-xs"><span class="js-article-subtype">Research article</span><span class="js-open-access"><span class="js-access-indicator u-margin-xs-hor access-indicator-no"></span>Abstract only</span></span><div class="u-font-serif"><div class="text-m u-display-inline"><a class="anchor js-article__item__title__link u-clr-grey8 anchor-primary" href="/science/article/pii/S096663622600127X" data-aa-name="Article title" id="S096663622600127X" usageZone="rslt_list_item"><span class="anchor-text-container"><span class="anchor-text"><span>Impact of leg length discrepancy on gait kinematics and biomechanics</span></span></span></a></div></div><div class="text-s u-clr-grey8 js-article__item__authors">Si Hyung Lew, ... Ki Hyuk Sung</div><span class="u-clr-grey8 text-s js-article-item-date">September 2026</span><div hidden="">https://doi.org/10.1016/j.gaitpost.2026.110217</div></div></div><div class="col-sm-24 col-md-12 col-lg-6 js-article-item article-list-item"><div class="u-margin-s-ver u-margin-s-right card"><span class="article-info text-xs"><span class="js-article-subtype">Research article</span><span class="js-open-access"><span class="js-access-indicator u-margin-xs-hor access-indicator-no"></span>Abstract only</span></span><div class="u-font-serif"><div class="text-m u-display-inline"><a class="anchor js-article__item__title__link u-clr-grey8 anchor-primary" href="/science/article/pii/S0966636226001207" data-aa-name="Article title" id="S0966636226001207" usageZone="rslt_list_item"><span class="anchor-text-container"><span class="anchor-text"><span>Interactive effects of drop height and visual deprivation on kinematic and electromyographic characteristics during single-leg landing in individuals with functional ankle instability</span></span></span></a></div></div><div class="text-s u-clr-grey8 js-article__item__authors">Lingyue Meng, ... Qiuxia Zhang</div><span class="u-clr-grey8 text-s js-article-item-date">September 2026</span><div hidden="">https://doi.org/10.1016/j.gaitpost.2026.110210</div></div></div></div><div class="row"><div class="col-sm-24"><div class="hor-line u-margin-xs-top"></div></div></div><div class="row"><div class="col-sm-24 u-margin-l-top u-margin-m-bottom u-margin-0-bottom-from-md"><a class="button-alternative js-listing-link button-alternative-primary button-alternative-icon-left" href="/journal/gait-and-posture/vol/130/suppl/C" usageZone="article_zone"><svg focusable="false" viewBox="0 0 54 128" height="20" class="icon icon-navigate-right"><path d="M1 99l38-38L1 23l7-7 45 45-45 45z"></path></svg><span class="button-alternative-text-container"><span class="button-alternative-text">Read latest issue</span></span></a></div></div></div></div><div id="articles-in-press-panel" class="tab-panel" role="tabpanel" aria-labelledby="articles-in-press-tab" hidden=""></div><div id="top-cited-panel" 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Clinical Translation</span></span></span></span></a></div><div><div><div class="text-s js-editors u-margin-xs-bottom">Edited by <span>Dr. Nigel<!-- --> <!-- -->Zheng</span>, <span>Professor Dongyun<!-- --> <!-- -->Gu</span>, <span>Dr. Anmin<!-- --> <!-- -->Liu</span></div></div></div><div class="text-s js-special-issue-date">25 March 2026</div></div></div><div class="col-sm-24 col-md-12 col-lg-6 u-padding-xs-ver"><div class="u-bg-white panel-s special-issue-card js-special-issue-card"><div class="text-m u-display-inline"><a class="anchor js-special-issue-link u-margin-xs-bottom anchor-primary" href="/journal/gait-and-posture/vol/122/suppl/S" data-aa-name="Special issue title"><span class="anchor-text-container"><span class="anchor-text"><span><span class="js-special-issue-title">Abstract of the 25th National Congress of the Italian Society of Clinical Movement Analysis (SIAMOC)</span></span></span></span></a></div><div></div><div class="text-s js-special-issue-date">October 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All rights are reserved, including those for text and data mining, AI training, and similar technologies.\",\"externalSerial\":false,\"aimsAndScopeV2\":\"&lt;p&gt;Official Journal of: &lt;a href=\\\"http://www.gcmas.org/\\\"&gt;Gait and Clinical Movement Analysis Society (GCMAS)&lt;/a&gt;, &lt;a href=\\\"http://www.esmac.org/\\\"&gt;European Society of Movement Analysis in Adults and Children (ESMAC)&lt;/a&gt;, &lt;a href=\\\"http://www.siamoc.it/\\\"&gt;Società Italiana di Analisi del Movimento in Clinica (SIAMOC)&lt;/a&gt;, and the &lt;a href=\\\"http://ispgr.org/cpages/homepage\\\"&gt;International Society for Posture and Gait Research (ISPGR)&lt;/a&gt; and the &lt;a href=\\\"https://nam11.safelinks.protection.outlook.com/?url=https%3A%2F%2Fwww.g-a-m-m-a.org%2F&data=05%7C02%7CI.Garcia%40elsevier.com%7Cec88482b5ed245f102c208dd7e1dfcd1%7C9274ee3f94254109a27f9fb15c10675d%7C0%7C0%7C638805389474474777%7CUnknown%7CTWFpbGZsb3d8eyJFbXB0eU1hcGkiOnRydWUsIlYiOiIwLjAuMDAwMCIsIlAiOiJXaW4zMiIsIkFOIjoiTWFpbCIsIldUIjoyfQ%3D%3D%7C0%7C%7C%7C&sdata=rEAgpwstFdZthQa95p9BeOtEdZmEkuSHest2GplYMwg%3D&reserved=0\\\"&gt;German Speaking Society for the Analysis of Human Motor Function and its Clinical Application (GAMMA)&lt;/a&gt;.&nbsp;&nbsp;&lt;i&gt;Gait &amp; Posture&lt;/i&gt; publishes new and innovative basic and clinical research on all aspects of human movement, locomotion and balance.&lt;/p&gt;&lt;p&gt;The topics covered include: Techniques for the measurement of &lt;b&gt;gait&lt;/b&gt; and &lt;b&gt;posture&lt;/b&gt;, and the standardization of results presentation; Studies of normal and &lt;b&gt;pathological gait&lt;/b&gt;; Treatment of gait and &lt;b&gt;postural abnormalities&lt;/b&gt;; Biomechanical and theoretical approaches to gait and posture; Mathematical models of &lt;b&gt;joint&lt;/b&gt; and &lt;b&gt;muscle mechanics&lt;/b&gt;; &lt;b&gt;Neurological&lt;/b&gt; and &lt;b&gt;musculoskeletal&lt;/b&gt; function in gait and posture; The evolution of &lt;b&gt;upright posture&lt;/b&gt; and &lt;b&gt;bipedal locomotion&lt;/b&gt;; Adaptations of carrying loads, walking on uneven surfaces, climbing stairs etc, running and performing other movements. Spinal biomechanics only if they are directly related to gait and/or dynamic posture and are of general interest to our readers; The effect of aging and development on gait and posture; Psychological and cultural aspects of gait; Patient education. Papers related to efficacy and mechanisms of gait analysis in decision making. 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Lafayette\\\",\\\"organisation\\\":\\\"Purdue University, Department of Health and Kinesiology\\\",\\\"lastName\\\":\\\"Chou\\\",\\\"initials\\\":\\\"L.-S.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=015Tl00000494tMIAQ&oid=00D1t000000qIy5EAE&lastMod=1710917220746\\\",\\\"fieldsOfInterest\\\":\\\"Motor learning/control,&nbsp;Dual tasking/attention/cognition,&nbsp;Obstacles/stepping,&nbsp;Stairs,&nbsp;Standing posture\\\",\\\"ecn\\\":139307,\\\"biography\\\":\\\"Li-Shan Chou is a professor and chair in Department of Kinesiology at the Iowa State University. He received his BS degree in Mechanical Engineering from Tatung Institute of Technology in Taiwan, and subsequently earned his MS and Ph.D. degrees, both in Mechanical Engineering, from University of Illinois at Chicago. He has served on the faculty of University of Oregon for 19 years before joining ISU in 2019. His interdisciplinary research investigates underlying mechanisms of mobility/balance impairments associated with aging, musculoskeletal diseases and injuries, and traumatic brain injury. Over his academic career, he has received extramural funding from the NIH, CDC, DOD, and Oregon Medical Research Foundation. Up to date, he has mentored 17 PhDs and many masters and undergraduate students, and his team published more than 125 peer-reviewed papers. His teaching is in the areas of biomechanical analysis of human movement, orthopedic biomechanics, and rehabilitation engineering. He serves as the Deputy Editor and Section Editor to Gait and Posture and Archives of Physical Medicine and Rehabilitation, respectively.\\\",\\\"accreditation\\\":\\\"PhD\\\"}]},{\\\"heading\\\":\\\"Deputy Editors\\\",\\\"entries\\\":[{\\\"type\\\":\\\"Member\\\",\\\"salutation\\\":\\\"Professor\\\",\\\"organisationRegion\\\":\\\"Queensland\\\",\\\"organisationCountry\\\":\\\"Australia\\\",\\\"organisationCity\\\":\\\"Gold Coast\\\",\\\"organisation\\\":\\\"Griffith University School of Medicine and Dentistry Deputy Head of School Research\\\",\\\"lastName\\\":\\\"Carty\\\",\\\"initials\\\":\\\"C.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0158e000000lIezAAE&oid=00D1t000000qIy5EAE&lastMod=1696568090764\\\",\\\"fieldsOfInterest\\\":\\\"IMUs and new technology,&nbsp;Statistical analysis,&nbsp;Non-linear analysis,&nbsp;Free living / activity monitoring,&nbsp;Virtual reality,&nbsp;Gait variability\\\",\\\"ecn\\\":209573,\\\"biography\\\":\\\"I am an exercise physiologist with a PhD in orthopaedic biomechanics. Throughout my career I have contributed to medical research and clinical service delivery by applying engineering principles in the clinical management of patients with movement disorders. These patients include young adults with bone cancer, older adults with an increased falls risk and children with cerebral palsy. I am currently appointed as Clinical Research Consultant for the Department of Orthopaedic Surgery in the Queensland Children’s Hospital and as Principal Research Fellow in the Griffith Centre of Biomedical and Rehabilitation Engineering at Griffith University. My current research programs focus on 1 research and development into innovative technologies computer simulation, machine learning, predictive modelling, and additive manufacturing, 2 prospective clinical interventions surgical and conservative and 3 big data registries to address significant medical issues in the field of orthopaedics.\\\",\\\"accreditation\\\":\\\"BScApp(HMS) PhD CF\\\"},{\\\"type\\\":\\\"Member\\\",\\\"salutation\\\":\\\"Assoc. Professor\\\",\\\"organisationCountry\\\":\\\"Australia\\\",\\\"organisationCity\\\":\\\"Brisbane\\\",\\\"organisation\\\":\\\"The University of Queensland School of Health and Rehabilitation Sciences\\\",\\\"lastName\\\":\\\"Hatton\\\",\\\"initials\\\":\\\"A.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=015Tl00000HvDMwIAN&oid=00D1t000000qIy5EAE&lastMod=1739251051531\\\",\\\"fieldsOfInterest\\\":\\\"Turning gait,&nbsp;Standing posture,&nbsp;Multiple Sclerosis,&nbsp;Parkinsons,&nbsp;Diabetes/neuropathy,&nbsp;Sensory integration/vision,&nbsp;Rehabilitation/physical therapy,&nbsp;Stroke,&nbsp;Adult neurorehabilitation\\\",\\\"ecn\\\":503655,\\\"biography\\\":\\\"Associate Professor Anna Hatton is Program Director of the Master of Physiotherapy Studies, and Director of the Centre for Neurorehabilitation, Ageing and Balance Research, at The University of Queensland. She was awarded a BScHons Physiotherapy 2005 and PhD in Rehabilitation Sciences 2010 from Teesside University, UK. Her program of research in partnership with multinational med-tech industry focuses on the development and evaluation of innovative footwear technology to enhance balance, mobility, physical activity, and prevent falls, in healthy and clinical populations. Her research related to foot sensory function and balance control has attracted funding from prestigious organisations including the National Health and Medical Research Council, British Geriatrics Society, and Australian Academy of Technological Sciences &amp; Engineering. She is an Executive Board member for the Australia and New Zealand Falls Prevention Society and International Society of Posture and Gait Research.\\\",\\\"accreditation\\\":\\\"PhD, BSc(Hons), Grad Cert (Higher Ed), FHEA, APAM\\\"}]},{\\\"heading\\\":\\\"Associate Editors\\\",\\\"entries\\\":[{\\\"type\\\":\\\"Member\\\",\\\"salutation\\\":\\\"Professor\\\",\\\"organisationPostalCode\\\":\\\"83229\\\",\\\"organisationCountry\\\":\\\"Germany\\\",\\\"organisationCity\\\":\\\"Aschau im Chiemgau\\\",\\\"organisation\\\":\\\"Treatment Center Aschau\\\",\\\"lastName\\\":\\\"Böhm\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=015Tl000006GqOzIAK&oid=00D1t000000qIy5EAE&lastMod=1715256561610\\\",\\\"firstName\\\":\\\"Harald\\\",\\\"fieldsOfInterest\\\":\\\"Sports,&nbsp;Running,&nbsp;Energy cost and balance in gait\\\",\\\"ecn\\\":140391,\\\"biography\\\":\\\"Prof. Dr. Harald Boehm is a distinguished expert in biomechanics and clinical movement analysis. He serves as Director of the Gait Laboratory at the Orthopedic Hospital for Children in Aschau, Germany, and holds a Professorship in Biomechanics of Orthopedic Technology at the University of Applied Science and Arts in Göttingen. With a Ph.D. in physics and postdoctoral qualification from the University of Technology in Munich, Dr. Boehm brings interdisciplinary insights to his research. He is in the executive board of the German Clinical Movement Analysis Society GAMMA. His research interests include sport technology, musculoskeletal simulation, orthotics evaluation in cerebral palsy, and clinical gait and running analysis.﻿\\\",\\\"accreditation\\\":\\\"PhD\\\"},{\\\"type\\\":\\\"Member\\\",\\\"salutation\\\":\\\"Dr.\\\",\\\"organisationStreet\\\":\\\"Aia Bldg 99164 New York Ave NW - 5610\\\",\\\"organisationRegion\\\":\\\"Washington\\\",\\\"organisationPostalCode\\\":\\\"99164\\\",\\\"organisationCountry\\\":\\\"United States\\\",\\\"organisationCity\\\":\\\"Pullman\\\",\\\"organisation\\\":\\\"Washington State University\\\",\\\"lastName\\\":\\\"Catena\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=015Sl00000EZRy9IAH&oid=00D1t000000qIy5EAE&lastMod=1779199072167\\\",\\\"firstName\\\":\\\"Robert\\\",\\\"fieldsOfInterest\\\":\\\"Pregnancy and postpartum,&nbsp;Sex differences,&nbsp;Bipedal evolution,&nbsp;Balance control,&nbsp;Slips/Trips/Falls,&nbsp;Cognitive and sensory inputs,&nbsp;Musculoskeletal functional anatomy\\\",\\\"ecn\\\":691082,\\\"biography\\\":\\\"Dr. Catena is an Associate Professor and Assistant Chair of Kinesiology at Washington State University WSU, teaching courses in biomechanics and anatomy. He also holds positions in Athletic Training, Mechanical Engineering, and Neuroscience. He earned his BS in Biology from the University of Alaska, Fairbanks, and PhD in Human Physiology from the University of Oregon. He then went on to a Post-Doc at Harvard School of Public Health in Occupational Biomechanics. Dr. Catena directs the Maternal Orthopedics &amp; Mechanics MOM Lab, where his research investigates the neuromechanical changes during pregnancy that increase the risk of physical injuries. These injuries can contribute to long-term orthopedic and physiological conditions in postpartum women. Dr. Catena’s work emphasizes gait and posture, recognizing that walking remains the most common form of physical activity for pregnant women, yet more than 25% experience falls during pregnancy. His research also explores how the pressures of pregnancy may have influenced human musculoskeletal evolution during the transition to bipedalism.