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  <title>RainDance on X-Linked mental retardation study from the Max-Planck Institute</title>
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  <blip:puredescription><![CDATA[Scientist from RainDance elaborates on how their micro-droplet technology, high-throughput sequencing, and CLC bio&apos;s bioinformatics tools can be used to effectively speed up the process of analyzing complex diseases. In this video examplified by a publication on X-Linked mental retardation from the Max-Planck Institute.]]></blip:puredescription>
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&lt;br /&gt;

Scientist from RainDance elaborates on how their micro-droplet technology, high-throughput sequencing, and CLC bio&amp;apos;s bioinformatics tools can be used to effectively speed up the process of analyzing complex diseases. In this video examplified by a publication on X-Linked mental retardation from the Max-Planck Institute.&lt;img src="http://feeds.feedburner.com/~r/clcpodcast/~4/NgXpTTN-rVM" height="1" width="1"/&gt;</description>
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<author>info@clcbio.com (CLC bio)</author><itunes:explicit>no</itunes:explicit><itunes:subtitle> Scientist from RainDance elaborates on how their micro-droplet technology, high-throughput sequencing, and CLC bio&amp;apos;s bioinformatics tools can be used to effectively speed up the process of analyzing complex diseases. In this video examplified by a p</itunes:subtitle><itunes:author>CLC bio</itunes:author><itunes:summary> Scientist from RainDance elaborates on how their micro-droplet technology, high-throughput sequencing, and CLC bio&amp;apos;s bioinformatics tools can be used to effectively speed up the process of analyzing complex diseases. In this video examplified by a publication on X-Linked mental retardation from the Max-Planck Institute. </itunes:summary><feedburner:origLink>http://blip.tv/clc-bio/raindance-on-x-linked-mental-retardation-study-from-the-max-planck-institute-3756601</feedburner:origLink></item>




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  <blip:puredescription><![CDATA[Researchers at the Oklamhoma Medical Research Foundation elaborate on their sequence capture approach to identifying novel genes that are linked to Lupus erythematosus.]]></blip:puredescription>
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Researchers at the Oklamhoma Medical Research Foundation elaborate on their sequence capture approach to identifying novel genes that are linked to Lupus erythematosus.&lt;img src="http://feeds.feedburner.com/~r/clcpodcast/~4/fXkuhBUju14" height="1" width="1"/&gt;</description>
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<author>info@clcbio.com (CLC bio)</author><itunes:explicit>no</itunes:explicit><itunes:subtitle> Researchers at the Oklamhoma Medical Research Foundation elaborate on their sequence capture approach to identifying novel genes that are linked to Lupus erythematosus. </itunes:subtitle><itunes:author>CLC bio</itunes:author><itunes:summary> Researchers at the Oklamhoma Medical Research Foundation elaborate on their sequence capture approach to identifying novel genes that are linked to Lupus erythematosus. </itunes:summary><feedburner:origLink>http://blip.tv/clc-bio/omrf-research-on-lupus-erythematosus-3746563</feedburner:origLink></item>




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  <title>Genome project - Research on plant diseases</title>
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  <blip:puredescription><![CDATA[See how CLC bio&apos;s de novo assembler is making research easier for Eva Stukenbrock, Postdoc, Cand. Scient. PhD at BiRC, Aarhus University]]></blip:puredescription>
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&lt;br /&gt;

See how CLC bio&amp;apos;s de novo assembler is making research easier for Eva Stukenbrock, Postdoc, Cand. Scient. PhD at BiRC, Aarhus University&lt;img src="http://feeds.feedburner.com/~r/clcpodcast/~4/SY8bdCW2Gxo" height="1" width="1"/&gt;</description>
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  <pubDate>Mon, 15 Mar 2010 10:00:10 +0000</pubDate>
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  <title>CLC Consulting Service - Customer examples: Symphogen</title>
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  <blip:puredescription><![CDATA[Jannick D. Bendtsen, PhD. Director of Consulting Services at CLC bio. On how we can help you speed up your workflow. In this case ;CLC bio delivers specialized immunoinformatics solution to Symphogen.]]></blip:puredescription>
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&lt;br /&gt;

Jannick D. Bendtsen, PhD. Director of Consulting Services at CLC bio. On how we can help you speed up your workflow. In this case ;CLC bio delivers specialized immunoinformatics solution to Symphogen.&lt;img src="http://feeds.feedburner.com/~r/clcpodcast/~4/H2bj-6ol8ks" height="1" width="1"/&gt;</description>
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&lt;br /&gt;

Saul A. Kravitz, PhD, ;Director of Consulting Services, North America. CLC bio&amp;apos;s focus on scientific productivity and how we can help you archive results faster, better and cheaper.&lt;img src="http://feeds.feedburner.com/~r/clcpodcast/~4/qYuBPuOvmlI" height="1" width="1"/&gt;</description>
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&lt;br /&gt;

