Collins Lab: Difference between revisions
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'''Synthetic Biology''': We are modeling and building synthetic gene networks for a variety of biotechnology and biocomputing applications. We are also using engineered gene networks to study general principles underlying gene regulation. | '''Synthetic Biology''': We are modeling and building synthetic gene networks for a variety of biotechnology and biocomputing applications. We are also using engineered gene networks to study general principles underlying gene regulation. | ||
Our lab is part of the Center for BioDynamics | |||
Our lab is part of the '''Howard Hughes Medical Institute''', the '''Center for BioDynamics''', the '''Department of Biomedical Engineering''', the '''Bioinformatics Program''', the '''Center for Advanced Biotechnology''', the '''Molecular Biology''', '''Cell Biology''' & '''Biochemistry (MCBB)''' Program at '''Boston University''', the''' Wyss Institute for Biologically Inspired Engineering''' at '''Harvard University''', the '''Frontiers in Integrative Biological Research Program''', and the '''Center for Cancer Systems Biology''' at the '''Dana Farber Cancer Institute'''. | |||
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Revision as of 07:49, 22 September 2009
This site is in development. Please see our Boston University homepage
In the press
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Resources• Research |
Technical |
Our lab is focused on developing and using nonlinear dynamics approaches to study, mimic and improve the function of biological systems. We are currently working in three areas: Systems Biology: We are developing and implementing computational-experimental methods to reverse engineer and analyze regulatory networks in microbes and higher organisms. Synthetic Biology: We are modeling and building synthetic gene networks for a variety of biotechnology and biocomputing applications. We are also using engineered gene networks to study general principles underlying gene regulation.
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