\\\",\\\"accreditation\\\":\\\"PhD\\\"},{\\\"type\\\":\\\"Member\\\",\\\"salutation\\\":\\\"Professor\\\",\\\"organisationPostalCode\\\":\\\"10617\\\",\\\"organisationCountry\\\":\\\"Taiwan\\\",\\\"organisationCity\\\":\\\"Taipei City\\\",\\\"organisation\\\":\\\"National Taiwan University\\\",\\\"lastName\\\":\\\"Lu\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=015Tl00000DUMjbIAH&oid=00D1t000000qIy5EAE&lastMod=1729852538953\\\",\\\"firstName\\\":\\\"Tung-Wu\\\",\\\"fieldsOfInterest\\\":\\\"Posture standing and seated,&nbsp;Spine,&nbsp;Hip,&nbsp;Knee,&nbsp;Treadmill,&nbsp;Amputees\\\",\\\"ecn\\\":173585,\\\"biography\\\":\\\"Dr Tung-Wu Lu received his D.Phil. in Orthopaedic Engineering from the University of Oxford in 1997. He is currently a Professor at the Department of Biomedical Engineering and the Chair of the Health Science and Wellness Research Center at National Taiwan University. He is also a Board Director of Taiwan’s National Institute of Sports Sciences and a Fellow of the National Academy of Kinesiology NAK, USA. His research interests include human motion analysis, orthopaedic and imaging biomechanics, sports medicine, and wearable and assistive technology. He has published over 210 journal papers and delivered numerous conference presentations, including keynote and invited lectures. He received the New Investigator Recognition Award from the Orthopaedic Research Society USA, the Academic Award of the College of Engineering NTU, and more than 50 paper and innovation awards from professional societies, including the International and Taiwanese Society of Biomechanics. He has been Editor-in-Chief for “Biomedical Engineering: Applications, Basis, Communications” and “WS Annual Review of Biomechanics,” Associate Editor for Gait and Posture, and Editorial Board Member for several international journals, including the Journal of Biomechanics.Dr Lu has served as President of the Taiwanese Society of Biomechanics and the 3D Analysis of Human Movement Technical Group of the International Society of Biomechanics ISB. He is currently President of the Taiwanese Society of Movement Science and Technology, a World Council of Biomechanics member, and an executive council member of the ISB. He has co-chaired the 9th World Congress of Biomechanics 2022, the 3DAHM Symposium 2016, and scientific committees at several international conferences. He has also been a consultant to the sports, exercise, and medical industries and a reviewer for government research grants.\\\",\\\"accreditation\\\":\\\"D.Phil.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"salutation\\\":\\\"Dr.\\\",\\\"organisationRegion\\\":\\\"Colorado\\\",\\\"organisationPostalCode\\\":\\\"80045-7106\\\",\\\"organisationCountry\\\":\\\"United States\\\",\\\"organisationCity\\\":\\\"Aurora\\\",\\\"organisation\\\":\\\"Children's Hospital Colorado\\\",\\\"lastName\\\":\\\"Rhodes\\\",\\\"firstName\\\":\\\"Jason T.\\\",\\\"fieldsOfInterest\\\":\\\"Gait in children, Orthopaedic deformities, Surgery outcomes\\\",\\\"ecn\\\":527459,\\\"accreditation\\\":\\\"MD, MS\\\"},{\\\"type\\\":\\\"Member\\\",\\\"salutation\\\":\\\"Dr.\\\",\\\"organisationPostalCode\\\":\\\"4056\\\",\\\"organisationCountry\\\":\\\"Switzerland\\\",\\\"organisationCity\\\":\\\"Basel\\\",\\\"organisation\\\":\\\"University Children's Hospital Basel\\\",\\\"lastName\\\":\\\"Sangeux\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=015Tl00000CTVmJIAX&oid=00D1t000000qIy5EAE&lastMod=1727776901931\\\",\\\"firstName\\\":\\\"Morgan\\\",\\\"fieldsOfInterest\\\":\\\"Kinematic modelling,&nbsp;Musculoskeletal modelling,&nbsp;Soft tissue artefact,&nbsp;Medical imaging,&nbsp;Gait equipment,&nbsp;Machine learning,&nbsp;Normal gait,&nbsp;EMG - technical aspects\\\",\\\"ecn\\\":186689,\\\"biography\\\":\\\"Dr. Morgan Sangeux is the Scientific and technical director of the clinical motion analysis laboratory at the University Children’s Hospital in Basel, Switzerland. Dr. Sangeux has trained as a mechanical engineer and obtained a PhD (2006) and the Habilitation (2018) in Biomechanics and biomedical engineering from the Université de Technologie de Compiègne, France. Dr. Sangeux worked as the senior biomedical engineer of the gait laboratory at the Royal Children’s Hospital from 2007 to 2018, and as the group leader of Orthopaedics and gait analysis at the Murdoch Children’s Research Institute from 2014 to 2018. Dr. Sangeux has three main areas of research interests: 1- Collecting physiologically accurate motion analysis data, 2- Investigating the motor control of movement and its mechanical consequences on the musculoskeletal system, and 3- Utilising gait &amp; posture data as biomarkers to monitor diseases affecting the neuromusculoskeletal system.\\\",\\\"accreditation\\\":\\\"PhD\\\"},{\\\"type\\\":\\\"Member\\\",\\\"salutation\\\":\\\"Dr.\\\",\\\"organisationRegion\\\":\\\"Georgia\\\",\\\"organisationPostalCode\\\":\\\"30302-3965\\\",\\\"organisationCountry\\\":\\\"United States\\\",\\\"organisationCity\\\":\\\"Atlanta\\\",\\\"organisation\\\":\\\"Georgia State University\\\",\\\"lastName\\\":\\\"Yang\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=015Sl00000EZN9lIAH&oid=00D1t000000qIy5EAE&lastMod=1779193839331\\\",\\\"firstName\\\":\\\"Feng\\\",\\\"fieldsOfInterest\\\":\\\"Fall prevention,&nbsp;Fall risk assessment,&nbsp;Slips,&nbsp;trips,&nbsp;Balance control,&nbsp;Gait analysis,&nbsp;Motor rehabilitation,&nbsp;Computational biomechanics,&nbsp;Cognitive impairment,&nbsp;Tai Chi\\\",\\\"ecn\\\":644184,\\\"biography\\\":\\\"Dr. Feng Yang serves as a Professor and Director of the Biomechanics Laboratory within the Department of Kinesiology and Health at Georgia State University, where he also holds an adjunct appointment in Physical Therapy. He earned his PhD in Human-Machine Environment Engineering/Ergonomics from Beihang University, followed by postdoctoral training in Physical Therapy at the University of Illinois at Chicago. Dr. Yang’s research leverages interdisciplinary tools, including biomechanics, neuromuscular control, and computer simulation, to develop affordable and accessible neurorehabilitation treatments. His work specifically targets fall prevention for older adults and those living with neurological conditions such as multiple sclerosis, Parkinson&#39;s disease, Alzheimer’s disease, etc. As a widely recognized scholar, Dr. Yang has published over 100 articles in prestigious academic journals with the support of various funding agencies.\\\",\\\"accreditation\\\":\\\"PhD\\\"}]},{\\\"heading\\\":\\\"Statistical Advisor\\\",\\\"entries\\\":[{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"United Kingdom\\\",\\\"organisationCity\\\":\\\"Edinburgh\\\",\\\"organisation\\\":\\\"The University of Edinburgh\\\",\\\"lastName\\\":\\\"Prescott\\\",\\\"initials\\\":\\\"R.J.\\\",\\\"ecn\\\":115446,\\\"accreditation\\\":\\\"PhD\\\"}]},{\\\"heading\\\":\\\"Editorial Board\\\",\\\"entries\\\":[{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"United States\\\",\\\"organisationCity\\\":\\\"Suite\\\",\\\"lastName\\\":\\\"Alderink\\\",\\\"initials\\\":\\\"J\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=015Tl00000CU03hIAD&oid=00D1t000000qIy5EAE&lastMod=1727779341259\\\",\\\"fieldsOfInterest\\\":\\\"biomechanics of human movement,&nbsp;gait analysis,&nbsp;electromyography,&nbsp;posture and balance,&nbsp;non-linear dynamics,&nbsp;sport biomechanics eg,&nbsp;throwing\\\",\\\"ecn\\\":115465,\\\"biography\\\":\\\"I have a Bachelor of Arts degree in biology from Hope College Holland, MI. I received a physical therapy certificate from the Mayo School of Health-Related Sciences and was licensed in 1978. I spent 6 years in practice at The University of Michigan Hospitals and St. Joseph Mercy Hospital Ypsilanti, MI from 1978-1984. I completed my Master of Science in kinesiology School of Education, University of Michigan in 1983. I joined the physical therapy faculty at Grand Valley State University in 1984, where I stayed until I retired in 2021. I received my PhD in engineering mechanics from Michigan State University in 2003; my doctoral dissertation examined Fryette&#39;s Laws of intervertebral motion using three-dimensional motion capture. I developed two biomechanics laboratories: 1 a clinical motion analysis laboratory at Mary Free Bed Rehabilitation Hospital Grand Rapids, MI, where we focused on instrumented gait analysis for children with cerebral palsy. The MFB lab was one of the first clinical motion labs accredited by the Commission for Motion Laboratory Accreditation. and 2 the biomechanics and motor performance laboratory in the Department of Physical Therapy at Grand Valley State University. My research focused on normal and pathological gait, balance and postural control, running mechanics, spine mechanics, and pitching mechanics. I am a member of the American Physical Therapy Association, American Society of Biomechanics, and Gait and Clinical Movement Analysis Society I was a charter member of this society.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"Switzerland\\\",\\\"organisationCity\\\":\\\"St. Gallen\\\",\\\"lastName\\\":\\\"Alexander\\\",\\\"initials\\\":\\\"N.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=015Tl00000929wWIAQ&oid=00D1t000000qIy5EAE&lastMod=1720536968878\\\",\\\"fieldsOfInterest\\\":\\\"Clinical gait analysis\\\",\\\"ecn\\\":652153,\\\"biography\\\":\\\"Dr. Nathalie Alexander currently serves as the Head of the Laboratory for Motion Analysis at the Children’s Hospital of Eastern Switzerland, St. Gallen, and the Department of Orthopaedics and Traumatology, Cantonal Hospital St. Gallen, Switzerland. She also holds a position as an external lecturer at the University of Salzburg since March 2017.After studying Sports Equipment Technology BSc, including an internship in the Human Performance Lab at the University of Calgary under the supervision of Prof. Nigg and the International Master in Performance analysis in Sport, Dr. Nathalie Alexander completed her PhD at the University of Salzburg in 2016 and remained there until February 2017 as a research associate. In Feburaur 2023, she was a Visiting Research Fellow at the University of Jyväskylä. Currently, she is also pursuing a Master of Applied Information and Data Science at Hochschule Luzern, Switzerland.Dr. Nathalie Alexander actively participates in academic societies, serving on the boards of the Society for the Analysis of Human Motor Function and its Clinical Application GAMMA and the ESMAC Early Career Network. Her main research interest is clinical gait analysis, including topic of sloped walking, torsional deformities, musculoskeletal modelling and orthotics, amongst others and she has contributed to &gt; 30 publications.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"lastName\\\":\\\"Allum\\\",\\\"initials\\\":\\\"J.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0151t000000TFQaAAO&oid=00D1t000000qIy5\\\",\\\"fieldsOfInterest\\\":\\\"Human balance control, Vestibular and proprioceptive contributions to balance control, Neurophysiological tests of vestibular function, Effect of aging on balance control, Effect of anxiety on balance control, Balance prostheses\\\",\\\"ecn\\\":186700,\\\"biography\\\":\\\"Prof. Allum obtained his first degree (BSc) in mechanical engineering at Birmingham University, England. He held one of the first Kennedy Scholarships awarded for study at the MIT. After receiving his MSc and DSc in Biomedical Engineering at MIT, he worked for several years as a neurophysiologist and developer of medical diagnostic equipment, first at the University Neurology Clinic in Freiburg/Germany, and later at the Brain Research Institute in Zurich/Switzerland. He was head of the Department of Audiology and Neuro-otology at the University of Basel ORL Clinic in Switzerland for 32 years, where his main clinical duties included managing diagnostic and rehabilitation programs for patients with hearing and balance disorders. Currently, he works as a consultant on balance control for several University of Basel Hospital departments. His scientific interests are concentrated on understanding balance control in humans and developing balance prostheses. He has published over 250 peer-reviewed papers and several patents.&lt;br&gt;&lt;br&gt;&lt;br&gt;Areas of Expertise:&lt;br&gt;Human balance control, Vestibular and proprioceptive contributions to balance control, Neurophysiological tests of vestibular function, Effect of aging on balance control, Effect of anxiety on balance control, Balance prostheses&lt;br&gt;&lt;br&gt;\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"Lebanon\\\",\\\"organisationCity\\\":\\\"Beirut\\\",\\\"lastName\\\":\\\"Assi\\\",\\\"initials\\\":\\\"A.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=015Tl00000H3OTsIAN&oid=00D1t000000qIy5EAE&lastMod=1737385233050\\\",\\\"fieldsOfInterest\\\":\\\"Biomechanics,&nbsp;Orthopedics,&nbsp;Spine,&nbsp;Hip,&nbsp;Cerebral palsy,&nbsp;musculoskeletal modeling,&nbsp;3D gait analysis,&nbsp;movement analysis\\\",\\\"ecn\\\":552998,\\\"biography\\\":\\\"Ayman Assi is an engineer and holds a PhD in Biomechanics from Arts et Métiers in Paris. He is a professor and director of the Laboratory of Biomechanics and Medical Imaging at the Faculty of Medicine, University of Saint-Joseph in Beirut. Ayman is the president of the European Society for Movement analysis in Adults and Children (ESMAC) and an ambassador for the EUROSPINE society. His research activities focus on 3D subject-specific musculoskeletal modeling in the static position and during movement in the setting of cerebral palsy, adolescent idiopathic scoliosis and adult spinal deformity among other orthopedic derangements.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"Canada\\\",\\\"organisationCity\\\":\\\"Calgary\\\",\\\"lastName\\\":\\\"Benson\\\",\\\"initials\\\":\\\"L.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0154L000000xt9hQAA&oid=00D1t000000qIy5EAE&lastMod=1630507901501\\\",\\\"ecn\\\":553001,\\\"biography\\\":\\\"Lauren Benson got her PhD in Biomechanics at the University of Wisconsin-Milwaukee in 2016. Through 2020, she was a Postdoctoral Fellow at the University of Calgary and a member of the Sport Injury Prevention Research Centre. She is currently a data scientist for the United States Olympic and Paralympic Committee. Her interests are in using wearable sensors to monitor movement quantity and quality, with the goal of preventing injuries and improving performance.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"Sweden\\\",\\\"organisationCity\\\":\\\"Stockholm\\\",\\\"lastName\\\":\\\"Brostrom\\\",\\\"initials\\\":\\\"E\\\",\\\"fieldsOfInterest\\\":\\\"Pediatrics,&nbsp;gait analysis,&nbsp;rheumatology,&nbsp;orthopedics,&nbsp;motion analysis,&nbsp;motor disorders\\\",\\\"ecn\\\":140400,\\\"biography\\\":\\\"Broströms research involves children and adults who have problems with the musculoskeletal systemBroströms research group have the results been quickly transferred to clinical practice, where for example gait analysis and functional tests are now used in investigations to select a treatment method and to evaluate treatment outcomes. Currently, Broströms research focuses, in collaboration with other research groups nationally and internationally, on developing and using measures for patient experience, physical activity and treatment outcomes in paediatrics.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"Australia\\\",\\\"organisationCity\\\":\\\"Sydney\\\",\\\"lastName\\\":\\\"Burns\\\",\\\"initials\\\":\\\"J\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0154L000000ghPYQAY&oid=00D1t000000qIy5EAE&lastMod=1611552898457\\\",\\\"ecn\\\":140592,\\\"biography\\\":\\\"Professor Burns focuses on the musculoskeletal consequences of nerve, muscle and brain disorders. He leads biomechanical research related to the care of children and adults with neuromuscular disorders (e.g. Charcot-Marie-Tooth disease), congenital deformities (e.g. pes cavus), brain injury (e.g. Cerebral Palsy), joint disease (e.g. osteoarthritis) and chronic pain (e.g. heel and ankle pain), as well as understanding normal human variation (e.g. 1000 Norms Project)\\\"},{\\\"type\\\":\\\"Member\\\",\\\"lastName\\\":\\\"Carpenter\\\",\\\"initials\\\":\\\"M.