Pattern selection in reaction diffusion systems.
暂无分享,去创建一个
[1] Henry S. Greenside,et al. Pattern Formation and Dynamics in Nonequilibrium Systems , 2004 .
[2] J. Tzou,et al. The stability of localized spikes for the 1-D Brusselator reaction–diffusion model , 2013, European Journal of Applied Mathematics.
[3] P. Maini,et al. Reaction and diffusion on growing domains: Scenarios for robust pattern formation , 1999, Bulletin of mathematical biology.
[4] J. E. Pearson. Complex Patterns in a Simple System , 1993, Science.
[5] W. Zimmermann,et al. Nonlinear patterns shaping the domain on which they live , 2020, New Journal of Physics.
[6] K. Kaneko,et al. Chemophoresis as a driving force for intracellular organization: Theory and application to plasmid partitioning , 2011, Biophysics.
[7] Ruth E Baker,et al. Turing's model for biological pattern formation and the robustness problem , 2012, Interface Focus.
[8] W. Zimmermann,et al. Pattern orientation in finite domains without boundaries , 2015, 1512.05576.
[9] Erwin Frey,et al. Self-organization principles of intracellular pattern formation , 2018, Philosophical Transactions of the Royal Society B: Biological Sciences.
[10] H. Meinhardt,et al. A theory of biological pattern formation , 1972, Kybernetik.
[11] W. J. Freeman,et al. Alan Turing: The Chemical Basis of Morphogenesis , 1986 .
[12] Philip Ball,et al. The Self-Made Tapestry: Pattern Formation in Nature , 1999 .
[13] Michael J. Ward,et al. The stability of spike solutions to the one-dimensional Gierer—Meinhardt model , 2001 .
[14] Erwin Frey,et al. Pattern localization to a domain edge. , 2019, Physical review. E.
[15] M. Golinski,et al. Mathematical Biology , 2005 .
[16] J. Schnakenberg,et al. Simple chemical reaction systems with limit cycle behaviour. , 1979, Journal of theoretical biology.
[17] J. Murray,et al. Pattern sensitivity to boundary and initial conditions in reaction-diffusion models , 1986, Journal of mathematical biology.
[18] David Iron,et al. Stability analysis of Turing patterns generated by the Schnakenberg model , 2004, Journal of mathematical biology.
[19] H. Meinhardt,et al. Biological pattern formation: fmm basic mechanisms ta complex structures , 1994 .
[20] M. Cross,et al. Pattern formation outside of equilibrium , 1993 .
[21] Seán M. Murray,et al. Self-organization and positioning of bacterial protein clusters , 2017, Nature Physics.
[22] A. Turing. The chemical basis of morphogenesis , 1952, Philosophical Transactions of the Royal Society of London. Series B, Biological Sciences.
[23] H. Engel,et al. Chemical Waves and Patterns , 1996 .
[24] Robert Ietswaart,et al. Competing ParA Structures Space Bacterial Plasmids Equally over the Nucleoid , 2014, PLoS Comput. Biol..
[25] I. Prigogine,et al. On symmetry-breaking instabilities in dissipative systems , 1967 .
[26] A. Mochizuki,et al. Transient and steady state of mass-conserved reaction-diffusion systems. , 2006, Physical review. E, Statistical, nonlinear, and soft matter physics.
[27] Self-organised segregation of bacterial chromosomal origins , 2018 .
[28] I. Prigogine,et al. Symmetry Breaking Instabilities in Dissipative Systems. II , 1968 .
[29] Shuji Ishihara,et al. A Mass Conserved Reaction–Diffusion System Captures Properties of Cell Polarity , 2006, PLoS Comput. Biol..
[30] A. Wit,et al. SPATIAL PATTERNS AND SPATIOTEMPORAL DYNAMICS IN CHEMICAL SYSTEMS , 2007 .
[31] Shigeru Kondo,et al. Reaction-Diffusion Model as a Framework for Understanding Biological Pattern Formation , 2010, Science.
[32] Kenneth Showalter,et al. Chemical waves and patterns , 1995 .