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Biophysics of Computation: Neurons, Synapses and Membranes

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dc.creator Koch, Christof
dc.creator Poggio, Tomaso
dc.date 2004-10-04T14:55:38Z
dc.date 2004-10-04T14:55:38Z
dc.date 1984-10-01
dc.date.accessioned 2013-10-09T02:45:20Z
dc.date.available 2013-10-09T02:45:20Z
dc.date.issued 2013-10-09
dc.identifier AIM-795
dc.identifier http://hdl.handle.net/1721.1/6414
dc.identifier.uri http://koha.mediu.edu.my:8181/xmlui/handle/1721
dc.description Synapses, membranes and neurotransmitters play an important role in processing information in the nervous system. We do not know, however, what biophysical mechanisms are critical for neuronal computations, what elementary information processing operations they implement, and which sensory or motor computations they underlie. In this paper, we outline an approach to these problems. We will review a number of different biophysical mechanisms such as synaptic interactions between excitation and inhibition, dendritic spines, non-impulse generating membrane nonlinearities and transmitter-regulated voltage channels. For watch one, we discuss the information processing operations that may be implemented. All of these mechanisms act either within a few milliseconds, such as the action potential or synaptic transmission, or over several hundred milliseconds or even seconds, modulating some property of the circuit. In some cases we will suggest specific examples where a biophysical mechanism underlies a given computation. In particular, we will discuss the neuronal operations, and their implementation, underlying direction selectivity in the vertebrate retina.
dc.format 12692605 bytes
dc.format 9995756 bytes
dc.format application/postscript
dc.format application/pdf
dc.language en_US
dc.relation AIM-795
dc.title Biophysics of Computation: Neurons, Synapses and Membranes


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