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[[Keymer:About | <font face="trebuchet ms" style="color:#ffffff"> '''About''' </font>]] &nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;
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<CENTER>
<CENTER>
== Welcome to the Keymer laboratory ==
== <i>Welcome to the </i> <b>Keymer LAB</b> WiKi ==
 
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We study the biophysics and spatial evolutionary ecology of microbial community assemblages in nanofabricated adaptive (habitat) landscapes. We combine theoretical biology with experimental biophysics to study systems microbiology in nano-scale on-chip ecosystems.
<b>BIOLOGY:</b>
We study the molecular biophysics and spatial evolutionary ecology of microbial (bacteria, phages & plasmids) and cellular (monocytes & macrophages) assemblages in fabricated adaptive (<i>habitat</i>) landscapes. We combine theoretical biology with experimental biophysics to study systems biology in nano-scale on-chip ecosystems.<br>
 
<b>PHYSICS:</b> We study the interface between "individuals" (<i>cells & replicons</i>) and their "environment" (<i>niches</i>). At the nanoscale, this distinction blurs into a soft-matter physical (adaptive) system (<i>organism</i>). We are interested in molecular autopoiesis, self-regeneration, self-assembly, and adaptation (computation?) in biophysical evolutionary systems (instances of replicator-interactor cycles). <br>
 
<b>TECHNOLOGY:</b> We are interested in evolving <i>metabolism</i> into physical materials to provide biology-based functionality to human-built devices. We see nano-bio as the natural outcome of the evolutionary trajectory of technology. It corresponds to the adaptive radiation into the nanoscopic world within the (human) built-environment.
 
 
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Revision as of 15:31, 29 July 2014

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Welcome to the Keymer LAB WiKi

BIOLOGY: We study the molecular biophysics and spatial evolutionary ecology of microbial (bacteria, phages & plasmids) and cellular (monocytes & macrophages) assemblages in fabricated adaptive (habitat) landscapes. We combine theoretical biology with experimental biophysics to study systems biology in nano-scale on-chip ecosystems.

PHYSICS: We study the interface between "individuals" (cells & replicons) and their "environment" (niches). At the nanoscale, this distinction blurs into a soft-matter physical (adaptive) system (organism). We are interested in molecular autopoiesis, self-regeneration, self-assembly, and adaptation (computation?) in biophysical evolutionary systems (instances of replicator-interactor cycles).

TECHNOLOGY: We are interested in evolving metabolism into physical materials to provide biology-based functionality to human-built devices. We see nano-bio as the natural outcome of the evolutionary trajectory of technology. It corresponds to the adaptive radiation into the nanoscopic world within the (human) built-environment.


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