Saul A. Kravitz, PhD, ;Director of Consulting Services, North America. Explaining how you can increase your productivity - cost effectively and quickly.&lt;img src="http://feeds.feedburner.com/~r/clcpodcast/~4/C3QPmJW_SSE" height="1" width="1"/&gt;</description>
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&lt;br /&gt;

Saul A. Kravitz, PhD, ;Director of Consulting Services, North America. Elaborating on how you can archive better results faster.&lt;img src="http://feeds.feedburner.com/~r/clcpodcast/~4/Orojm9g9x04" height="1" width="1"/&gt;</description>
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  <title>How does "BIOINFORMATICS" sound?</title>
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&lt;br /&gt;

Here&amp;apos;s CLC bio&amp;apos;s take on how the word &amp;quot;BIOINFORMATICS&amp;quot; sound!&lt;img src="http://feeds.feedburner.com/~r/clcpodcast/~4/LY_daMWC8IA" height="1" width="1"/&gt;</description>
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&lt;br /&gt;

In this chinese video, you can see how to assemble data from two different NGS platforms, Illumina Genome Analyzer and 454, in one run. The data set contains both paired-ends and single reads.&lt;img src="http://feeds.feedburner.com/~r/clcpodcast/~4/ISPIWWcxZpc" height="1" width="1"/&gt;</description>
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<author>info@clcbio.com (CLC bio)</author><itunes:explicit>no</itunes:explicit><itunes:subtitle> In this chinese video, you can see how to assemble data from two different NGS platforms, Illumina Genome Analyzer and 454, in one run. The data set contains both paired-ends and single reads. </itunes:subtitle><itunes:author>CLC bio</itunes:author><itunes:summary> In this chinese video, you can see how to assemble data from two different NGS platforms, Illumina Genome Analyzer and 454, in one run. The data set contains both paired-ends and single reads. </itunes:summary><feedburner:origLink>http://blip.tv/clc-bio/in-chinese-clc-genomics-workbench-assembling-mixed-data-sets-1314165</feedburner:origLink></item>




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&lt;br /&gt;

See how to assemble data from two different NGS platforms, Illumina Genome Analyzer and 454, in one run. The data set contains both paired-ends and single reads.&lt;img src="http://feeds.feedburner.com/~r/clcpodcast/~4/KQ6jWyO0Zbc" height="1" width="1"/&gt;</description>
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<author>info@clcbio.com (CLC bio)</author><itunes:explicit>no</itunes:explicit><itunes:subtitle> See how to assemble data from two different NGS platforms, Illumina Genome Analyzer and 454, in one run. The data set contains both paired-ends and single reads. </itunes:subtitle><itunes:author>CLC bio</itunes:author><itunes:summary> See how to assemble data from two different NGS platforms, Illumina Genome Analyzer and 454, in one run. The data set contains both paired-ends and single reads. </itunes:summary><feedburner:origLink>http://blip.tv/clc-bio/clc-genomics-workbench-part-ii-assembling-mixed-data-sets-1299465</feedburner:origLink></item>




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  <blip:puredescription><![CDATA[This tutorial will show you how to design standard PCR primers using the CLC Workbench.]]></blip:puredescription>
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&lt;br /&gt;

This tutorial will show you how to design standard PCR primers using the CLC Workbench.&lt;img src="http://feeds.feedburner.com/~r/clcpodcast/~4/h6Tdf9mIXhA" height="1" width="1"/&gt;</description>
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  <pubDate>Wed, 27 Aug 2008 09:06:21 +0000</pubDate>
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&lt;br /&gt;

This tutorial will show you how to analyze your sequencing data and compare the reads to a reference sequence.&lt;img src="http://feeds.feedburner.com/~r/clcpodcast/~4/JbvJmLIaqOM" height="1" width="1"/&gt;</description>
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&lt;br /&gt;

This tutorial shows you how to conduct a BLAST search at NCBI from within the CLC Workbench.&lt;img src="http://feeds.feedburner.com/~r/clcpodcast/~4/E66cew5qq_E" height="1" width="1"/&gt;</description>
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&lt;br /&gt;

This tutorial shows you how to work with sequences in a batch mode.&lt;img src="http://feeds.feedburner.com/~r/clcpodcast/~4/4KMhP7DuweU" height="1" width="1"/&gt;</description>
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&lt;br /&gt;

This tutorial shows you how to cut out a gene and insert it into a vector.&lt;img src="http://feeds.feedburner.com/~r/clcpodcast/~4/GBOWf9sJVQ0" height="1" width="1"/&gt;</description>
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<author>info@clcbio.com (CLC bio)</author><itunes:explicit>no</itunes:explicit><itunes:subtitle> This tutorial shows you how to cut out a gene and insert it into a vector. </itunes:subtitle><itunes:author>CLC bio</itunes:author><itunes:summary> This tutorial shows you how to cut out a gene and insert it into a vector. </itunes:summary><feedburner:origLink>http://blip.tv/clc-bio/cloning-part-ii-1194594</feedburner:origLink></item>




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  <blip:puredescription><![CDATA[In this tutorial, we will show you how to find the right enzymes to use for cutting out a gene and inserting it into a vector.]]></blip:puredescription>
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&lt;br /&gt;

