Mathematical solutions and numerical illustrations are presented for the steady-state distribution of membrane potential in an extensively branched neuron model, when steady electric current is injected into only one dendritic branch. Explicit expressions are obtained for input resistance at the branch input site and for voltage attenuation from the input site to the soma; expressions for AC steady-state input impedance and attenuation are also presented. The theoretical model assumes passive membrane properties and the equivalent cylinder constraint on branch diameters. Numerical examples illustrate how branch input resistance and steady attenuation depend upon the following: the number of dendritic trees, the orders of dendritic branching...
Analytical solutions are derived for arbitrarily branching passive neurone models with a soma and so...
One way to achieve amplification of distal synaptic inputs on a dendritic tree is to scale the ampli...
Abstract: Integration of synaptic currents across an extensive dendritic tree is a prerequisite for ...
ABsTRAcr Mathematical solutions and numerical illustrations are presented for the steady-state distr...
Mathematical expressions are obtained for the response function corresponding to an instantaneous pu...
A theoretical method, developed in a previous paper, enables one to calculate analytical expressions...
Analytical solutions are derived for arbitrarily branching passive neurone models with a soma and so...
An analytical method is developed that allows one to explore the way in which the geometrical struct...
Dendrites form the major components of neurons. They are complex branching structures that receive a...
A model is presented for the subthreshold polarization of a neuron by an applied electric field. It ...
Reducing neuronal size results in less cell membrane and therefore lower input conductance. Smaller ...
Over a decade ago Major and colleagues obtained analytical solutions for arbitrarily branching cable...
Neurons are biological cells with uniquely complex dendritic morphologies that are not present in ot...
Dendrites form the major components of neurons. They are complex branching structures that receive a...
One way to achieve amplification of distal synaptic inputs on a dendritic tree is to scale the ampli...
Analytical solutions are derived for arbitrarily branching passive neurone models with a soma and so...
One way to achieve amplification of distal synaptic inputs on a dendritic tree is to scale the ampli...
Abstract: Integration of synaptic currents across an extensive dendritic tree is a prerequisite for ...
ABsTRAcr Mathematical solutions and numerical illustrations are presented for the steady-state distr...
Mathematical expressions are obtained for the response function corresponding to an instantaneous pu...
A theoretical method, developed in a previous paper, enables one to calculate analytical expressions...
Analytical solutions are derived for arbitrarily branching passive neurone models with a soma and so...
An analytical method is developed that allows one to explore the way in which the geometrical struct...
Dendrites form the major components of neurons. They are complex branching structures that receive a...
A model is presented for the subthreshold polarization of a neuron by an applied electric field. It ...
Reducing neuronal size results in less cell membrane and therefore lower input conductance. Smaller ...
Over a decade ago Major and colleagues obtained analytical solutions for arbitrarily branching cable...
Neurons are biological cells with uniquely complex dendritic morphologies that are not present in ot...
Dendrites form the major components of neurons. They are complex branching structures that receive a...
One way to achieve amplification of distal synaptic inputs on a dendritic tree is to scale the ampli...
Analytical solutions are derived for arbitrarily branching passive neurone models with a soma and so...
One way to achieve amplification of distal synaptic inputs on a dendritic tree is to scale the ampli...
Abstract: Integration of synaptic currents across an extensive dendritic tree is a prerequisite for ...