a primer on the computational biology of excitable cells /
First Statement of Responsibility
Greg Conradi Smith.
.PUBLICATION, DISTRIBUTION, ETC
Place of Publication, Distribution, etc.
New York, NY :
Name of Publisher, Distributor, etc.
Cambridge University Press,
Date of Publication, Distribution, etc.
2019.
PHYSICAL DESCRIPTION
Specific Material Designation and Extent of Item
1 online resource
GENERAL NOTES
Text of Note
Includes index.
INTERNAL BIBLIOGRAPHIES/INDEXES NOTE
Text of Note
Includes bibliographical references and index.
CONTENTS NOTE
Text of Note
Compartmental modeling -- Phase diagrams -- Ligands, receptors & rate laws -- Function families & characteristic times -- Bifurcation diagrams of scalar ODEs -- The Nernst equilibrium potential -- The current balance equation -- GHK theory of membrane permeation -- Voltage-gated ionic currents -- Regenerative ionic currents and bistability -- Voltage-clamp recording -- Hodgkin-Huxley model of the action potential -- The Morris-Lecar model -- Phase plane analysis -- Linear stability analysis -- Type II excitability and oscillations (the Hopf bifurcation) -- Type I excitability and oscillations (SNIC & SHO bifurcations) -- The low-threshold calcium spike -- Synaptic currents.
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SUMMARY OR ABSTRACT
Text of Note
"It must also be supposed that the cell bodies and the dendrites are, in the same way as the axis cylinders, conductive devices, as they represent the intermediary links between afferent nerve fibres and the afore-mentioned axons"--
OTHER EDITION IN ANOTHER MEDIUM
Title
Cellular biophysics and modeling.
International Standard Book Number
1107005361
PARALLEL TITLE PROPER
Parallel Title
Primer on the computational biology of excitable cells