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0154L000000ghPiQAI&oid=00D1t000000qIy5EAE&lastMod=1611553287817\\\",\\\"ecn\\\":196086,\\\"biography\\\":\\\"Dr. Mark Carpenter is a Professor in the School of Kinesiology at The University of British Columbia (UBC). After receiving his PhD in Kinesiology at the University of Waterloo in 2001, Dr. Carpenter completed a post-doctoral fellowship at the Karolinska Institute in Stockholm, Sweden, before joining UBC as a CIHR funded Canada Research Chair in 2005.&lt;br&gt; &lt;br&gt;Dr. Carpenter’s research applies novel combinations of biomechanical and neurophysiological techniques to examine the central and peripheral mechanisms that contribute to static and dynamic balance control. His research aims to understand the neuro-muscular and cognitive-emotional factors that contribute to healthy balance control and balance deficits associated with aging, proprioceptive and vestibular loss, and Parkinson’s disease.&lt;br&gt; &lt;br&gt;He has a long history of involvement with the International Society of Posture and Gait Research (ISPGR), serving as ISPGR Board Treasurer (2009-2014), Vice-President (2014-2016) and President (2016-2018) and Co-host of the 2014 ISPGR World Congress.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"United States\\\",\\\"organisationCity\\\":\\\"San Diego\\\",\\\"lastName\\\":\\\"Chambers\\\",\\\"initials\\\":\\\"H.G.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0154L000000zStrQAE&oid=00D1t000000qIy5EAE&lastMod=1643812739834\\\",\\\"fieldsOfInterest\\\":\\\"San Diego, CA, USA\\\",\\\"ecn\\\":225727,\\\"biography\\\":\\\"Hank Chambers, MD is a pediatric orthopedic surgeon at Rady Children’s Hospital in San Diego. He also serves as a Professor of Clinical Orthopedic Surgery at the University of California, San Diego.  After medical school at Tulane University School of Medicine, he completed an orthopedic surgery residency at Brooke Army Medical Center in San Antonio, TX.  He finished a pediatric orthopedic surgery fellowship in San Diego under David Sutherland, Scott Mubarak and Dennis Wenger in 1990.&lt;br&gt;Dr Chambers is currently the David Sutherland MD Director of Cerebral Palsy Research at Rady Children’s Hospital. He is also the Program Director of Rady Children’s Orthopedic Surgery Education Program. Hank was the Chief of Staff at Rady Children’s Hospital San Diego from 2004-2006 and currently serves as Co-director of the 360 Sports Medicine Program.   He is active nationally in many organizations including the American Academy of Orthopedic Surgeons, the Pediatric Orthopedic Society of North America, and the American Academy of Pediatrics. He is a Past President of the American Academy for Cerebral Palsy and Developmental Medicine and is also the Past President of PRISM, a pediatric sports medicine research society which he co-founded. He as been fortunate to have been the visiting professor at over 90 institutions throughout the world and has been recognized as one of the Top Doctors in San Diego, Best Doctors in America, Top Doctors in the US News and World Report and Who’s Who in America and in the World.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"China\\\",\\\"organisationCity\\\":\\\"Shanghai\\\",\\\"lastName\\\":\\\"Chen\\\",\\\"initials\\\":\\\"W.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=015Sl00000D8K8XIAV&oid=00D1t000000qIy5EAE&lastMod=1767790830160\\\",\\\"fieldsOfInterest\\\":\\\"Foot and ankle biomechanics,&nbsp;Gait dynamics,&nbsp;Bionic leg for amputee,&nbsp;Walking-assistive exoskeleton\\\",\\\"ecn\\\":690740,\\\"biography\\\":\\\"Wenming Chen received the Ph.D. degree in biomedical engineering from the National University of Singapore, Singapore, in 2011. He finished his Postdoctoral Training with the Biomechanical Engineering Research Group, University of Melbourne, Australia, from 2011 to 2013, where he continued to work as a Research Fellow, from 2013 to 2016. He is currently a Professor with the Institute of Trustworthy Embodied Artificial Intelligence at Fudan University, the Director of Fudan Biomech-X Lab, and a Principal Investigator with Shanghai Innovation Institute, Shanghai, China. He holds several prestigious positions, including the Secretary-General of the Biomechanics Committee of the Shanghai Biomedical Engineering Society, a Steering Committee Member of the Biomechanics and Rehabilitation Devices Branch of the Chinese Society for Biomaterials, a Committee Member of the Digital Medicine Branch of the Chinese Medical Association, a Committee Member in Working Group on Performance Evaluation Methods for Exoskeleton Robots by the Ministry of Industry and Information Technology, the State Council of the People&#39;s Republic of China. His research interests include musculoskeletal biomechanics, bio-inspired prosthesis and exoskeleton, with particular emphasis on the foot and ankle complex. To date, he has published more than 70 peer-reviewed articles in international journals, 4 book chapters and over 60 conference proceedings. He has served as a reviewer for J Biomech, Ann Biomed Eng, IEEE TRO, IEEE TNSRE and IEEE JBHI etc and Editorial Board of Applied Bionics and Biomechanics etc. He was a receipt of Martyn Shorten Award for Innovation by International Society of Biomechanics, Yamaguchi Medal in Soft Tissue Mechanics by the Asian-Pacific Association for Biomechanics and also served as Scientific Program co-Chair of the 12th International Convention on Rehabilitation Engineering and Assistive Technology i-CREATe.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"lastName\\\":\\\"Chong\\\",\\\"initials\\\":\\\"R\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0151t000000TEm9AAG&oid=00D1t000000qIy5\\\",\\\"ecn\\\":140394,\\\"biography\\\":\\\"I am director of the AU Human Movement Science lab. I have extensive experience and expertise in carrying out human postural control assessments (encompassing electromyography, kinematic and kinetic analyses) in various populations including individuals with Parkinson&#39;s disease (PD). My dissertation mentors were Drs. Fay Horak, Marjorie Woollacott and the late Steven Keele. I am first author and corresponding author in &gt;70% of my publications.&lt;br&gt;I have been conducting research in PD since my PhD training. I have accumulated extensive experience and expertise in carrying out manual and computerized physical function assessments since then, working with several hundred PD patients in my experiments.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"lastName\\\":\\\"Cimolin\\\",\\\"initials\\\":\\\"V.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0151t000000TFZEAA4&oid=00D1t000000qIy5\\\",\\\"ecn\\\":196087,\\\"biography\\\":\\\"Veronica Cimolin has a Master degree in Bioengineering from the Politecnico di Milano in 2002 and has obtained a PhD degree in Bioengineering in 2007 at Politecnico di Milano on the quantitative analysis of movement for the assessment of functional limitation in children with Cerebral Palsy. At present she is Researcher at the Department of Electronics, Information and Bioengineering of Politecnico di Milano and she works at “Luigi Divieti” Posture and Movement Analysis Laboratory. Her research activity is in the field of quantitative movement analysis for clinical and rehabilitative applications and she is involved in the activity of several movement analysis laboratories of national and international institutes. &lt;br&gt;She is teacher of the course “Impianti ospedalieri e sicurezza”. She is the author of several peer reviewed international papers.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"Canada\\\",\\\"organisationCity\\\":\\\"Waterloo\\\",\\\"lastName\\\":\\\"Cinelli\\\",\\\"initials\\\":\\\"Eric\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=015Tl00000CUynuIAD&oid=00D1t000000qIy5EAE&lastMod=1727799285075\\\",\\\"fieldsOfInterest\\\":\\\"Percepton-action integration,&nbsp;human locomotion,&nbsp;collision avoidance\\\",\\\"ecn\\\":196098,\\\"biography\\\":\\\"I completed my Ph.D. in Behavioural and Cognitive Neuroscience from the University of Waterloo in 2006 where I was supervised by Dr. Aftab Patla. Following my Ph.D., I was awarded a two-year CIHR postdoctoral fellowship to work with Dr. Bill Warren in the Department of Cognitive and Linguistic Sciences at Brown University in Providence, Rhode Island. In 2008, I was hired by the Department of Kinesiology and Physical Education at Wilfrid Laurier University on a tenure-track position. In 2013 I was promoted to Associate Professor and in 2021 I was promoted to Professor. Over the last 16 years, my students and I have been fortunate to receive funding via NSERC, Mitacs, and Inria (France) to better understand decision-making in collision avoidance situations and what factors affect behaviours. I am extremely fortunate to have been supervised by Aftab and Bill who are two of the most influential researchers in the area of visual control of locomotion and I would not be where I am today without their guidance and support.My research is primarily focused on the perceptual and cognitive factors that affect the control of locomotion as well as measuring and understanding the changes in the dynamic control of locomotion in cluttered environments over a life span. My research provides insights into how the brain processes sensory information and executes skilled behaviours in everyday situations. My research interests have also been directed towards understanding perception-action integration dysfunctions in concussed individuals.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"Australia\\\",\\\"organisationCity\\\":\\\"Queensland\\\",\\\"lastName\\\":\\\"Clark\\\",\\\"initials\\\":\\\"R.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0154L000000zSxFQAU&oid=00D1t000000qIy5EAE&lastMod=1643815544002\\\",\\\"fieldsOfInterest\\\":\\\"IMUs and new technology,&nbsp;Statistical analysis,&nbsp;Non-linear analysis,&nbsp;Free living / activity monitoring,&nbsp;Virtual reality,&nbsp;Gait variability\\\",\\\"ecn\\\":561640,\\\"biography\\\":\\\"Dr Clark is an internationally recognised expert in the field of physical function assessment with a focus on creating and validating low-cost alternatives to laboratory tests. He has published &gt;150 research articles, including 19 in Gait and Posture of which two were the most cited articles of their publication year (2010 and 2012). For this work he was awarded the International Society of Posture and Gait Research – Promising Young Scientist award in 2014. Dr Clark has worked and published across a broad spectrum of clinical populations including paediatrics, cancer, brain injury, multiple sclerosis, chronic obstructive pulmonary disease and rheumatism. He is currently an Associate Professor and Senior Research Fellow at the University of the Sunshine Coast in Australia.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"United States\\\",\\\"organisationCity\\\":\\\"Sacramento\\\",\\\"lastName\\\":\\\"Davids\\\",\\\"initials\\\":\\\"R.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=015Tl00000H74uoIAB&oid=00D1t000000qIy5EAE&lastMod=1737500791859\\\",\\\"fieldsOfInterest\\\":\\\"Pediatric Orthopaedics,&nbsp;Motion Analysis\\\",\\\"ecn\\\":115478,\\\"biography\\\":\\\"Jon R. Davids, MD is a board certified Pediatric Orthopaedic Surgeon, who is the Assistant Chief of Orthopaedics and Medical Director of the Motion Analysis Laboratory at the Shriners Hospitals for Children Northern California; and Professor and Ben Ali Chair in Pediatric Orthopaedics in the Department of Orthopaedics at the University of California Davis Medical School in Sacramento, California, USA. &lt;br&gt;Jon has published and lectured extensively at regional, national and international levels, teaching gait analysis interpretation and clinical applications for children with cerebral palsy, myelodysplasia, and limb deficiency. He is also an active member of the American Academy of Cerebral Palsy and Developmental Medicine AACPDM, American Academy of Orthopaedic Surgeons AAOS, American Board of Orthopaedic Surgeons ABOS, Pediatric Orthopaedic Society of North America POSNA, American Orthopaedic Association AOA and the Gait and Clinical Movement Analysis Society GCMAS. In addition to Gait &amp; Psoture, Jon serves on the editorial board of the Journal of Pediatric Orthopaedics, and on the Board of Directors of the Foundation for Advancing Pediatric Orthopaedics.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"United Kingdom\\\",\\\"organisationCity\\\":\\\"London\\\",\\\"lastName\\\":\\\"Day\\\",\\\"initials\\\":\\\"B.\\\",\\\"ecn\\\":115462},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"Belgium\\\",\\\"organisationCity\\\":\\\"Leuven\\\",\\\"lastName\\\":\\\"Desloovere\\\",\\\"initials\\\":\\\"K.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0154L000000ghQHQAY&oid=00D1t000000qIy5EAE&lastMod=1611554876633\\\",\\\"fieldsOfInterest\\\":\\\"Gait analysis in patients with cerebral palsy, Intrinsic morphological muscle and tendon architecture in patients with neurological problems, Assessment of spasticity, Assessment of muscle weakness in patients with neuromotor problems, Tone reduction treatment in patients with neuromotor problems, Associations between neuromuscular impairments and pathological gait, Normal development of gait and upper limb motion, Intervention studies to improve gait in patients with neuromotor development, Classification of pathological gait, Gait rehabilitation\\\",\\\"ecn\\\":186691,\\\"biography\\\":\\\"Kaat Desloovere obtained her Master’s degree in Physical Education and Kinesiology (1989) and obtained her Doctoral degree (1996) at the Katholieke Universiteit (KU) Leuven, Belgium. During her first post-doc years, she set-up the Clinical Motion Analysis Laboratory (CMAL) at the University Hospitals of Leuven and worked full-time at the CMAL as expert in clinical motion analysis and as service and research manager. Since the start of her academic career as a part-time professor at the Department of Rehabilitation Sciences (2003), she has been acting as an academic liaison between the Department of Rehabilitation Sciences and the University Hospitals of the KU Leuven. Kaat Desloovere has been focusing her research on clinical motion analysis, mainly in children with cerebral palsy, which required close collaboration and solid integration of several medical, paramedical and engineering disciplines. The clear link to the clinical field is a unique aspect of her multidisciplinary research and it creates a strong translational dimension. Kaat Desloovere became full professor (2009) and was awarded by the KU Leuven with a BOF/ZAP research professorship (2013), allowing her to focus full-time on the consolidation and growth of the research program. Her research interest is in clinical motion analysis in different patient groups, with special focus on the relation between clinical motion data (mainly gait) and underlying neuromuscular impairments. The study activities are structured in three solid research lines: (1) Methodological studies on assessments of neuromuscular symptoms and pathological function; (2) Fundamental studies on the underlying mechanisms of neuromuscular symptoms and pathological gait; and (3) Intervention studies to validate novel methods and to ensure transfer to the clinic. The current research pathways are strongly focused on advanced analysis of muscle behavior by means of muscle imaging in patients with neurological and neuromuscular diseases characterized by spasticity and weakness.