In this tutorial, we will show you how to find the right enzymes to use for cutting out a gene and inserting it into a vector.&lt;img src="http://feeds.feedburner.com/~r/clcpodcast/~4/wO61Z1Wt9nA" height="1" width="1"/&gt;</description>
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<author>info@clcbio.com (CLC bio)</author><itunes:explicit>no</itunes:explicit><itunes:subtitle> In this tutorial, we will show you how to find the right enzymes to use for cutting out a gene and inserting it into a vector. </itunes:subtitle><itunes:author>CLC bio</itunes:author><itunes:summary> In this tutorial, we will show you how to find the right enzymes to use for cutting out a gene and inserting it into a vector. </itunes:summary><feedburner:origLink>http://blip.tv/clc-bio/cloning-part-i-1194482</feedburner:origLink></item>




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&lt;br /&gt;

This tutorial shows you how to adjust view settings, e.g. which restriction sites to display on your sequence, and also how to save the settings.&lt;img src="http://feeds.feedburner.com/~r/clcpodcast/~4/s_UnqODoVPQ" height="1" width="1"/&gt;</description>
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<author>info@clcbio.com (CLC bio)</author><itunes:explicit>no</itunes:explicit><itunes:subtitle> This tutorial shows you how to adjust view settings, e.g. which restriction sites to display on your sequence, and also how to save the settings. </itunes:subtitle><itunes:author>CLC bio</itunes:author><itunes:summary> This tutorial shows you how to adjust view settings, e.g. which restriction sites to display on your sequence, and also how to save the settings. </itunes:summary><feedburner:origLink>http://blip.tv/clc-bio/adjust-and-save-view-settings-1194359</feedburner:origLink></item>




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  <blip:puredescription><![CDATA[A brief tutorial showing how to open a DNA sequence in the CLC Workbenches.]]></blip:puredescription>
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&lt;br /&gt;

A brief tutorial showing how to open a DNA sequence in the CLC Workbenches.&lt;img src="http://feeds.feedburner.com/~r/clcpodcast/~4/8sw6-SFQczc" height="1" width="1"/&gt;</description>
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  <category>Science</category>
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&lt;br /&gt;

Getting started using the CLC Workbenches.&lt;img src="http://feeds.feedburner.com/~r/clcpodcast/~4/WwoYJ5GD4O8" height="1" width="1"/&gt;</description>
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  <blip:puredescription><![CDATA[Here you can watch a 6-minute preview of the most ambitious platform for Next Generation Sequencing analyses: CLC Genomics Workbench. This software package is the only to support all current NGS formats: 454, Solexa, SOLiD - and later on Helicos, among more.This video preview shows a few of the features - more are already implemented in the workbench - and you can learn a bit about the intuitive graphical user-interface to access this extremely powerful Next Generation Sequencing analysis package.]]></blip:puredescription>
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&lt;br /&gt;

Here you can watch a 6-minute preview of the most ambitious platform for Next Generation Sequencing analyses: CLC Genomics Workbench. This software package is the only to support all current NGS formats: 454, Solexa, SOLiD - and later on Helicos, among more.This video preview shows a few of the features - more are already implemented in the workbench - and you can learn a bit about the intuitive graphical user-interface to access this extremely powerful Next Generation Sequencing analysis package.&lt;img src="http://feeds.feedburner.com/~r/clcpodcast/~4/h8QkpSwfnnI" height="1" width="1"/&gt;</description>
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  <category>Science</category>
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  <category>workbench</category>
  <category>next</category>
  <category>second</category>
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  <category>assembly</category>
  <pubDate>Thu, 10 Apr 2008 21:25:51 +0000</pubDate>
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  <media:title>Preview of CLC Genomics Workbench</media:title>
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<author>info@clcbio.com (CLC bio)</author><itunes:explicit>no</itunes:explicit><itunes:subtitle> Here you can watch a 6-minute preview of the most ambitious platform for Next Generation Sequencing analyses: CLC Genomics Workbench. This software package is the only to support all current NGS formats: 454, Solexa, SOLiD - and later on Helicos, among m</itunes:subtitle><itunes:author>CLC bio</itunes:author><itunes:summary> Here you can watch a 6-minute preview of the most ambitious platform for Next Generation Sequencing analyses: CLC Genomics Workbench. This software package is the only to support all current NGS formats: 454, Solexa, SOLiD - and later on Helicos, among more.This video preview shows a few of the features - more are already implemented in the workbench - and you can learn a bit about the intuitive graphical user-interface to access this extremely powerful Next Generation Sequencing analysis package. </itunes:summary><feedburner:origLink>http://blip.tv/clc-bio/preview-of-clc-genomics-workbench-823159</feedburner:origLink></item>






<copyright>Creative Commons - Noncommercial - No Derivative Works 2.5 license.</copyright><media:credit role="author">CLC bio</media:credit><media:rating>nonadult</media:rating><media:description type="plain">The latest in bioinformatics and next generation sequencing!</media:description></channel>
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