Information Technology Reference
In-Depth Information
Acknowledgments
E.U. acknowledges nancial support from the Alexander von Humboldt Foundation
and from SULSA. Financial support for E.U. and J.G.O. was provided by the Eu-
ropean Commission (GABA project, contract FP6-2005-NEST-Path-043309). A.K.
and J.K. acknowledge the GoFORSYS project funded by the Federal Ministry of
Education and Research Grant Nr. 0313924 and the Network of Excellence BioSim
(contract No. LSHB-CT-2004-005137), funded by the European Commission.
A.Z. acknowledges nancial support from Volkswagen-foundation and the UCLH/
UCL NIHR Comprehensive Biomedical Research Centre. E.V. from the Program
Radiozika (Russian Academy) and from RFBR Grant No. RFBR 08-02-00682.
J.G.O. also acknowledges support from MEC (Spain, project FIS2006-11452 and I3
program).
References
Antipov, A. and Sukhorukov, G. (2004). Polyelectrolyte multilayer capsules as vehicles
with tunable permeability, Adv. Coll. Interface Sci. 111, pp. 49{61.
Atkinson, M. R., Savageau, M. A., Myers, J. T. and Ninfa, A. J. (2003). Development of
genetic circuitry exhibiting toggle switch or oscillatory behavior in escherichia coli,
Cell 113, pp. 597{607.
Bar-Eli, K. (1985). On the stability of coupled chemical oscillators, Physica D 14, pp. 242{
252.
Basu, S., Gerchman, Y., Collins, C., Arnold, F. and Weiss, R. (2005). A synthetic multi-
cellular system for programmed pattern formation, Nature 434, pp. 1130{1134.
Basu, S., Mehreja, R., Thiberge, S., Chen, M. and Weiss, R. (2004). Spatiotemporal
control of gene expression with pulse-generating networks, Proc. Natl. Acad. Sci.
U.S.A. 101, pp. 6355{6360.
Bratsun, D., Volfson, D., Tsimring, L. and Hasty, J. (2005). Delay-induced stochastic
oscillations in gene regulations, Proc. Natl. Acad. Sci. U.S.A. 102, pp. 14593{14598.
Buldu, J., Garca-Ojalvo, J., Wagemakers, A. and Sanjuan, M. (2005). Electronic design
of synthetic genetic networks, Int. J. Bif. Chaos 17, pp. 3507{3511.
Chen, L. and Aihara, K. (2002). A model of periodic oscillations for genetic regulatory
systems, IEEE Trans. Circ. Syst. 49, pp. 1429{1436.
Crowley, M. F. and Epstein, I. R. (1989). Experimental and theoretical studies of a cou-
pled chemical oscillator: phase death, multistability and in-phase and out-of-phase
entrainment, J. Phys. Chem. 93, 6, pp. 2496{2502.
Dockery, J. D. and Keener, J. P. (2001). A mathematical model for quorum sensing in
pseudomonas aeruginosa, Bull. Math. Biol. 63, pp. 95{116.
Dolnik, M. and Marek, M. (1988). Extinction of oscillations in forced and coupled reaction
cells, J. Phys. Chem. 92, 9, pp. 2452{2455.
Elowitz, M. and Leibler, S. (2000). A synthetic oscillatory network of transcriptional reg-
ulators, Nature 403, pp. 335{338.
Elowitz, M., Levine, A., Siggia, E. and Swain, P. (2002). Stochastic gene expression in a
single cell, Science 297, pp. 1183{1186.
Enright, J. (1980). Temporal precision in circadian systems: a reliable neuronal clock from
unreliable components? Science 209, 4464, pp. 1542{1545.
Search WWH ::




Custom Search