&lt;br&gt;Kaat Desloovere is guiding a multidisciplinary group of +/- 15 researchers, including PhD students, Post Doc fellows and scientific co-workers (with technical as well as clinical backgrounds). In parallel, she is guiding the clinical team of 5 to 8 co-workers at the Clinical Motion Analysis Laboratory of the University Hospitals Leuven, which supplies the required high-tech infrastructure for advanced clinical motion analysis, usable for both clinical and research purposes. Kaat Desloovere has established intensive national and international collaboration with different leading research centers in clinical movement analysis. Several past and ongoing research projects resulted in a continuously growing scientific output (&gt;150 peer-reviewed scientific papers) and she has many contributions to international meetings (+/- 20 per year).&lt;br&gt;&lt;br&gt;&lt;br&gt;Specific areas of interest:&lt;br&gt;Gait analysis in patients with cerebral palsy, Intrinsic morphological muscle and tendon architecture in patients with neurological problems, Assessment of spasticity, Assessment of muscle weakness in patients with neuromotor problems, Tone reduction treatment in patients with neuromotor problems, Associations between neuromuscular impairments and pathological gait, Normal development of gait and upper limb motion, Intervention studies to improve gait in patients with neuromotor development, Classification of pathological gait, Gait rehabilitation\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"Switzerland\\\",\\\"organisationCity\\\":\\\"Zürich\\\",\\\"lastName\\\":\\\"Dietz\\\",\\\"initials\\\":\\\"V.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=015Tl00000CTpMrIAL&oid=00D1t000000qIy5EAE&lastMod=1727779050208\\\",\\\"fieldsOfInterest\\\":\\\"Neurology,&nbsp;Neurophysiology,&nbsp;clinical neurophysiology\\\",\\\"ecn\\\":115485,\\\"biography\\\":\\\"Director of spianl cord Cebter University of zürich, Chair of neurology panel MDR of EMA (Eur Medicines Agency\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"Canada\\\",\\\"organisationCity\\\":\\\"Montreal\\\",\\\"lastName\\\":\\\"Dixon\\\",\\\"initials\\\":\\\"C\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0158e000000UMLJAA4&oid=00D1t000000qIy5EAE&lastMod=1689271147951\\\",\\\"fieldsOfInterest\\\":\\\"biomechanics,&nbsp;gait analysis,&nbsp;wearable sensors,&nbsp;machine learning\\\",\\\"ecn\\\":552994,\\\"biography\\\":\\\"D.r Dixon is an assistant Professor at the University of Montreal with more than 15 years of experience in biomechanicalresearch in academia and industry. He has expertise in biomechanical modelling of human movement, such as walking and running, frommotion capture and wearable sensors and in-depth knowledge of machine learning predictive analytics. Theoverall aim of Dr. Dixon&#39;s work is to improve mobility and health in the general population as well as those withmusculoskeletal injury or disorders. Through his work, he has improved biomechanical models, developedopen-source software, and generated novel machine-learning applications. Dr. Dixon has advanced sport science, kinesiology,and biomechanics via a scientifically rigorous, relevant, and well-funded independent research program.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"United States\\\",\\\"organisationCity\\\":\\\"St. Louis\\\",\\\"lastName\\\":\\\"Earhart\\\",\\\"initials\\\":\\\"G.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0154L000000ghQMQAY&oid=00D1t000000qIy5EAE&lastMod=1611555019251\\\",\\\"ecn\\\":140591,\\\"biography\\\":\\\"Gammon M. Earhart, PT, PhD, is a physical therapist and movement scientist. She completed both her undergraduate and graduate physical therapy training at Arcadia University, followed by a PhD in Movement Science at Washington University in St. Louis, and a postdoctoral fellowship at Oregon Health &amp; Science University. She is currently Professor of Physical Therapy, Neuroscience and Neurology at Washington University in St. Louis where she is Director of the Program in Physical Therapy. Since 2004, she has been working with people with Parkinson’s disease to better understand the neural mechanisms underlying their movement challenges and address these challenges with novel rehabilitation strategies.&lt;br&gt; &lt;br&gt;&lt;br&gt;\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"Japan\\\",\\\"organisationCity\\\":\\\"Otawara\\\",\\\"lastName\\\":\\\"Ehara\\\",\\\"initials\\\":\\\"Y.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0154L000000zfjaQAA&oid=00D1t000000qIy5EAE&lastMod=1645711104037\\\",\\\"ecn\\\":115476,\\\"biography\\\":\\\"I am Yoshihiro Ehara. I was very much interested when I was in primary school student in the device called cohere detector which was used by Guglielmo Marconi for the invention of wireless telecommunication. So, I studied electric engineering at a university and made the detector by myself successfully. Around that time, I attended a lecture presented by prof Ichiro Kato of Waseda University about the development of artificial arms for children suffering from thalidomide. His work stimulated me very much and I decided to be a rehabilitation engineer. I studied gait analysis under Dr J.Perry. Then I got a job in the Kanagawa Rehabilitation Center as a research engineer. My first mission was to establish a Gait Lab. I used four flying-spot-scanner type TV cameras to detect 8 small electric miniature bulbs attached to a patient. The bulbs required a power supply through cables because landmarks need to be very bright. A small computer (although big as your home refrigerator) calculated the 3D location of the landmarks to create a stick diagram of the patient. After 30 years, I transferred to Niigata University of Health and Welfare. Now I am teaching basic biomechanics for Prosthetics and Orthotics students.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"United Kingdom\\\",\\\"organisationCity\\\":\\\"Newcastle Upon Tyne\\\",\\\"lastName\\\":\\\"Galna\\\",\\\"initials\\\":\\\"B.\\\",\\\"ecn\\\":140569},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"Italy\\\",\\\"organisationCity\\\":\\\"Chieti\\\",\\\"lastName\\\":\\\"Gennaro\\\",\\\"initials\\\":\\\"F.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=015Sl00000DAl6DIAT&oid=00D1t000000qIy5EAE&lastMod=1768056979984\\\",\\\"fieldsOfInterest\\\":\\\"Neurophysiology,&nbsp;Sport Sciences,&nbsp;Human Movement Sciences,&nbsp;Sport Medicine,&nbsp;Physiology,&nbsp;Neuroscience\\\",\\\"ecn\\\":654543,\\\"biography\\\":\\\"Dr. Federico Gennaro’s research focuses on the neurophysiological mechanisms underlying motor control, with a particular emphasis on electrocortical dynamics and corticomuscular connectivity. Since June 2024, Dr. Gennaro serves on the Editorial Board of Gait &amp; Posture, contributing to the advancement of research in motor control, neurophysiology, and related aspects of gait and posture.Dr. Gennaro graduated cum laude with special mention from the University of Turin in 2014, earning an MSc in Sciences and Techniques of Adapted Physical Activities, following a BSc in Physical Education and Sport and a specialization course in Kinesiology from the same institution. He was awarded his doctoral degree from the Swiss Federal Institute of Technology Dr. sc. ETH Zurich in 2020, where he researched corticospinal control and connectivity during human locomotion in older adults with and without sarcopenia, at the Institute of Human Movement Sciences and Sport, Department of Health Sciences and Technology.Dr. Gennaro advanced his research through postdoctoral work at prestigious institutions: Italian Institute of Technology 2020–2021, Children’s Hospital Los Angeles 2021–2022, University of California, Los Angeles UCLA; 2022–2023. During this time, he developed mobile brain/body imaging MoBI techniques and assessed corticokinematic/corticomuscular coherence across a variety of motor tasks and populations, including but not limited to visuomotor tasks in healthy adults, infant motor development and grasping, and gait tasks in Parkinson’s disease patients.In February 2023, Dr. Gennaro joined the University of Padova as a researcher, a position he held until September 2025, before taking on his current role as Assistant Professor at ‘G. d’Annunzio’ University of Chieti-Pescara in October 2025.In addition to his research, at ‘G. d’Annunzio’ University of Chieti-Pescara Dr. Gennaro teaches Postural Control and Biomechanics in the PhD program in Kinesiology, Physical Activity and Health Promotion in the MSc in Sciences and Techniques of Preventive and Adapted Physical Activities, and Theory and Methodology of Human Movement in the BSc in Physical Activities and Sport Sciences. Previously, at the University of Padova, he taught Technologies for Sport Performance Analysis in both the BSc in Physical Activities and Sport Sciences and the PhD program in Brain, Mind, and Computer Science, as well as Theory and Methodology of Fitness in the BSc in Physical Activities and Sport Sciences.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"Germany\\\",\\\"organisationCity\\\":\\\"Heidelberg\\\",\\\"lastName\\\":\\\"Götze\\\",\\\"initials\\\":\\\"M.\\\",\\\"fieldsOfInterest\\\":\\\"Cerebral palsy,&nbsp;HSP,&nbsp;Botox/spasticity management,&nbsp;Prostheses\\\",\\\"ecn\\\":584354},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"Australia\\\",\\\"organisationCity\\\":\\\"Melbourne\\\",\\\"lastName\\\":\\\"Graham\\\",\\\"initials\\\":\\\"K.\\\",\\\"ecn\\\":186694},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"China\\\",\\\"organisationCity\\\":\\\"Shanghai\\\",\\\"lastName\\\":\\\"Gu\\\",\\\"initials\\\":\\\"D.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=015Sl00000Eg9V3IAJ&oid=00D1t000000qIy5EAE&lastMod=1780305499325\\\",\\\"fieldsOfInterest\\\":\\\"gait&amp;posture,&nbsp;movement biomechanics,&nbsp;orthopaedic biomechanics,&nbsp;wearable technologies,&nbsp;neuro-musculoskeletal rehabilitation engineering\\\",\\\"ecn\\\":622156,\\\"biography\\\":\\\"Dr. Dongyun Gu is currently Professor in the Department of Orthopaedic Surgery of Shanghai Ninth People&#39;s Hospital affiliated with Shanghai Jiao Tong University School of Medicine and holds a joint appointment with the School of Biomedical Engineering of Shanghai Jiao Tong University. She serves as the Deputy Director of the Engineering Research Center of Digital Medicine under the Ministry of Education. Her research interests include gait and movement disorder analysis, neuromuscular biomechanics, wearable technologies, machine learning, and rehabilitation engineering. Her research group investigates human gait and balance disorders affected by physical disabilities, neurological disorders, musculoskeletal pathologies, and age-related diseases, with the goal of developing rehabilitation interventions and improving clinical decision-making. They also focus on developing wearable technologies for human movement monitoring, fall risk assessment, and deep learning-based pathological gait recognition. Dr. Gu is an Associate Editor of IEEE Transactions on Neural Systems and Rehabilitation Engineering, a core member of the STF (Slips, Trips, and Falls) Technical Committee of the International Ergonomics Association (IEA), a member of the international scientific committee of 3DAHM (3D Analysis of Human Movement), and a member of the Standing Committee of Digital Medicine of the Chinese Medical Association.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"China\\\",\\\"organisationCity\\\":\\\"Ningbo\\\",\\\"lastName\\\":\\\"Gu\\\",\\\"initials\\\":\\\"Y.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=015Sl00000DWDYvIAP&oid=00D1t000000qIy5EAE&lastMod=1770537544489\\\",\\\"fieldsOfInterest\\\":\\\"biomechanics,&nbsp;foot,&nbsp;physical activity\\\",\\\"ecn\\\":655885},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"Netherlands\\\",\\\"organisationCity\\\":\\\"Amsterdam\\\",\\\"lastName\\\":\\\"Harlaar\\\",\\\"initials\\\":\\\"J.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0154L000000zSupQAE&oid=00D1t000000qIy5EAE&lastMod=1643813556389\\\",\\\"ecn\\\":186695,\\\"biography\\\":\\\"Jaap Harlaar was educated as an electrical engineer at the University of Twente (Enschede, the Netherlands) where he specialized in biomedical engineering, with a focus on electroneurophysiological instrumentation, signal processing and computational simulations. My professional career started at the department of rehabilitation medicine of the VU University Medical Center, where he designed, developed and evaluated several instruments for the assessment of motor function to assist clinical decision making. That was at the dawn of desktop computers. In the nineties Jaap build a laboratory for clinical movement analysis based on multimedia technology, and obtained a PhD at the VU University in 1998. After 2000 he also became lecturer at the department of human movement sciences, and became full professor at VUmc in 2012 with a chair in clinical movement analysis. His professional activities (research, education, technology development related to biomechanics of human movement)) have always been characterized by an intense collaboration with clinicians. Until 2012 mainly in the area of neurorehabilitation, especially paediatric physiatrists regarding gait in children with cerebral palsy, with some focus on orthotics. More recently Jaap started a research program on the biomechanics of gait knee osteoarthritis. Until 2017 Jaap was the executive director of the movement laboratories of the VUmc Rehabilitation Department, i.e an overground gaitlab, a Virtual Reality gaitlab, am exercise physiology lab and a neuromuscular lab.&lt;br&gt;&lt;br&gt;&lt;br&gt;Since 2017 Jaaps’ main affilition is at Delft University of Technology, department of biomechanical engineering, where he hold a chair in clinical biomechatronics, and serve as director of the educational program technical medicine. Both activities are in strong collaboration with Leiden University Medical Center and Erasmus Medical Center Rotterdam. Since 2021 Jaap also holds a chair in clinical biomechanics at the department of orthopedis of Erasmus medica l cneter , and holds a honory chair as Medical Delta professor&lt;br&gt; &lt;br&gt;Jaap served as president at the board of ESMAC (European Society of Clinical Movement Analysis), from 2010-2015 , and organized the first joint ESMAC-GCMAS meeting in 2006 in Amsterdam, which still is the largest international congress on clinical movement analysis . Jaap is also co-founder and past president of SMALLL (Dutch chapter of ESMAC). Jaap also served as president of ISPO-NL (International Society of Prosthetics and Orthotics, Netherlands), and member of ISPO International Scientific Committee holding the scientific chair of ISPO 2015 in Lyon. He was co-lead in many ineternational research collaborations, including participation in the EU networks MD-Paedigree (on gait in CP) , CMAster (on education in clinical movement analysis) and KneeMo (on gait in knee osteoarthritis).\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"United States\\\",\\\"organisationCity\\\":\\\"Milwaukee\\\",\\\"lastName\\\":\\\"Harris\\\",\\\"initials\\\":\\\"G.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0151t000000TEWLAA4&oid=00D1t000000qIy5\\\",\\\"fieldsOfInterest\\\":\\\"Biomechanics, Gait Analysis, Human Motion Analysis.