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Date : 2004-10-28
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Biophysics of Computation Information Processing in ~ Biophysics of Computation Information Processing in Single Neurons serves as an ideal text for advanced undergraduate and graduate courses in cellular biophysics computational neuroscience and neural networks and will appeal to students and professionals in neuroscience electrical and computer engineering and physics
Biophysics of Computation Information Processing in ~ Biophysics of Computation Information Processing in Single Neurons by Christof Koch Oxford University Press New York New York 1999 562 pages and 221 illustrations ISBN 0195104919 Neural network research often builds on the fiction that neurons are simple linear threshold units completely neglecting the highly dynamic and complex nature of synapses dendrites and voltagedependent
Biophysics of Computation Information Processing in ~ Biophysics of Computation Information Processing in Single Neurons Computational Neuroscience Series by Christof Koch 19981112 on FREE shipping on qualifying offers
Biophysics Of Computation Information Processing In Single ~ Biophysics Of Computation Information Processing In Single Neurons Computation Review The Good The Biophysics Of Computation Information Processing In Single Neurons Computation are smooth and stylish and seem to be sturdy due to the heavyresponsibility hardware and thick material cable Quite a lot of ear fittings and clips are included for a safe match
Biophysics of Computation by Christof Koch ~ Biophysics of Computation Information Processing in Single Neurons challenges this notion using richly detailed experimental and theoretical findings Neural network research often builds on the fiction that neurons are simple linear threshold units completely neglecting the highly dynamic and complex nature of synapses dendrites and voltagedependent ionic currents
Biophysics of Computation Information Processing in ~ Biophysics of Computation Information Processing in Single Neurons challenges this notion using richly detailed experimental and theoretical findings from cellular biophysics to explain the repertoire of computational functions available to single neurons The author shows how individual nerve cells can multiply integrate or delay synaptic inputs and how information can be encoded in the voltage across the membrane in the intracellular calcium concentration or in the timing of
Biophysics of Computation Information Processing in ~ Biophysics of Computation is organized into small chapters each containing a relatively standalone description of a specific topic followed by a brief summary of one page or so at the end The chapters are arranged in a logical order starting with the basics on ionic currents and cable theory and considering successively more complicated issues such as dendritic integration and spike
Biophysics of Computation Information Processing in ~ Biophysics of Computation will reinforce that welcome trend Koch combines two strategies he covers a great deal of what is known about Information Processing in Single Neurons by Christof Koch Oxford University Press 1998 £5995 xxiii 562 pages ISBN 0 19 510491 9
Biophysics of Computation Information Processing in ~ Biophysics of Computation Information Processing in Single Neurons challenges this notion using richly detailed experimental and theoretical findings from cellular biophysics to explain
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