Koch Lab: Difference between revisions

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Latest revision as of 13:38, 2 June 2010


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Welcome to the KochLab wiki!

We are a research lab at the University of New Mexico, in the Center for High Technology Materials (CHTM) and Physics Department. We are experimental biophysicists, which to us means we use our skills and talents as physical scientists to provide new answers for important questions in cellular and molecular biology. For example, developing new techniques to probe protein-DNA interactions by unzipping single DNA molecules with optical tweezers. You can learn more about our interests on our Research page.

In addition, we are committed to being open scientists and sharing our results, methods, and ideas as quickly, clearly, and openly as possible. However, being a very new lab, we are still learning how to do this and are well behind the curve set by others at OpenWetWare. Therefore, we welcome any requests for information or improvements to add to the wiki, see our Contact page.

We're all over the internet

You can follow our latest endeavors here on OWW or you can follow us in other ways too. Check us out:

KochLab Research... our lab research blog
KochLab Youtube... awesome science videos
Steve's science blog, Steve's research blog, Steve's teaching blog
Flavors of Kochlab... compiling the best of the web


Recent updates to the lab wiki

List of abbreviations:
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17 April 2024

     15:34  BioMicroCenter:Element Sequencing‎‎ 3 changes history +295 [Challee‎ (3×)]
     
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16 April 2024

N    19:59  Nanoimprint Lithography (NIL) - Carter Paul‎‎ 10 changes history +7,205 [CarterPaul‎ (10×)]
     
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N    18:40  3D Cell Culture - McLean Taggart, Emma Villares, Maximillian Marek, Scott LeBlanc, Adam Lyons and Jacob Belden diffhist +24,060 CarterPaul talk contribs (Created page with "{{Template:CHEM-ENG590E}} ==Introduction== While most microfluidic devices incorporate a 2D cell culture design, in which a single layer of cells is grown on the bottom of a device, these systems suffer from poor <i>in vivo</i> mimicry, as, in the human body, most cells grow in all directions.<sup>https://doi.org/10.5114/aoms.2016.63743 1</sup> To address this limitation, 3D cell culture devices have been developed - in w...")
     18:38  CHEM-ENG590E:Wiki Textbook‎‎ 2 changes history +63 [CarterPaul‎ (2×)]
     
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     18:36  3D Cell Culture - McLean Taggart, Emma Villares, Maximillian Marek, Scott LeBlanc, and Adam Lyons diffhist +5,343 CarterPaul talk contribs (Added a Technique and applications section)
     10:20  Yarn Microfluidics - Roger Dirth‎‎ 12 changes history +442 [Rcostello‎ (12×)]
     
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     08:18  3D Printed Microfluidic Robots - Helen Hua‎‎ 2 changes history +6 [Michele Caggioni‎ (2×)]
     
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15 April 2024

     23:43  User:Yanbin Huang‎‎ 2 changes history +170 [Yanbin Huang‎ (2×)]
     
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     22:11  The paper that launched microfluidics - Xi Ning‎‎ 11 changes history +4,793 [Xning098‎ (11×)]
     
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     21:45  (Upload log) [Xning098‎ (2×)]
     
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21:30 Xning098 talk contribs uploaded File:Figure 3 Set-up3.png

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