\\\",\\\"ecn\\\":115471,\\\"biography\\\":\\\"Dr. Jerry Harris is a Professor of Biomedical Engineering at Marquette University and Director of Orthopaedic Research at the Medical College of Wisconsin. He also directs the Motion Analysis Center MAC at Shriners Hospital for Children in Chicago. As an active researcher with support from NIH, NIDILRR, DOD and other agencies and foundations, Jerry leads a multi- institutional team focused on the rehabilitative needs of those with Cerebral  &lt;br&gt;Palsy, Myelomeningocele, Clubfoot, Spinal Cord Injury, Osteogenesis Imperfecta Brittle Bone Disease and other orthopaedic conditions. He has served as President of the IEEE Engineering in Medicine and Biology Society EMBS, and the North American Society for Gait and Clinical Motion Analysis GCMAS. He is a Fellow of the American Institute for Medical and Biological Engineering AIMBE, and has authored numerous publications on engineering and clinical topics related to pediatric orthopaedics, motion analysis and rehabilitation.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"lastName\\\":\\\"Hausdorff\\\",\\\"initials\\\":\\\"J\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0154L000000ghQRQAY&oid=00D1t000000qIy5EAE&lastMod=1611555170090\\\",\\\"fieldsOfInterest\\\":\\\"Gait variability, Free-living, 24/7 monitoring of movement and gait, Falls and fall risk assessment and prevention, Body-fixed sensor / wearable devices for assessing gait and balance, Gait and cognitive function, Virtual reality, Parkinson’s disease, Aging, Huntington’s disease, Non-invasive brain stimulation, Exercise\\\",\\\"ecn\\\":140392,\\\"biography\\\":\\\"Professor Jeffrey M. Hausdorff is the director of Center of the Study of Movement, Cognition, and Mobility in the Neurological Institute at Tel Aviv Sourasky Medical Center. He is also a full professor in the Sagol School of Neuroscience and the Department of Physical Therapy at Tel Aviv University and in the Rush Alzheimer’s Disease Center and Department of Orthopaedic Surgery at Rush University. Prof. Hausdorff has a background in biomechanics, biomedical engineering and gerontology and has lead pioneering studies on gait variability and the inter-relationships between cognitive function and gait in aging and neurodegeneration. His current research interests also include the study of the brain mechanisms that contribute to changes in gait, the development and study of markers and mechanisms of cognitive and mobility decline and fall risk using wearable sensors, the effects of non-invasive brain stimulation, freezing of gait, and virtual reality for treating motor and cognitive impairments. He has been awarded grants from the Michael J. Fox Foundation for Parkinson Research, the US National Institute on Aging, the US Israel BiNational Science Foundation, the National Multiple Sclerosis Society, the Israel Science Foundation and the European Commission.&lt;br&gt;&lt;br&gt;&lt;br&gt;Specific Areas of Expertise:&lt;br&gt;Gait variability, Free-living, 24/7 monitoring of movement and gait, Falls and fall risk assessment and prevention, Body-fixed sensor / wearable devices for assessing gait and balance, Gait and cognitive function, Virtual reality, Parkinson’s disease, Aging, Huntington’s disease, Non-invasive brain stimulation, Exercise.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"United Kingdom\\\",\\\"organisationCity\\\":\\\"Liverpool\\\",\\\"lastName\\\":\\\"Hollands\\\",\\\"initials\\\":\\\"M.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0154L000000gY7VQAU&oid=00D1t000000qIy5EAE&lastMod=1609149687033\\\",\\\"ecn\\\":209802},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"United States\\\",\\\"organisationCity\\\":\\\"Rochester\\\",\\\"lastName\\\":\\\"Hollman\\\",\\\"initials\\\":\\\"J. H.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0154L000000zSv4QAE&oid=00D1t000000qIy5EAE&lastMod=1643813796016\\\",\\\"ecn\\\":207399,\\\"biography\\\":\\\"Dr. John H. Hollman is a Professor of Physical Therapy in the Mayo Clinic College of Medicine and Science. Additionally, he serves as Program Director of the Program in Physical Therapy in the Mayo Clinic School of Health Sciences, Research Chair of the Department of Physical Medicine and Rehabilitation, and Assistant Dean for Student and Faculty Affairs in the Mayo Clinic School of Health Sciences. He is an active member of the American Physical Therapy Association, the American Society of Biomechanics, and American Congress of Rehabilitation Medicine. His research focuses broadly on gait variability, lower extremity biomechanics, and nonlinear analyses of human movement.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"Austria\\\",\\\"organisationCity\\\":\\\"Vienna\\\",\\\"lastName\\\":\\\"Kainz\\\",\\\"initials\\\":\\\"H.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=015Tl00000IzPFIIA3&oid=00D1t000000qIy5EAE&lastMod=1741343777937\\\",\\\"fieldsOfInterest\\\":\\\"Biomechanics,&nbsp;motor control,&nbsp;mechanobiology,&nbsp;neuromechanics,&nbsp;gait analysis\\\",\\\"ecn\\\":553003,\\\"biography\\\":\\\"Hans Kainz obtained his PhD in biomechanics at Griffith University (Gold Coast, Australia) and previously worked as a Clinical Biomechanist at the Queensland Children’s Motion Analysis Service (Brisbane, Australia) and as a post-doctoral research fellow at KU Leuven (Belgium). Currently, he is an Associate Professor at the University of Vienna (Austria), where he is the Head of the Neuromechanics Research Group and the Deputy Head of the Department of Biomechanics, Kinesiology and Computer Science in Sport. His research group focusses on the use of neuro-musculoskeletal and multi-scale simulations to enhance our understanding of typical and pathological movements. In the long run, his group strives to improve clinical decision making in people with movement disorders and enhance evidence-based motor rehabilitation after injuries or orthopedic interventions.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"United States\\\",\\\"organisationCity\\\":\\\"Rochester\\\",\\\"lastName\\\":\\\"Kaufman\\\",\\\"initials\\\":\\\"K.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0154L000000ghQbQAI&oid=00D1t000000qIy5EAE&lastMod=1611555616236\\\",\\\"ecn\\\":115479,\\\"biography\\\":\\\"Dr. Kenton R. Kaufman is the W. Hall Wendel Jr Musculoskeletal Research Professor, Professor of Biomedical Engineering, Director of the Motion Analysis Laboratory, and Consultant in the Departments of Orthopedic Surgery, Physiology and Biomedical Engineering at Mayo Clinic. He is a registered professional engineer. He is a founding member and Past President of the Gait and Clinical Movement Analysis Society and Past President of the American Society of Biomechanics. He is a Fellow in the American Institute for Medical and Biological Engineering, American Society of Biomechanics, American Society of Mechanical Engineers, and International Society of Biomechanics.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"United States\\\",\\\"organisationCity\\\":\\\"Chicago\\\",\\\"lastName\\\":\\\"Krzak\\\",\\\"initials\\\":\\\"J. J.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0154L000000xt5fQAA&oid=00D1t000000qIy5EAE&lastMod=1630505764449\\\",\\\"ecn\\\":552989,\\\"biography\\\":\\\"Dr. Krzak is an Associate Professor in the Physical Therapy Program at Midwestern University, Downers Grove, IL and a Physical Therapist in the Motion Analysis Center (MAC) Shriner&#39;s Hospitals for Children®-Chicago. He is a licensed Physical Therapist in the State of Illinois and a Board Certified Specialist in Pediatric Physical Therapy (PCS) by the American Board of Physical Therapy Specialties (ABPTS). Dr. Krzak received his Bachelor of Science (BS) in Physical Therapy, University of Illinois at Chicago in 2000 and his Doctorate of Philosophy (Ph.D.) in Kinesiology, Nutrition, and Rehabilitation with an emphasis in musculoskeletal biomechanics and motor control at University of Illinois at Chicago in 2013. His clinical and clinical research goals are to: 1) use novel quantitative methods to explain why children with developmental disabilities move differently than healthy individuals; and 2) develop and critically evaluate the effectiveness of surgical and therapeutic interventions to enhance functional mobility in children with neuromuscular and musculoskeletal disorders. Dr. Krzak is a member of the American Physical Therapy Association (APTA), Academy of Pediatric Physical Therapy (APPT), Gait and Clinical Movement Analysis Society (GCMAS), and the American Academy of Cerebral Palsy and Developmental Medicine (AACPDM).\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"United States\\\",\\\"organisationCity\\\":\\\"Durham\\\",\\\"lastName\\\":\\\"LaRoche\\\",\\\"initials\\\":\\\"P\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=015Tl00000CVODgIAP&oid=00D1t000000qIy5EAE&lastMod=1727805323313\\\",\\\"fieldsOfInterest\\\":\\\"Exercise Physiology,&nbsp;Biomechanics,&nbsp;Aging,&nbsp;Technology,&nbsp;Gait,&nbsp;Mobility,&nbsp;Strength,&nbsp;Falling\\\",\\\"ecn\\\":196085,\\\"biography\\\":\\\"Dr. Dain LaRoche is Associate Dean for Research in the College of Health and Human Services and Professor of Kinesiology at the University of New Hampshire, USA. He received his B.S. in Kinesiology: Exercise Science from the University of New Hampshire in 1996, M.S. in Exercise Science from the University of Massachusetts-Amherst in 1998, and Ph.D. in Exercise and Sport Science from the University of Utah in 2004. His research aims to understand the interplay of neuromuscular, metabolic, and biomechanical function in the limitation of mobility of older adults. In particular, he studies how leg strength and power affect gait quality, walking economy, mobility, and fall risk in older adults, including the modifying role of obesity. He is interested in developing technology for tracking physical activity and movement quality, exercise program delivery, robotics, and assistance for independent living. Dr. LaRoche is a Fellow of the American College of Sports Medicine, a Past-president of the New England Chapter of the American College of Sports Medicine and his research has been funded by the National Institutes of Health and National Science Foundation.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"Canada\\\",\\\"organisationCity\\\":\\\"Ottawa\\\",\\\"lastName\\\":\\\"Lajoie\\\",\\\"initials\\\":\\\"Y.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=015Tl00000CXX9bIAH&oid=00D1t000000qIy5EAE&lastMod=1727876593009\\\",\\\"fieldsOfInterest\\\":\\\"Postural control,&nbsp;motor control,&nbsp;attention\\\",\\\"ecn\\\":196095,\\\"biography\\\":\\\"Yves Lajoie is a professor (full) in the School of Human Kinetics at the University of Ottawa since 2001. He earned his Ph.D. in motor control and learning from Laval University in 1994. Following his doctoral studies, he completed a one-year postdoctoral fellowship in physiotherapy at McGill University in 1995, supported by the Center of Excellence in Neurosciences. Later that year, he joined Laurentian University as an assistant professor. His research focuses on static and dynamic postural control, attentional demand and cognitive involvement during gait and posture, aging, falls, motor function training, motor control, and learning.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"Italy\\\",\\\"organisationCity\\\":\\\"Bologna\\\",\\\"lastName\\\":\\\"Leardini\\\",\\\"initials\\\":\\\"A.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0151t000000TEWIAA4&oid=00D1t000000qIy5\\\",\\\"ecn\\\":114731,\\\"biography\\\":\\\"&lt;p&gt;Alberto Leardini, DPhil &lt;/p&gt;&lt;p&gt;Istituto Ortopedico Rizzoli, Bologna, Italy &lt;/p&gt;&lt;p&gt;Alberto Leardini has been working at the Movement Analysis Laboratory, Istituto Ortopedico Rizzoli - Bologna (Italy) since 1990. He received the Doctor of Philosophy (DPhil) in Orthopaedic Engineering in 2001 at the University of Oxford. His research initiated on methodological issues and clinical applications of human motion analysis by stereophotogrammetry. He enlarged then the focus to various techniques for quantitative assessments of orthopaedic treatments, including three-dimensional videofluoroscopy, radiostereometry, inertial sensors, and surgical navigation. Particular attention has been dedicated to the mechanics of lower limb joints and the foot, in terms of physiological function, prosthesis design, and evaluation of the relevant replacements. In his DPhil he made fundamental progresses on the mechanical modelling and prosthesis design of the human ankle joint complex. His total ankle replacement has been implanted in thousands of patients. He is now looking at custom designs of this and other articulations, exploiting also the area of 3D printing of joint prostheses, prosthetics and orthotics. He is author of more than 150 papers in peer-review journals, H-index 35. &lt;/p&gt;&lt;p&gt;He has served on several national and international scientific communities, being among the founding members of the Società Italiana di Analisi del Movimento in Clinica (SIAMOC), International Foot &amp; Ankle Biomechanics community (i-FAB), and Italian Digital Biomanufacturing Network. He has been President of the Technical Group of 3-D Analysis of Human Movement, and still Council Member of the International Society of Biomechanics (Student Grants officer since 2013). He is now coordinator of 3D-Printing Pilot – Healthcare within the Vanguard Initiative, EC. He is in the Editorial Board of the major international peer -review journals in biomechanics and human motion analysis.&lt;/p&gt;\\\"},{\\\"type\\\":\\\"Member\\\",\\\"lastName\\\":\\\"Levinger\\\",\\\"initials\\\":\\\"P\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0154L000000ghQlQAI&oid=00D1t000000qIy5EAE&lastMod=1611555779510\\\",\\\"fieldsOfInterest\\\":\\\"Quantitative gait analysis and clinical biomechanics of different population groups with lower limb musculoskeletal conditions, including people with osteoarthritis, people who have had knee replacement surgery, frail older people at risk of falling.,&nbsp; Falls, gait and balance, mechanism of falls in people with knee osteoarthritis, falls prevention\\\",\\\"ecn\\\":140401,\\\"biography\\\":\\\"Associate Professor Pazit Levinger, Institute of Sport, Exercise &amp; Active Living (ISEAL) &lt;br&gt;College of Sport and Exercise Science. Victoria University &lt;br&gt;Area of expertise/interest: gait analysis and clinical biomechanics of people with msuculoskeletal conditions mainly osteoarthritis and joint replacements &lt;br&gt;Mechanism of falls and falls in people with osteoarthritis and those following joint replacements.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"Australia\\\",\\\"organisationCity\\\":\\\"Sydney\\\",\\\"lastName\\\":\\\"Lord\\\",\\\"initials\\\":\\\"R.\\\",\\\"fieldsOfInterest\\\":\\\"Falls,&nbsp;Balance,&nbsp;Excerice\\\",\\\"ecn\\\":115451,\\\"biography\\\":\\\"Scientia Professor Stephen Lord is a Senior Principal Research Fellow at Neuroscience Research Australia, University of NSW, Sydney, Australia. He has published over 550 papers in the areas of balance, gait and falls in older people. His research follows two main themes: the identification of physiological risk factors for falls and the development and evaluation of falls prevention strategies. A key aspect of this research has been the design, implementation and evaluation of exercise programs for older people as well as clinical groups with balance impairments, i.e. people with Parkinson’s disease, multiple sclerosis, stroke, dementia and frailty. His methodology and approach to fall-risk assessment has been adopted by many researchers and clinicians across the world and he is actively engaged in initiatives aimed at implementing falls prevention evidence into policy and practice.