Team:Paris/Bibliography

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==Bibliography==
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{{Paris/Header|Bibliography}}
* [1] Shiraz Kalir, Uri Alon. ''Using quantitative blueprint to reprogram the dynamics of the flagella network.'' Cell, June 11, 2004, Vol.117, 713-720.
* [1] Shiraz Kalir, Uri Alon. ''Using quantitative blueprint to reprogram the dynamics of the flagella network.'' Cell, June 11, 2004, Vol.117, 713-720.
* [2]Jordi Garcia-Ojalvo, Michael B. Elowitz, Steven H. Strogratz. ''Modeling a synthetic multicellular clock : repressilators coupled by quorum sensing.'' PNAS, July 27, 2004, Vol. 101, no. 30.
* [2]Jordi Garcia-Ojalvo, Michael B. Elowitz, Steven H. Strogratz. ''Modeling a synthetic multicellular clock : repressilators coupled by quorum sensing.'' PNAS, July 27, 2004, Vol. 101, no. 30.

Revision as of 14:17, 29 October 2008

Bibliography


  • [1] Shiraz Kalir, Uri Alon. Using quantitative blueprint to reprogram the dynamics of the flagella network. Cell, June 11, 2004, Vol.117, 713-720.
  • [2]Jordi Garcia-Ojalvo, Michael B. Elowitz, Steven H. Strogratz. Modeling a synthetic multicellular clock : repressilators coupled by quorum sensing. PNAS, July 27, 2004, Vol. 101, no. 30.
  • [3]Frederick K. Balagaddé, Hao Song, Jun Ozaki, Cynthia H. Collins, Matthew Barnet, Frances H. Arnold, Stephen R. Quake, Lingchong You. A Synthetic Escherichia Coli predator prey ecosystem. Molecular Systems Biology. 2008.
  • [4]M. Schuster, M. L Urbanowski, E. P. Greenberg. Promoter Specificity in Pseudomonas aeruginosa quorum sensing revealed by DNA binding of purified LasR. PNAS, November 9, 2004, vol. 101, no. 45.
  • [5]Nitzan Rosenfeld, Michael B. Elowitz, Uri Alon. Negative autoregulation speeds the response times of transcription networks. JMB, 2003, 323, 785-793.
  • [6]Lingchong You, Robert Sidney Cox III, Ron Weiss, Frances H. Arnold. Programmed population control by cell-cell communication and regulation killing. Nature, April 22, 2004.
  • [7] Braun D et al. Parameter Estimation for Two Synthetic Gene Networks: A Case Study, ICASSP 5:769-772, 2005.
  • [8] Pearson et al. Active Efflux and Diffusion Are Involved in Transport of Pseudomonas aeruginosa Cell-to-Cell Signals Journal of Bacteriology, February 1999, p. 1203-1210, Vol. 181, No. 4