Morris–Lecar model

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118  Exercises Chapter 6 1. Build a Connor-Stevens model neuron by numerically integrating the equations for V, m, h, n, a, and b given in chapter 6 (see, in particular,

18 Exercises Chapter 6 1. Build a Connor-Stevens model neuron by numerically integrating the equations for V, m, h, n, a, and b given in chapter 6 (see, in particular,

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Source URL: www.gatsby.ucl.ac.uk

Language: English - Date: 2010-10-24 07:46:19
2Chapter 3  A Theoretical Framework for the Dynamics of Multiple Intrinsic Oscillators in Single Neurons Michiel W.H. Remme, M´at´e Lengyel, and Boris S. Gutkin

Chapter 3 A Theoretical Framework for the Dynamics of Multiple Intrinsic Oscillators in Single Neurons Michiel W.H. Remme, M´at´e Lengyel, and Boris S. Gutkin

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Source URL: learning.eng.cam.ac.uk

Language: English - Date: 2012-02-14 11:19:08
3arXiv:submit[removed]q-bio.NC] 11 Feb[removed]Stochastic Representations of Ion Channel Kinetics and Exact Stochastic Simulation of Neuronal Dynamics David F. Anderson1 , Bard Ermentrout2 , and Peter J. Thomas3 1

arXiv:submit[removed]q-bio.NC] 11 Feb[removed]Stochastic Representations of Ion Channel Kinetics and Exact Stochastic Simulation of Neuronal Dynamics David F. Anderson1 , Bard Ermentrout2 , and Peter J. Thomas3 1

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Source URL: www.math.wisc.edu

Language: English - Date: 2014-02-11 13:09:00
4VOLTAGE OSCILLATIONS IN THE BARNACLE GIANT MUSCLE FIBER CATHERINE MORRIS AND HAROLD LECAR, Laboratory of Biophysics, National

VOLTAGE OSCILLATIONS IN THE BARNACLE GIANT MUSCLE FIBER CATHERINE MORRIS AND HAROLD LECAR, Laboratory of Biophysics, National

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Source URL: www.ncbi.nlm.nih.gov

Language: English