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"lastName\\\":\\\"Lord\\\",\\\"initials\\\":\\\"S.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0154L000000gY7fQAE&oid=00D1t000000qIy5EAE&lastMod=1609149967177\\\",\\\"ecn\\\":196091,\\\"biography\\\":\\\"Sue is a Sr Research Fellow at Auckland University of Technology. She is a neuro-physio with a research background in movement science. Her research focuses on the interplay between gait and cognition, and how to measure and optimise ‘real-world’ gait and physical activity in older adults and people with neurodegenerative disorders using technology.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"United States\\\",\\\"organisationCity\\\":\\\"Minnesota\\\",\\\"lastName\\\":\\\"MacKinnon\\\",\\\"initials\\\":\\\"C.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0154L000000zzglQAA&oid=00D1t000000qIy5EAE&lastMod=1648476003759\\\",\\\"fieldsOfInterest\\\":\\\"Parkinson&#39;s disease,&nbsp;gait,&nbsp;balance,&nbsp;posture,&nbsp;movement,&nbsp;sensorimotor neuroneurophysiology\\\",\\\"ecn\\\":552993,\\\"biography\\\":\\\"Colum MacKinnon is an Associate Professor and the director of the Movement Disorders Laboratory in the Department of Neurology at the University of Minnesota. His research is focused on the mechanisms contributing to impaired control of gait, balance, and posture in people with movement disorders, particularly those with Parkinson’s disease (PD). This work includes studies on the cortical and subcortical pathways contributing to anticipatory postural adjustments, factors contributing to the emergence and progression of gait and postural instability in PD, and the development of testing of interventions to treat gait and postural disorders.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"United States\\\",\\\"organisationCity\\\":\\\"Greenville\\\",\\\"lastName\\\":\\\"MacWilliams\\\",\\\"initials\\\":\\\"B.\\\",\\\"ecn\\\":115464},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"United States\\\",\\\"organisationCity\\\":\\\"Portland\\\",\\\"lastName\\\":\\\"Mancini\\\",\\\"initials\\\":\\\"M.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0154L000000gY7kQAE&oid=00D1t000000qIy5EAE&lastMod=1609150053369\\\",\\\"ecn\\\":196092},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"Canada\\\",\\\"organisationCity\\\":\\\"Toronto\\\",\\\"lastName\\\":\\\"Masani\\\",\\\"initials\\\":\\\"K.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0154L000000xtAzQAI&oid=00D1t000000qIy5EAE&lastMod=1630508640112\\\",\\\"ecn\\\":552992,\\\"biography\\\":\\\"Kei Masani is a Senior Scientist at the KITE Research Institute and an Associate Professor (status) in the Institute of Biomedical Engineering, University of Toronto. His research interests are in understanding human movement and movement variability, from the view of neuro-mechanical interaction and sensory-motor integration. Particularly, he focuses on developing accurate assessments and therapeutic tools using functional electrical stimulation for standing, walking and adapted exercise. He received a B.Sc. and a M.Sc. in physical education from the University of Tokyo, and a Ph.D. in physical and health education from the University of Tokyo.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"United Kingdom\\\",\\\"organisationCity\\\":\\\"Belfast\\\",\\\"lastName\\\":\\\"McDowell\\\",\\\"initials\\\":\\\"B.\\\",\\\"ecn\\\":115450},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"United States\\\",\\\"organisationCity\\\":\\\"Spokane\\\",\\\"lastName\\\":\\\"McMulkin\\\",\\\"initials\\\":\\\"M.\\\",\\\"ecn\\\":196088},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"Canada\\\",\\\"organisationCity\\\":\\\"Toronto\\\",\\\"lastName\\\":\\\"Mehdizadeh\\\",\\\"initials\\\":\\\"S.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0154L000000xtFQQAY&oid=00D1t000000qIy5EAE&lastMod=1630512533304\\\",\\\"ecn\\\":553028,\\\"biography\\\":\\\"Sina Mehdizadeh received his PhD in Biomedical Engineering-Biomechanics in 2014. His research focuses on the neuromechanics of human locomotion. In other words, he tries to understand principles underlying control of walking balance and to use these principles to design rehabilitation protocols for affected groups such as older adults at risk of falls. His research results have been published in premier academic journals in the field of biomechanics, motor control, and gerontology.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"Australia\\\",\\\"organisationCity\\\":\\\"Melbourne\\\",\\\"lastName\\\":\\\"Mentiplay\\\",\\\"initials\\\":\\\"B.F.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=015Sl00000AXUETIA5&oid=00D1t000000qIy5EAE&lastMod=1760897577418\\\",\\\"fieldsOfInterest\\\":\\\"Low-cost and mobile technology for gait and posture assessment,&nbsp;3D Gait analysis,&nbsp;Biomechanics of gait,&nbsp;Clinical gait analysis,&nbsp;Posture analysis,&nbsp;Muscle strength and power,&nbsp;Rate of force development,&nbsp;Neurological rehabilitation,&nbsp;Exercise,&nbsp;Exercise interventions,&nbsp;Athletic and sports related research\\\",\\\"ecn\\\":216435,\\\"biography\\\":\\\"Dr Mentiplay is a Research Fellow within the La Trobe Sport and Exercise Medicine Research Centre at La Trobe University, Melbourne, Australia. Dr Mentiplay has a Bachelor of Sport and Exercise Science Honours and a PhD from the Australian Catholic University. He has a strong interest in biomechanics, rehabilitation and motor control and applies his research in various populations including in musculoskeletal conditions, neurological patients, paediatric cohorts and elite sporting environments. Dr Mentiplay has expertise in laboratory-based three-dimensional gait analysis, including working with such equipment for both research and clinical purposes. He has also conducted many research studies evaluating various forms of low-cost technology for the assessment of gait and balance. Dr Mentiplay also has a strong research focus on the assessment of muscle strength and power and how these assessments relate to and affect function and activities of daily living.Specific Expertise:Low-cost and mobile technology for gait and posture assessment, 3D Gait analysis, Biomechanics of gait, Clinical gait analysis, Posture analysis, Muscle strength and power, Rate of force development, Neurological rehabilitation, Exercise, Exercise interventions, Athletic and sports related research.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"Belgium\\\",\\\"organisationCity\\\":\\\"Diepenbeek\\\",\\\"lastName\\\":\\\"Meyns\\\",\\\"initials\\\":\\\"P.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0154L000000gim9QAA&oid=00D1t000000qIy5EAE&lastMod=1611729469851\\\",\\\"fieldsOfInterest\\\":\\\"cerebral palsy, gait stability, arm swing, postural balance, balance rehabilitation, gait kinematics, interlimb coordination, neuromechanics of gait and balance\\\",\\\"ecn\\\":540523,\\\"biography\\\":\\\"I am assistant professor in biomechanics at Hasselt University (UHasselt) since September 2017, and have a background in rehabilitation sciences and physical therapy. I focus on neuromechanics of gait and balance in healthy and neurologic populations; with the main focus on children with cerebral palsy. My research is situated on the crossroads of fundamental and clinical science based on experimental studies and intervention studies. My aim is to validly assess the evaluation and treatment/therapy of balance control deficits and gait stability in different patient populations. Therefore, I investigate the determinants of altered gait and balance control in children, adults and elderly, and assess the effectivity of rehabilitation programs addressing deficits in gait and balance. To this end, I use three dimensional movement analysis to assess markers of altered gait and balance (e.g. upper and lower body joint angles, trunk movement, centre of mass, interlimb coordination).\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"Institute of Movement Sciences, Marseille, France\\\",\\\"organisationCity\\\":\\\"Marseille\\\",\\\"lastName\\\":\\\"Mille\\\",\\\"initials\\\":\\\"M.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0151t000000TFZIAA4&oid=00D1t000000qIy5\\\",\\\"ecn\\\":196097,\\\"biography\\\":\\\"&lt;p&gt;Marie-Laure Mille has a PhD in Motor Control from the University of the Mediterranean where she studied the role of sensory information in the calibration of the anticipatory postural adjustments. She also focused on protective stepping and ageing during her postdoc at Northwestern University in Chicago. She has broad interests in human sensorimotor control processes in health and disease with a specific focus on the coordination of posture and movement. &lt;/p&gt;&lt;p&gt;She has a tenured position at the University of Toulon and is furthering her research at the Movement Sciences Institut in Marseille (CNRS &amp; Aix-Marseille University). She is also adjunct faculty in the department of Physical Therapy and Human Movement Sciences, at Northwestern University.&lt;/p&gt;\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"United States\\\",\\\"organisationCity\\\":\\\"Wilmington\\\",\\\"lastName\\\":\\\"Miller\\\",\\\"initials\\\":\\\"F.\\\",\\\"ecn\\\":115467},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"Belgium\\\",\\\"organisationCity\\\":\\\"Leuven\\\",\\\"lastName\\\":\\\"Molenears\\\",\\\"initials\\\":\\\"G.\\\",\\\"ecn\\\":186693},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"Australia\\\",\\\"organisationCity\\\":\\\"Melbourne\\\",\\\"lastName\\\":\\\"Morris\\\",\\\"initials\\\":\\\"M.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0154L000000zSvnQAE&oid=00D1t000000qIy5EAE&lastMod=1643814603401\\\",\\\"fieldsOfInterest\\\":\\\"Parkinson&#39;s disease\\\",\\\"ecn\\\":553311,\\\"biography\\\":\\\"Prof Meg E. Morris is a physiotherapist who is an expert in Parkinson’s disease, physical activity and falls education programs for elderly people in health and disease. She has played a major role in shaping movement rehabilitation strategies for people living with Parkinson’s disease nationally and internationally. This has had very strong consumer involvement and is based on more than 20 years of laboratory and clinical research resulting in more than 400 publications. Meg is the Professor of Clinical and Rehabilitation Research, a joint partnership between Healthscope and La Trobe University.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"Switzerland\\\",\\\"organisationCity\\\":\\\"Basel\\\",\\\"lastName\\\":\\\"Mündermann\\\",\\\"initials\\\":\\\"A.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0154L000000zfimQAA&oid=00D1t000000qIy5EAE&lastMod=1645709367654\\\",\\\"fieldsOfInterest\\\":\\\"osteoarthritis,&nbsp;gait analysis,&nbsp;joint replacement,&nbsp;motion capture,&nbsp;wearable sensors,&nbsp;orthopaedics,&nbsp;electromyography,&nbsp;patient reported outcome measures\\\",\\\"ecn\\\":561639,\\\"biography\\\":\\\"Prof. Mündermann is the Head of Orthopaedic Research (Biomedical Engineering / Biomechanics) at the Department of Orthopaedics and Traumatology at the University Hospital Basel in Basel, Switzerland. As Adjunct Professor of the Department of Biomedical Engineering at the University of Basel, she focuses on research topics ranging from basic science (in vivo mechanosensitivity of articular cartilage) to applied clinical biomechanics (identifying suitable outcomes for clinical trials on orthopaedic conditions) with a special interest in knee osteoarthritis involving camera based motion analysis as well as inertial sensor systems, electromyography, blood analyses, balance testing, and medical imaging. Dr. Mündermann graduated in Mathematics and Sport Science at the University of Konstanz (Germany), completed her PhD in Biomechanics at the University of Calgary (Canada), worked as a researcher in Mechanical Engineering at Stanford University (USA) and was a senior research fellow at the School of Physiotherapy at the University of Otago (Dunedin, New Zealand). She has extensive international consulting experience in scientific writing and taught many courses on academic writing and presenting in the health sciences and biomedical engineering at various institutions and conferences. She took on her position in Basel in 2012 and has since attracted several major federal research grants for her research. Dr. Mündermann serves on the board of the German Society of Biomechanics and her current professional associations include the German, European and International Societies of Biomechanics, Osteoarthritis Research Society International, German Speaking Society for the Analysis of the Human Motor System and its Clinical Application (GAMMA), and the Society of Orthopaedics and Traumatology in Sports.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"Italy\\\",\\\"organisationCity\\\":\\\"Pavia\\\",\\\"lastName\\\":\\\"Nardone\\\",\\\"initials\\\":\\\"A.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0154J000000RFxRQAW&oid=00D1t000000qIy5EAE&lastMod=1567606853693\\\",\\\"ecn\\\":225156,\\\"biography\\\":\\\"He has served on several national scientific communities, being among the founding members of the Società Italiana di Analisi del Movimento in Clinica (SIAMOC) and actually its past-president. He has served as a referee for several peer-reviewed journals and granting agencies. He has been member of the Committee for the Italian National Scientific Habilitation in Diseases of Locomotor Apparatus, appointed by the Italian National Agency for the Evaluation of Universities and Research Institutes.&lt;br&gt; &lt;br&gt;Past research projects&lt;br&gt;Expertise in human neurophysiology, in the field of sensori-motor systems, in normal subjects and patients: a) somatosensory potentials evoked by adequate stimulus and their modulation, b) spinal reflexes (H-reflex and the control of motor pools during movement), c) neural control of muscle lengthening contraction, d) functional role and conduction velocity of group II spindle fibres, e) reflex role of large and small spindle afferent fibres in balance control, in normal subjects and in different types of polyneuropathy.&lt;br&gt; &lt;br&gt;Current research projects&lt;br&gt;a) control of posture, and of coordination between posture and movement, b) balance control under quiet upright posture and under perturbed predictable or unpredictable conditions, c) effect of ageing and neurological diseases (Parkinson, cerebellar, stroke, peripheral neuropathies) under the previous conditions, d) effects of dual tasking on balance and gait, e) rehabilitation of balance disorders, f) telerehabilitation. &lt;br&gt; &lt;br&gt;He is author of more than 100 papers in peer-reviewed journals. H-index 40.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"United States\\\",\\\"organisationCity\\\":\\\"Palo Alto\\\",\\\"lastName\\\":\\\"Orendurff\\\",\\\"initials\\\":\\\"S.\\\",\\\"fieldsOfInterest\\\":\\\"Biomechanics,&nbsp;gait,&nbsp;sports,&nbsp;running,&nbsp;orthotics,&nbsp;prosthetics,&nbsp;treatment outcomes,&nbsp;clinical decision making\\\",\\\"ecn\\\":115484},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"United States\\\",\\\"organisationCity\\\":\\\"Hartford\\\",\\\"lastName\\\":\\\"Ounpuu\\\",\\\"initials\\\":\\\"S.\\\",\\\"ecn\\\":115461},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"Canada\\\",\\\"organisationCity\\\":\\\"Waterloo\\\",\\\"lastName\\\":\\\"Perry\\\",\\\"initials\\\":\\\"S.