Dynamic-Clamp : From Principles to Applications

Dynamic-Clamp : From Principles to Applications - Springer Series in Computational Neuroscience

Softcover reprint of hardcover 1st Edition 2009

Paperback (05 Nov 2010)

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Publisher's Synopsis

Dynamic-clamp is a fascinating electrophysiology technique that consists of merging living neurons with computational models. The dynamic-clamp (also called "conductance injection") allows experimentalists and theoreticians to challenge neurons (or any other type of cell) with complex conductance stimuli generated by a computer.

The technique can be implemented from neural simulation environments and a variety of custom-made or commercial systems. The real-time interaction between the computer and cell also enables the design of recording paradigms with unprecedented accuracy via a computational model of the electrode. Dynamic-Clamp: From Principles to Applications contains contributions from leading researchers in the field, who investigate these paradigms at the cellular or network level, in vivo and in vitro, and in different brain regions and cardiac cells. Topics discussed include the addition of artificially-generated synaptic activity to neurons; adding, amplifying or neutralizing voltage-dependent conductances; creating hybrid networks with real and artificial cells; attaching simulated dendritic tree structures to the living cell; and connecting different neurons.

This book will be of interest to experimental biophysicists, neurophysiologists, and cardiac physiologists, as well as theoreticians, engineers, and computational neuroscientists. Graduate and undergraduate students will also find up-to-date coverage of physiological problems and how they are investigated.

Book information

ISBN: 9781441927903
Publisher: Springer New York
Imprint: Springer
Pub date:
Edition: Softcover reprint of hardcover 1st Edition 2009
Language: English
Number of pages: 429
Weight: 676g
Height: 234mm
Width: 156mm
Spine width: 22mm