Dendrites form the major components of neurons. They are complex branching structures that receive and process thousands of synaptic inputs from other neurons. It is well known that dendritic morphology plays an important role in the function of dendrites. Another important contribution to the response characteristics of a single neuron comes from the intrinsic resonant properties of dendritic membrane. In this paper we combine the effects of dendritic branching and resonant membrane dynamics by generalising the “sum-over-trips” approach (Abbott et al. in Biol Cybernetics 66, 49–60 1991). To illustrate how this formalism can shed light on the role of architecture and resonances in determining neuronal output we consider dual recording and r...
AbstractDendritic arbors are critical for the information processing capability of central neurons, ...
The dendritic tree contributes significantly to the elementary computations a neuron performs while ...
Activity of the multi-functional networked neurons depends on their intrinsic states and bears both ...
Dendrites form the major components of neurons. They are complex branching structures that receive a...
Dendrites form the major components of neurons. They are complex branching structures that receive a...
Synaptic inputs to neurons are processed in a frequency-dependent manner, with either low-pass or re...
Dendrites, the major components of neurons, have many different types of branching structures and ar...
University of Warwick institutional repository This paper is made available online in accordance wit...
Dendrites – with their most aesthetic tree-like structure- are the major receptive region of nerve c...
Dendrites are the most visually striking parts of neurons. Even so many neuron models are of point t...
Neurons are biological cells with uniquely complex dendritic morphologies that are not present in ot...
We modeled two different mechanisms, a shunting conductance and a slow sodium inactivation, to test ...
The dendritic trees of neurons are structurally and functionally complex integrative units receiving...
The dendritic trees of neurons are structurally and functionally complex integrative units receiving...
The dendritic trees of neurons are structurally and functionally complex integrative units receiving...
AbstractDendritic arbors are critical for the information processing capability of central neurons, ...
The dendritic tree contributes significantly to the elementary computations a neuron performs while ...
Activity of the multi-functional networked neurons depends on their intrinsic states and bears both ...
Dendrites form the major components of neurons. They are complex branching structures that receive a...
Dendrites form the major components of neurons. They are complex branching structures that receive a...
Synaptic inputs to neurons are processed in a frequency-dependent manner, with either low-pass or re...
Dendrites, the major components of neurons, have many different types of branching structures and ar...
University of Warwick institutional repository This paper is made available online in accordance wit...
Dendrites – with their most aesthetic tree-like structure- are the major receptive region of nerve c...
Dendrites are the most visually striking parts of neurons. Even so many neuron models are of point t...
Neurons are biological cells with uniquely complex dendritic morphologies that are not present in ot...
We modeled two different mechanisms, a shunting conductance and a slow sodium inactivation, to test ...
The dendritic trees of neurons are structurally and functionally complex integrative units receiving...
The dendritic trees of neurons are structurally and functionally complex integrative units receiving...
The dendritic trees of neurons are structurally and functionally complex integrative units receiving...
AbstractDendritic arbors are critical for the information processing capability of central neurons, ...
The dendritic tree contributes significantly to the elementary computations a neuron performs while ...
Activity of the multi-functional networked neurons depends on their intrinsic states and bears both ...