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0154J000000QkUvQAK&oid=00D1t000000qIy5EAE&lastMod=1564113958613\\\",\\\"fieldsOfInterest\\\":\\\"Gait initiation/termination,&nbsp;Aging,&nbsp;Falls,&nbsp;Orthotics/assistive devices,&nbsp;Sensory integration\\\",\\\"ecn\\\":504664},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"Brazil\\\",\\\"organisationCity\\\":\\\"Porto Alegre\\\",\\\"lastName\\\":\\\"Peyré-Tartaruga\\\",\\\"initials\\\":\\\"L. A.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0154L000000xtCWQAY&oid=00D1t000000qIy5EAE&lastMod=1630509652412\\\",\\\"ecn\\\":553017,\\\"biography\\\":\\\"Dr. Leonardo A. Peyré-Tartaruga is an Associate Professor of Biomechanics and Physiology of Locomotion at Universidade Federal do Rio Grande do Sul UFRGS, Porto Alegre, Brazil and Coordinator of LOCOMOTION Research Group - Mechanics and Energetics of Terrestrial Locomotion. He also directs the Parkinson&#39;s Research and Treatment Center Nordic walking, Brazilian dance and deep water exercises, Running Group and Triathlon Team in Porto Alegre. As an active researcher with support from Capes, CNPq, Fapergs and other agencies, Leonardo leads a multi-institutional team focused on the wellness and rehabilitative needs of those with Parkinson’s disease, olders, COPD and healthy individuals. He has served as President of the Brazilian College of Sports Sciences 2009-2013, and Director of the Exercise Research Laboratory/UFRGS 2014-2018. &lt;br&gt;The study activities are structured in three research lines: 1 Fundamental studies on the underlying integrative mechanisms pendulum-like in walking and elastic in running for minimizing energy expenditure in human locomotion; 2 Intervention studies to validate novel methods Nordic walking for aging and Parkinson’s disease; and inclined running for endurance runners; and 3 Biomechanics of jumps and training load in high-level volleyball players. The current research lines are strongly focused on advanced analysis of mechanical determinants of energy cost i.e. the PhysioMechanics of human walking and running.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"Iceland\\\",\\\"organisationCity\\\":\\\"Reykjavík\\\",\\\"lastName\\\":\\\"Recenti\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=015Tl00000GLz0zIAD&oid=00D1t000000qIy5EAE&lastMod=1735828403906\\\",\\\"fieldsOfInterest\\\":\\\"Machine learning,&nbsp;Motion sickness,&nbsp;Seasickness,&nbsp;Cyber sickness,&nbsp;Aging,&nbsp;Artificial intelligence,&nbsp;Data analysis,&nbsp;Digital health,&nbsp;Biomedical engineering,&nbsp;Postural control\\\",\\\"ecn\\\":667272,\\\"biography\\\":\\\"MARCO RECENTI received his B.S. and M.S. degrees in telecommunications engineering from Polytechnic University of Turin, Italy, in 2019 and his Ph.D. degree in biomedical engineering at Reykjavik University, Iceland in 2023. Since 2018 he has worked with the Institute of Biomedical and Neural Engineering at Reykjavik University and he is currently a Post-Doctoralresearcher and a teacher for the courses&quot;Application of Digital Health&quot; and &quot;Digital Transformation of Medical Images&quot; in the master degree in Digital Health at Reykjavik University. He was a visiting researcher at Chonnam National University, Yeosu, South Korea in 2022.His main fields of interest include Digital Health, Artificial Intelligence and Machine Learning for Medicine, Health Informatics, and the applications of ICT in the biomedical engineering field including motion sickness and postural control studies as well as advanced medical images analysis. He is author of 30 journals and conferences articles and an editorial board member for the journals Biomedical Engineering Online and Gait&amp;Posture. Dr. Recenti won the Best Ph.D. Contribution Award at the 1st IEEE Conference in Rome, in October 2022.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"lastName\\\":\\\"Reed-Jones\\\",\\\"initials\\\":\\\"R.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0151t000000TFZHAA4&oid=00D1t000000qIy5\\\",\\\"ecn\\\":196096,\\\"biography\\\":\\\"Dr. Reed-Jones’ research focuses on sensory system integration and its role in the execution of gait and posture. Her research has both clinical and basic science components combining the fundamentals of neuroscience with the techniques of biomechanics. Her research to date has involved clinical populations such as athletes with concussions and individuals with Parkinson’s disease. Dr. Reed-Jones also works with older adults to understand the healthy ageing process and its role in mobility issues and risk of falling. In addition to this health related research, Dr. Reed-Jones has also conducted a number of studies in the field of ergonomics and human computer interaction examining postural adaptation to virtual reality simulators. \\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"United Kingdom\\\",\\\"organisationCity\\\":\\\"Essex\\\",\\\"lastName\\\":\\\"Robbins\\\",\\\"initials\\\":\\\"D.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0154J000000QkUqQAK&oid=00D1t000000qIy5EAE&lastMod=1564113420736\\\",\\\"ecn\\\":504663,\\\"biography\\\":\\\"Dr Dan Robbins is a Senior Lecturer in the School of Allied Health at Anglia Ruskin University, who has received postgraduate qualifications from the Universities of Greenwich, Manchester and Staffordshire, with a focus on Biomechanics, Anatomy and Physiology. &lt;br&gt;Dr Robbins has taught at multiple higher education institutes, including the University of Greenwich, University of Bedfordshire and Imperial College London.&lt;br&gt;Before working in academia, Dr Robbins worked in clinical exercise, specialising in corrective exercise and working within GP referral schemes in addition to interacting with health professionals such as physiotherapists and complementary therapists. &lt;br&gt;After leaving the leisure industry, Dr Robbins worked for the NHS at the Royal National Orthopaedic Hospital in the department of Clinical Neurophysiology, specialising in performing intraoperative monitoring of surgical procedures, such as operations on the spine and/or peripheral nerves and working within outpatient clinics investigating muscle and nerve dysfunction via electromyography EMG and nerve conduction studies NCS.&lt;br&gt;Dr Robbins’s research interests include the structure and function of muscles, bones and/or joints, peripheral vascular function, peripheral neurophysiology and signal processing, typically of biological signals.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"United Kingdom\\\",\\\"organisationCity\\\":\\\"Oswestry, Shropshire\\\",\\\"lastName\\\":\\\"Roberts\\\",\\\"initials\\\":\\\"A.\\\",\\\"ecn\\\":186692},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"Netherlands\\\",\\\"organisationCity\\\":\\\"Amsterdam\\\",\\\"lastName\\\":\\\"Roerdink\\\",\\\"initials\\\":\\\"M.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0154L000000zfiNQAQ&oid=00D1t000000qIy5EAE&lastMod=1645708915303\\\",\\\"ecn\\\":196089,\\\"biography\\\":\\\"Melvyn Roerdink is associate professor Technology in Motion at the Department of Human Movement Sciences at Vrije Universiteit Amsterdam. The mission of his Technology in Motion team is to merge human movement science with emerging motion technology (such as RGB-D sensors, augmentation technology and mixed-reality headsets) and academic entrepreneurship to produce knowledge and solutions for and with science, society, and industry. Their research and development in the context of walking adaptability and cueing resulted in technological solutions for studying, assessing, and training context-dependent walking. Examples include the patented C-Mill rehabilitation treadmill for assessment and training of walking adaptability, the 10-meter Interactive Walkway for targeted fall-risk assessment, and the mixed-reality application Holocue to aid walking in Parkinson&#39;s disease. The walking environments are here all visually enriched with interactive motion-dependent task-relevant augmented/mixed-reality content, intended to evoke interactions between actors and their environment (e.g., target stepping, obstacle avoidance, cueing). The premise is that technologies to enrich walking environments will contribute to a better understanding, identification, and treatment of limitations in context-dependent walking.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"Germany\\\",\\\"organisationCity\\\":\\\"Münster\\\",\\\"lastName\\\":\\\"Rosenbaum\\\",\\\"initials\\\":\\\"D.\\\",\\\"ecn\\\":115489},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"United States\\\",\\\"organisationCity\\\":\\\"Saint Paul\\\",\\\"lastName\\\":\\\"Rozumalski\\\",\\\"initials\\\":\\\"A.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0154L000000ghR5QAI&oid=00D1t000000qIy5EAE&lastMod=1611556108349\\\",\\\"ecn\\\":186690,\\\"biography\\\":\\\"Adam Rozumalski is the Engineering Supervisor in the James R. Gage Center for Gait and Motion Analysis at Gillette Children’s Specialty Healthcare. Adam received his undergraduate degree from Michigan Technological University and his Ph.D. from the University of Minnesota, both in Biomedical Engineering. For the past 15 years, Adam has worked at Gillette developing expertise in motion analysis for children with cerebral palsy and other neuromuscular disorders. His research focuses on developing data processing techniques to improve the quality of gait data as well as developing decision support tools derived from large sets of clinical data.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"United States\\\",\\\"organisationCity\\\":\\\"Wilmington\\\",\\\"lastName\\\":\\\"Salazar-Torres\\\",\\\"initials\\\":\\\"J\\\",\\\"fieldsOfInterest\\\":\\\"Gait Biomechanics,&nbsp;Stroke,&nbsp;Cerebral Palsy,&nbsp;Spasticity,&nbsp;Motor Control\\\",\\\"ecn\\\":140570},{\\\"type\\\":\\\"Member\\\",\\\"lastName\\\":\\\"Shortland\\\",\\\"initials\\\":\\\"A.\\\",\\\"ecn\\\":196090},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"United States\\\",\\\"organisationCity\\\":\\\"Golden\\\",\\\"lastName\\\":\\\"Silverman\\\",\\\"initials\\\":\\\"K\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=015Tl00000CUl5rIAD&oid=00D1t000000qIy5EAE&lastMod=1727794022751\\\",\\\"fieldsOfInterest\\\":\\\"Musculoskeletal Biomechanics,&nbsp;Gait &amp;,&nbsp;,&nbsp;  Movement Analysis,&nbsp;Dynamic Balance Control,&nbsp;Musculoskeletal Modeling and Simulation\\\",\\\"ecn\\\":196099,\\\"biography\\\":\\\"Dr. Silverman is an Associate Professor of Mechanical Engineering and Core Faculty in the Quantitative Biosciences and Engineering Program at the Colorado School of Mines. Dr. Silverman’s research centers on understanding musculoskeletal biomechanics and movement coordination to develop effective interventions, prevent injury, and improve mobility. She uses experimental movement analysis and computational whole-body modeling techniques to evaluate muscle action, joint loading and device function during movement. She served as an Associate Editor for Gait &amp; Posture from 2017-2021 and is a Fellow of the American Society of Mechanical Engineers.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"Canada\\\",\\\"organisationCity\\\":\\\"Québec City\\\",\\\"lastName\\\":\\\"Simoneau\\\",\\\"initials\\\":\\\"M.\\\",\\\"fieldsOfInterest\\\":\\\"Sesnsorimotor control of movement\\\",\\\"ecn\\\":196093},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"Thailand\\\",\\\"organisationCity\\\":\\\"Bangkok\\\",\\\"lastName\\\":\\\"Siriphorn\\\",\\\"initials\\\":\\\"A.\\\",\\\"fieldsOfInterest\\\":\\\"Balance and postural control,&nbsp;Balance and falls,&nbsp;Neurological physical therapy,&nbsp;Geriatric physical therapy,&nbsp;Human Anatomy,&nbsp;Neurosciences \\\",\\\"ecn\\\":650985},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"United States\\\",\\\"organisationCity\\\":\\\"Rochester\\\",\\\"lastName\\\":\\\"Staab\\\",\\\"initials\\\":\\\"J.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0158e000000tEHHAA2&oid=00D1t000000qIy5EAE&lastMod=1675325511758\\\",\\\"ecn\\\":132252},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"United Kingdom\\\",\\\"organisationCity\\\":\\\"Glasgow\\\",\\\"lastName\\\":\\\"Stansfield\\\",\\\"initials\\\":\\\"B.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0154L000000zSvxQAE&oid=00D1t000000qIy5EAE&lastMod=1643814867914\\\",\\\"fieldsOfInterest\\\":\\\"Human movement monitoring,&nbsp;Physical activity monitoring\\\",\\\"ecn\\\":115449,\\\"biography\\\":\\\"Ben Stansfield is a Reader in Health Engineering at Glasgow Caledonian University in the UK. He graduated in Mechanical Engineering and then converted to human application through an MSc in bioengineering and PhD in Biomechanics at the University of Strathclyde in Glasgow. Following a period working in the Anderson Gait Laboratory in Edinburgh he was first a Lecturer at the Bioengineering Unit of the University of Strathclyde and then a Senior Lecturer and now Reader at Glasgow Caledonian University. His research interests are in the fields of human movement analysis through both laboratory studies and free living studies using body worn sensors.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"United Kingdom\\\",\\\"organisationCity\\\":\\\"Oxford\\\",\\\"lastName\\\":\\\"Stebbins\\\",\\\"initials\\\":\\\"J.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=015Tl000000cuM9IAI&oid=00D1t000000qIy5EAE&lastMod=1701112005085\\\",\\\"fieldsOfInterest\\\":\\\"Upper limb,&nbsp;Foot and ankle,&nbsp;Plantar pressure,&nbsp;Clubfoot,&nbsp;Flatfoot,&nbsp;Arthritis\\\",\\\"ecn\\\":107880,\\\"biography\\\":\\\"Dr Stebbins is a clinical scientist in the field of clinical engineering. She is responsible for managing the service at the Oxford Gait Laboratory. Her research interests focus on clinical gait analysis and improving patient outcomes through improved measurement in gait analysis. In particular, she has worked on ways to improve measurement of foot and ankle biomechanics. \\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"United Kingdom\\\",\\\"organisationCity\\\":\\\"Oswestry\\\",\\\"lastName\\\":\\\"Stewart\\\",\\\"initials\\\":\\\"C.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0154L000000gY7zQAE&oid=00D1t000000qIy5EAE&lastMod=1609150542391\\\",\\\"ecn\\\":115466,\\\"biography\\\":\\\"Caroline Stewart has over 25 years’ experience in clinical gait analysis. She began her research at Strathclyde University, completing her PhD in prosthetic gait in 1995. Subsequently she was employed as a clinical engineer in ORLAU, a specialist department of the Robert Jones and Agnes Hunt Orthopaedic Hospital in Oswestry in the UK. ORLAU’s expertise covers clinical gait analysis and rehabilitation engineering and Caroline now manages these busy clinical services. In 2013 she took up a part time academic post at Keele University alongside her NHS commitments. Caroline first attended taught on the ESMAC gait course for twelve years from 2001. She has also served on the committees of the UK and Ireland Clinical Movement Analysis Society (CMAS), taking a particular interest in the development of national standards. Caroline’s current research interests are focused on musculoskeletal modelling and she has used gait analysis as an outcome measure for treatments including joint replacement and selective dorsal rhizotomy. She has served on the editorial board of Gait and Posture for over 10 years and is active in the national training scheme for clinical engineers in the UK.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"Germany\\\",\\\"organisationCity\\\":\\\"Frankfurt\\\",\\\"lastName\\\":\\\"Stief\\\",\\\"initials\\\":\\\"F.