Reading in modularity and evolution

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@misc{alon2003bnt,

 title=Template:Biological networks: the tinkerer as an engineer,
 author={Alon, U.},
 journal={Science},
 volume={301},
 number={5641},
 pages={1866--1867},
 year={2003},
 publisher={American Association for the Advancement of Science}

} </bibtex>

 title=Template:An Analytically Solvable Model for Rapid Evolution of Modular Structure,
 author={Kashtan, N. and Mayo, A.E. and Kalisky, T. and Alon, U.},
 journal={PLoS Computational Biology},
 volume={5},
 number={4},
 year={2009},
 publisher={Public Library of Science}

} </bibtex>

@article{tononi1994mbc,

 title=Template:A measure for brain complexity: relating functional segregation and integration in the nervous system,
 author={Tononi, G. and Sporns, O. and Edelman, GM},
 journal={Proceedings of the National Academy of Sciences},
 volume={91},
 number={11},
 pages={5033--5037},
 year={1994},
 publisher={National Acad Sciences}

} </bibtex>

@article{arenas2006spc,

 title=Template:Synchronization processes in complex networks,
 author={Arenas, A. and Diaz-Guilera, A. and Perez-Vicente, C.J.},
 journal={Physica D: Nonlinear Phenomena},
 volume={224},
 number={1-2},
 pages={27--34},
 year={2006},
 publisher={Elsevier}

} </bibtex>


Other notes

  • I can see more work in evolved topologies at Sussex and via Izqueirdo.
  • I should consider evolving topologies for the six-legged agent. consider Artemy's scheme.
  • I should consider directly perturbing the neurons in a leg, and not just the legs. I should also look at whether sensation was updated after legs were perturbed
  • Something about Hopfield nets to look into.
  • Perhaps look more into NEAT[1]