Hlavacek: Difference between revisions
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*Signal transduction in immmunity and cancer | *Signal transduction in immmunity and cancer | ||
*Genetic regulatory and metabolic networks | *Genetic regulatory and metabolic networks | ||
*Computational methods and software tools | *Computational methods and software tools for modeling cellular systems | ||
==Selected publications== | ==Selected publications== |
Revision as of 09:26, 6 November 2007
Research interests
Mathematical modeling of complex biological systems
- Signal transduction in immmunity and cancer
- Genetic regulatory and metabolic networks
- Computational methods and software tools for modeling cellular systems
Selected publications
- Hlavacek WS, Faeder JR, Blinov ML, Posner RG, Hucka M, Fontana W (2006) Rules for modeling signal-transduction systems. Sci STKE 2006, re6. PMID 16849649
- Wall ME, Hlavacek WS, Savageau MA (2004) Design of gene circuits: lessons from bacteria. Nat Rev Genet 5, 34-42 PMID 14708014
News
First q-bio Conference on Cellular Information Processing, August 8-11, Santa Fe, NM
Links
Recent updates to the lab wiki
List of abbreviations:
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18 April 2024
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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...") |
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