The linear cable theory has been applied to a modular structure consisting of n repeating units each composed of two subunits with different values of resistance and capacitance. For n going to infinity, i.e., for infinite cables, we have derived analytically the Laplace transform of the solution by making use of a difference method and we have inverted it by means of a numerical procedure. The results have been compared with those obtained by the direct application of the cable equation to a simplified nonmodular model with "equivalent" electrical parameters. The implication of our work in the analysis of the time and space course of the potential of real fibers has been discussed. In particular, we have shown that the simplified ("equival...
The classical cable equation, in which membrane conductance is considered constant, is modified by i...
This paper is concerned with the accurate and rapid calculation of extracellular potentials and curr...
In Rall\u27s equivalent cylinder morphological-to-electrical transformation, neuronal arborization...
The linear cable theory has been applied to a modular structure consisting of n repeating units each...
The cable equation is solved in the Laplace transform domain for arbitrary initial and boundary cond...
The mathematical complexity experienced when applying cable theory to arbitrarily branched dendrites...
We present an efficient algorithm for solving the one-dimensional cable equation in the Laplace (fre...
A general method of finding the time course and the steady state distribution of potential in Vaseli...
The cable model of a passive, myelinated fiber is derived using the theory of electromagnetic propag...
This thesis aim to modelize network made of coaxial and multi-conductors cables.It could be mathemat...
A mathematical model of the electrical properties of a myelinated nerve fiber is given, consisting o...
The authors present equivalent circuit models of skeletal muscle tissue for the directions parallel ...
The cable equation is one of the most fundamental equations for modeling neuronal dynamics. Cable eq...
This paper is a mathematical evaluation of the core conductor model where its three dimensionality i...
By treating a nonmyelinated nerve fiber as a continuous cable consisting of three distinct zones (Re...
The classical cable equation, in which membrane conductance is considered constant, is modified by i...
This paper is concerned with the accurate and rapid calculation of extracellular potentials and curr...
In Rall\u27s equivalent cylinder morphological-to-electrical transformation, neuronal arborization...
The linear cable theory has been applied to a modular structure consisting of n repeating units each...
The cable equation is solved in the Laplace transform domain for arbitrary initial and boundary cond...
The mathematical complexity experienced when applying cable theory to arbitrarily branched dendrites...
We present an efficient algorithm for solving the one-dimensional cable equation in the Laplace (fre...
A general method of finding the time course and the steady state distribution of potential in Vaseli...
The cable model of a passive, myelinated fiber is derived using the theory of electromagnetic propag...
This thesis aim to modelize network made of coaxial and multi-conductors cables.It could be mathemat...
A mathematical model of the electrical properties of a myelinated nerve fiber is given, consisting o...
The authors present equivalent circuit models of skeletal muscle tissue for the directions parallel ...
The cable equation is one of the most fundamental equations for modeling neuronal dynamics. Cable eq...
This paper is a mathematical evaluation of the core conductor model where its three dimensionality i...
By treating a nonmyelinated nerve fiber as a continuous cable consisting of three distinct zones (Re...
The classical cable equation, in which membrane conductance is considered constant, is modified by i...
This paper is concerned with the accurate and rapid calculation of extracellular potentials and curr...
In Rall\u27s equivalent cylinder morphological-to-electrical transformation, neuronal arborization...