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Weakly Connected Neural Networks [Paperback]

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  • Category: Books (Computers)
  • Author:  Hoppensteadt, Frank C., Izhikevich, Eugene M.
  • Author:  Hoppensteadt, Frank C., Izhikevich, Eugene M.
  • ISBN-10:  1461273021
  • ISBN-10:  1461273021
  • ISBN-13:  9781461273028
  • ISBN-13:  9781461273028
  • Publisher:  Springer
  • Publisher:  Springer
  • Binding:  Paperback
  • Binding:  Paperback
  • Pub Date:  01-Feb-2012
  • Pub Date:  01-Feb-2012
  • SKU:  1461273021-11-SPRI
  • SKU:  1461273021-11-SPRI
  • Item ID: 100940024
  • List Price: $109.99
  • Seller: ShopSpell
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  • Delivery by: Jul 10 to Jul 12
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Devoted to local and global analysis of weakly connected systems with applications to neurosciences, this book uses bifurcation theory and canonical models as the major tools of analysis. It presents a systematic and well motivated development of both weakly connected system theory and mathematical neuroscience, addressing bifurcations in neuron and brain dynamics, synaptic organisations of the brain, and the nature of neural codes. The authors present classical results together with the most recent developments in the field, making this a useful reference for researchers and graduate students in various branches of mathematical neuroscience.This book is devoted to an analysis of general weakly connected neural networks (WCNNs) that can be written in the form (0.1) m Here, each Xi E IR is a vector that summarizes all physiological attributes of the ith neuron, n is the number of neurons, Ii describes the dynam? ics of the ith neuron, and gi describes the interactions between neurons. The small parameter ? indicates the strength of connections between the neurons. Weakly connected systems have attracted much attention since the sec? ond half of seventeenth century, when Christian Huygens noticed that a pair of pendulum clocks synchronize when they are attached to a light? weight beam instead of a wall. The pair of clocks is among the first weakly connected systems to have been studied. Systems of the form (0.1) arise in formal perturbation theories developed by Poincare, Liapunov and Malkin, and in averaging theories developed by Bogoliubov and Mitropolsky.1 Introduction.- 2 Bifurcations in Neuron Dynamics.- 3 Neural Networks.- 4 Introduction to Canonical Models.- 5 Local Analysis of WCNNs.- 6 Local Analysis of Singularly Perturbed WCNNs.- 7 Local Analysis of Weakly Connected Maps.- 8 Saddle-Node on a Limit Cycle.- 9 Weakly Connected Oscillators.- 10 Multiple Andronov-Hopf Bifurcation.- 11 Multiple Cusp Bifurcation.- 12 Quasi-Static Bifurcations.- 13 Synaptic Organizló5
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