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Neural Computation, Vol 10, 1831-1846, Copyright © 1998 by The MIT Press


LETTERS

Classification Of Temporal Patterns In Dynamic Biological Networks

Patrick D. Roberts

A general method is presented to classify temporal patterns generated by rhythmic biological networks when synaptic connections and cellular properties are known. The method is discrete in nature and relies on algebraic properties of state transitions and graph theory. Elements of the set of rhythms generated by a network are compared using a metric that quantifies the functional differences among them. The rhythms are then classified according to their location in a metric space. Examples are given, and biological implications are discussed.


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S. Psujek, J. Ames, and R. D. Beer
Connection and coordination: the interplay between architecture and dynamics in evolved model pattern generators.
Neural Comput., March 1, 2006; 18(3): 729 - 747.
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Copyright © 1998 by The MIT Press.