Associative Memory in Gene Regulation Networks
暂无分享,去创建一个
Richard A. Watson | Rob Mills | Christopher L. Buckley | Adam P. Davies | R. Watson | C. Buckley | Rob Mills
[1] Richard A. Watson,et al. Can Selfish Symbioses Effect Higher-Level Selection? , 2009, ECAL.
[2] M. Bedau. Presented at a Symposium on " the Making up of Organisms: Mapping the Future of Biological Models and Theories, the Evolution of Complexity , 2008 .
[3] Randall D. Beer,et al. On the Dynamics of Small Continuous-Time Recurrent Neural Networks , 1995, Adapt. Behav..
[4] Günter P. Wagner,et al. Complex Adaptations and the Evolution of Evolvability , 2005 .
[5] John J. Hopfield,et al. Neural networks and physical systems with emergent collective computational abilities , 1999 .
[6] James M. Cheverud,et al. GENETIC VARIATION IN PLEIOTROPY: DIFFERENTIAL EPISTASIS AS A SOURCE OF VARIATION IN THE ALLOMETRIC RELATIONSHIP BETWEEN LONG BONE LENGTHS AND BODY WEIGHT , 2007, Evolution; international journal of organic evolution.
[7] Richard A. Watson,et al. Global Adaptation in Networks of Selfish Components: Emergent Associative Memory at the System Scale , 2011, Artificial Life.
[8] Kenneth L. Artis. Design for a Brain , 1961 .
[9] Jason Noble,et al. Adaptation without Natural Selection , 2010, ALIFE.
[10] Chrisantha Fernando,et al. The Evolution of Evolvability in Gene Transcription Networks , 2008, ALIFE.
[11] Giles Mayley. Guiding or Hiding: Explorations into the Effects of Learning on the Rate of Evolution , 1997 .
[12] Hod Lipson,et al. ON THE ORIGIN OF MODULAR VARIATION , 2002, Evolution; international journal of organic evolution.
[13] Richard A. Watson,et al. Social Environment Construction Provides an Adaptive Explanation for New Levels of Individuality , 2009 .
[14] G. Wagner,et al. The road to modularity , 2007, Nature Reviews Genetics.
[15] Geoffrey E. Hinton,et al. A Learning Algorithm for Boltzmann Machines , 1985, Cogn. Sci..
[16] Johan Bollen,et al. The evolution of complexity , 1999 .
[17] Vladimir Kryzhanovsky,et al. Binary Optimization: On the Probability of a Local Minimum Detection in Random Search , 2006, ICAISC.
[18] Chrisantha Fernando,et al. Molecular circuits for associative learning in single-celled organisms , 2008, Journal of The Royal Society Interface.
[19] Merav Parter,et al. Facilitated Variation: How Evolution Learns from Past Environments To Generalize to New Environments , 2008, PLoS Comput. Biol..
[20] Rob Mills,et al. How micro-evolution can guide macro-evolution : multi-scale search via evolved modular variation , 2010 .
[21] Geoffrey E. Hinton,et al. How Learning Can Guide Evolution , 1996, Complex Syst..
[22] John S. McCaskill,et al. Open Problems in Artificial Life , 2000, Artificial Life.
[23] Marc Toussaint,et al. Complex adaptation and system structure , 2007, Biosyst..
[24] Ingo Rechenberg,et al. Evolutionsstrategie : Optimierung technischer Systeme nach Prinzipien der biologischen Evolution , 1973 .
[25] José F. Fontanari,et al. Generalization in a Hopfield network , 1990 .
[26] Anton Crombach,et al. Evolution of Evolvability in Gene Regulatory Networks , 2008, PLoS Comput. Biol..
[27] R. Watson,et al. Optimisation in ‘Self-modelling’ Complex Adaptive Systems , 2011 .
[28] Jason Noble,et al. “If You Can't Be With the One You Love, Love the One You're With”: How Individual Habituation of Agent Interactions Improves Global Utility , 2011, Artificial Life.