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0154L000000z1lCQAQ&oid=00D1t000000qIy5EAE&lastMod=1639376146893\\\",\\\"fieldsOfInterest\\\":\\\"Clinical gait analysis including compensating strategies in patients with,&nbsp; Hip and knee osteoarthritis / total hip and knee arthroplasty, Lower limb malalignment varus or valgus / leg axis deformities, Leg length discrepancy, Legg-Calvé-Perthes disease, Calculation of dynamic ankle, knee and hip joint loading joint moments vs. joint contact forces using musculoskeletal modelling, Normative data and the development of mature gait\\\",\\\"ecn\\\":558727,\\\"biography\\\":\\\"Felix Stief started his professional career in the field of sports research and functional testing of shoes at the biomechanical laboratory of the company adidas and obtained his PhD degree in biomechanics at the Technical University Munich. In 2010, he established the Movement Analysis Lab at the Department of Orthopedics Friedrichsheim at the University Hospital Frankfurt/Main in Germany and still works there today as director and group leader. Felix is the president of the German speaking society for clinical gait analysis GAMMA and member of the European Society of Movement Analysis for Adults and Children ESMAC. In 2019, he became associate professor in Musculoskeletal Biomechanics at the Medical Faculty of the Johann Wolfgang Goethe-University Frankfurt/Main where he is also working as a lecturer in the field of clinical gait analysis and biomechanics.&lt;br&gt;&lt;br&gt;&lt;br&gt;His main research focus is in the field of instrumented 3D clinical movement analysis in children and adolescents with orthopedic pathologies including gait biomechanics with an emphasis on degenerative joint disease and dynamic joint loading. His research group has also experience with musculoskeletal modeling to calculate dynamic joint contact forces and muscle forces with OpenSim. &lt;br&gt; &lt;br&gt;Specific Areas of Interest / Expertise:&lt;br&gt; &lt;br&gt;1. Clinical gait analysis including compensating strategies in patients with:&lt;br&gt;hip and knee osteoarthritis / total hip and knee arthroplasty&lt;br&gt;lower limb malalignment varus or valgus / leg axis deformities &lt;br&gt;leg length discrepancy&lt;br&gt;Legg-Calvé-Perthes disease&lt;br&gt;2. Calculation of dynamic ankle, knee and hip joint loading joint moments vs. joint contact forces using musculoskeletal modelling &lt;br&gt;3. Normative data and the development of mature gait\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"United States\\\",\\\"organisationCity\\\":\\\"Minneapolis\\\",\\\"lastName\\\":\\\"Stoffregen\\\",\\\"initials\\\":\\\"A.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0151t000000TFZFAA4&oid=00D1t000000qIy5\\\",\\\"fieldsOfInterest\\\":\\\"Perceiving and acting,&nbsp;Affordances,&nbsp;Motion sickness,&nbsp;Postural control\\\",\\\"ecn\\\":196094,\\\"biography\\\":\\\"I received the BA in Psychology in 1979 (Oberlin College) and the PhD in Human Experimental Psychology in 1984 (Cornell University). I have served on the faculty at the University of Alabama, the University of Cincinnati and, since 2001, at the University of Minnesota. In posture, my research has four foci: 1) postural precursors of motion sickness, 2) the functional integration of postural activity with the achievement of supra-postural tasks (e.g., reading), 3) the perception and control of posture and gait on ships at sea, 4) postural activity as a form of exploration, generating perceptual information about affordances. My research has been funded by NSF, NIH, and the European Commission. I am a Fellow of the National Academy of Kinesiology.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"lastName\\\":\\\"Stuart\\\",\\\"initials\\\":\\\"S.\\\",\\\"fieldsOfInterest\\\":\\\"Eye-tracking, Cortical activity, Gait, Balance, Neurological, Physiotherapy, Rehabilitation\\\",\\\"ecn\\\":504662},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"Poland\\\",\\\"organisationCity\\\":\\\"Warsaw\\\",\\\"lastName\\\":\\\"Syczewska\\\",\\\"initials\\\":\\\"M.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0154L000000xt5uQAA&oid=00D1t000000qIy5EAE&lastMod=1630506328160\\\",\\\"ecn\\\":552990,\\\"biography\\\":\\\"Professional career&lt;br&gt;Employed sine 1989 in The Children’s Memorial Health Institute (CMHI), Dept. Rehabilitation, Kinesiology Lab&lt;br&gt;From 2012 to 2014 Deputy Director for Scientific Research of CMHI&lt;br&gt;From 2013 to 2018 Director of CMHI&lt;br&gt; &lt;br&gt;Research experience &lt;br&gt;Paricipation in two international projects (EU project PERFECT and Polish-Swedish project financed by The Swedish Institute), manager and employee in over 10 research projects financed among others by main Polish state research institutions. The most important project managed was POIG.02.01.00-14-059/09 pt. Multiprofiles modernization of the infrastructure of The Children’s Memorial Health Institute (Wieloprofilowa modernizacja infrastruktury naukowo-badawczej Instytutu „Pomnik - Centrum Zdrowia Dziecka”) acronim ROBIN, budget 36 mln zł (over 8 mln Euro). &lt;br&gt; &lt;br&gt; &lt;br&gt;Publications: &lt;br&gt;Author and co-author of over 150 scientific publications, 7 chapters in books and one book (e-book) about clinical gait analysis (in Polish)&lt;br&gt; &lt;br&gt;Other information:&lt;br&gt;Organizer (together with prof. K.R.Skalski) of 2004 ESMAC meeting in Warsaw&lt;br&gt;since 2005 organizer of yearly (first Friday of March) one day symposia “Motion analysis – theory and applications in clinics”;&lt;br&gt;Since 2008 board member of Polish Society of Biomechanics, from 2008 till 2016 treasurer for the Society, since October 2020 President of the Society;&lt;br&gt;From 2005 to 2015 board member of ESMAC, from 2006 till 2015 Secretary Treasurer of the Society&lt;br&gt;Regular reviewer in scientific journals: Gait &amp; Posture, Clinical Biomechanics, Disability &amp; Rehabilitation, Biomedical Signal Processing and Control, Biomedical Human Kinetics, Polish Annals of Medicine, Acta of Bioengineering and Biomechanics, Sensors, Entropy and others.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"Australia\\\",\\\"organisationCity\\\":\\\"Adelaide\\\",\\\"lastName\\\":\\\"Thewlis\\\",\\\"initials\\\":\\\"D.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0154L000000gY84QAE&oid=00D1t000000qIy5EAE&lastMod=1609150638508\\\",\\\"ecn\\\":173616,\\\"biography\\\":\\\"I am a National Health and Medical Research Council (NHMRC) R.D. Wright Fellow (2017-2021). My primary research focus is the biomechanics of orthopaedic disease and injury. This includes articular fracture management, which is known to be associated with osteoarthritis onset, and joint arthroplasty – the end point for most people with degenerative joint disease. I also have an interest in the neurological aspects of movement control and how pathology can result in the breakdown of normal neurological signalling. I use a combination of biomechanical modelling methods, medical imaging, 24-hour activity monitoring and patient reported outcome measures to explore these conditions. I have published 66 papers in peer-reviewed journals and presented my work extensively at international conferences.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"United Kingdom\\\",\\\"organisationCity\\\":\\\"Oxford\\\",\\\"lastName\\\":\\\"Thompson\\\",\\\"initials\\\":\\\"N.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0154L000000ghRFQAY&oid=00D1t000000qIy5EAE&lastMod=1611556261599\\\",\\\"ecn\\\":198069,\\\"biography\\\":\\\"Nicky is Clinical Specialist in Gait Analysis at the Oxford Gait Laboratory, Nuffield Orthopaedic Centre, Oxford, UK. A Physiotherapist by training, she holds an MSc in research methods and PhD in Biomedical Sciences, both from King&#39;s College, London. She has extensive clinical and research experience in the field of paediatric neuromuscular disorders, in particular in the management of Cerebral Palsy, as well as adult and paediatric neuromuscular diseases. She has a particular research interest in the gait and functional outcomes of multi-level surgery in CP. She is a past Secretary and Treasurer of the European Society of Motion Analysis in Adults and Children (ESMAC).\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"Netherlands\\\",\\\"organisationCity\\\":\\\"Nijmegen\\\",\\\"lastName\\\":\\\"Weerdesteyn\\\",\\\"initials\\\":\\\"V.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0154L000000ghRUQAY&oid=00D1t000000qIy5EAE&lastMod=1611556702815\\\",\\\"ecn\\\":209803,\\\"biography\\\":\\\"Dr. Vivian Weerdesteyn has a background in Physiotherapy (BSc, 1996) and Human Movement Science (MSc, 1999). She obtained her PhD (2005) in Medical Science from the Radboud University Nijmegen on the development and evaluation of a falls prevention program for the elderly (‘Vallen Verleden Tijd’). She currently holds an associate professorship at the Radboud University Medical Center, Department of Rehabilitation, where she is chairing the balance and gait laboratories. Since 2012, she has been a junior principal investigator in the research institutes Radboud Institute for Health Science (RIHS) and Donders Centre for Neuroscience (DCN;www.ru.nl/donders) of the Radboud University. In her research, she aims to elucidate the pathophysiological mechanisms underlying impaired balance and gait control in people with neurological conditions, and to design and evaluate novel interventions to ameliorate these problems. She has served on the board of the International Society for Posture and Gait Research (ISPGR), and she hosted the 2017 World congress of ISPGR in Fort Lauderdale, Florida. She currently holds a prestigious Netherlands Organization for Scientific Research VIDI grant and has published 100+ papers in peer-reviewed journals.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"Australia\\\",\\\"organisationCity\\\":\\\"New South Wales\\\",\\\"lastName\\\":\\\"Wojciechowski\\\",\\\"initials\\\":\\\"E.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=0154L000000xtBsQAI&oid=00D1t000000qIy5EAE&lastMod=1630509398464\\\",\\\"ecn\\\":553013,\\\"biography\\\":\\\"Dr Wojciechowski is a Biomedical Engineer for the Paediatric Gait Analysis Service of NSW at the Children’s Hospital at Westmead. She completed her PhD on Personalised Orthotic Therapy using 3D printing for Children with Charcot-Marie Tooth disease, from the University of Sydney, Australia. As an expert in paediatric clinical gait analysis, she understands the complex gait problems that children with walking disabilities have and the impact that this can have on their quality of life. Her research vision is to improve the gait, functional ability, and quality of life for children with movement disorders. Her research is focused on using 3D printing to develop orthotic devices to improve the walking ability of children and evaluating functional ability of children in the community using wearable technologies.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"Germany\\\",\\\"organisationCity\\\":\\\"Heidelberg\\\",\\\"lastName\\\":\\\"Wolf\\\",\\\"initials\\\":\\\"S.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=015Tl00000CTekqIAD&oid=00D1t000000qIy5EAE&lastMod=1727777551646\\\",\\\"fieldsOfInterest\\\":\\\"Human gait modelling,&nbsp;Orthopedic &amp;,&nbsp;,&nbsp;  Neurologic Gait Disorders,&nbsp;Foot deformities &amp;,&nbsp;,&nbsp;  malfunction,&nbsp;Prosthetics &amp;,&nbsp;,&nbsp;  Orthotics\\\",\\\"ecn\\\":115463,\\\"biography\\\":\\\"With a PhD degree in physics, Sebastian Wolf spent several years in fundamental research in physics before he moved to the field of human movement analysis in 2001. For ten years he was Technical Director of the Gait Analysis Laboratory in the Department of Orthopaedic Surgery at Heidelberg University. Since 2010 he is Director of the Division Human Movement Analysis and responsible both for the clinical gait analysis service as well as the clinical research in this field. In 2015 he became associate professor for Orthopedic Biomechanics at the Medical Faculty of Heidelberg University. In the same year he was elected for president of the European Society for Movement Analysis in Adults and Children ESMAC. Sebastian Wolf is active in clinical motion analysis with continuing scientific interest in advancing knowledge on neurologic and orthopedic gait disorders and mobility related medical healthcare, specifically in prosthetics and orthotics. Expertise: Human gait modelling, Orthopedic &amp; Neurologic Gait Disorders, Foot deformities &amp; malfunction, Prosthetics &amp; Orthotics\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"United States\\\",\\\"organisationCity\\\":\\\"College Station\\\",\\\"lastName\\\":\\\"Yentes\\\",\\\"initials\\\":\\\"M.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=015Tl00000CXZkrIAH&oid=00D1t000000qIy5EAE&lastMod=1727876306662\\\",\\\"fieldsOfInterest\\\":\\\"biomechanics,&nbsp;gait,&nbsp;posture,&nbsp;nonlinear analysis\\\",\\\"ecn\\\":552995,\\\"biography\\\":\\\"Dr. Jenna Yentes is an Associate Professor in the Department of Kinesiology &amp; Sport Management at Texas A&amp;M University. Her research focus is primarily on functional resiliency and reserve in older adults. Her research has focused on gait and balance outcomes in chronic obstructive pulmonary disease and aging, including coupling of biorhythms such as locomotor-respiratory coupling. In addition, she has broad interests in nonlinear analysis of human movement, publishing several papers regarding these methods. Most recently, Dr. Yentes has begun a secondary line of research to investigate effects of turnout gear on the performance of firefighter skills. She previously served as the Education Council Chair for the Gait and Clinical Movement Analysis Society. She is an active member of the American Society of Biomechanics and the International Society of Posture and Gait Research.\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"Germany\\\",\\\"organisationCity\\\":\\\"Cologne\\\",\\\"lastName\\\":\\\"Zijlstra\\\",\\\"initials\\\":\\\"W.\\\",\\\"image\\\":\\\"https://relx-elsevier-erms.file.force.com/servlet/servlet.ImageServer?id=015Tl00000Ca4ixIAB&oid=00D1t000000qIy5EAE&lastMod=1727956603081\\\",\\\"fieldsOfInterest\\\":\\\"Ageing,&nbsp;Gait analysis,&nbsp;Mobility assessment,&nbsp;Inertial sensing based methods,&nbsp;Method development,&nbsp;Balance control in static/dynamic conditions,&nbsp;Exercise based interventions,&nbsp;Cognitive aspects to gait,&nbsp;balance,&nbsp;mobility\\\",\\\"ecn\\\":115474,\\\"biography\\\":\\\"Wiebren Zijlstra is a full professor and head of the Institute of Movement and Sport Gerontology at the German Sport University Cologne. 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Specific areas of expertise: Ageing; Gait analysis; Mobility assessment; Inertial sensing based methods; Method development; Balance control in static/dynamic conditions; Exercise based interventions; Cognitive aspects to balance and mobility.\\\"}]},{\\\"heading\\\":\\\"Emeritus Editors\\\",\\\"entries\\\":[{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"United Kingdom\\\",\\\"organisationCity\\\":\\\"Oxford\\\",\\\"organisation\\\":\\\"Oxford University Hospitals NHS Foundation Trust Nuffield Orthopaedic Centre\\\",\\\"lastName\\\":\\\"Theologis\\\",\\\"journalNote\\\":\\\"FRCS\\\",\\\"initials\\\":\\\"T.\\\",\\\"ecn\\\":107885,\\\"accreditation\\\":\\\"FRCS\\\"},{\\\"type\\\":\\\"Member\\\",\\\"organisationCountry\\\":\\\"Switzerland\\\",\\\"organisationCity\\\":\\\"Zürich\\\",\\\"organisation\\\":\\\"University Children’s Hospital Zurich and Orthopaedic University Hospital 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