The dendritic trees of neurons are structurally and functionally complex integrative units receiving thousands of synaptic inputs that have excitatory and inhibitory, fast and slow, and electrical and biochemical effects. The pattern of activation of these synaptic inputs determines if the neuron will fire an action potential at any given point in time and how it will respond to similar inputs in the future. Two critical factors affect the integrative function of dendrites: the distribution of voltage-gated ion channels in the dendritic tree and the passive electrical properties, or ‘electronic structure’, upon which these active channels are superimposed. The authors review recent data from patch-clamp recordings that provide new estimates...
<p><b>a</b> A current of 1 nA is injected into the dendritic compartment. This results in a depolari...
Dendrites form the major components of neurons. They are complex branching structures that receive a...
Voltage-gated potassium channels effectively regulate dendritic excitability in neurones. It has bee...
The dendritic trees of neurons are structurally and functionally complex integrative units receiving...
Many neurons have extensive dendritic trees, and therefore somatic voltage clamp of dendritic synaps...
Dendrites (from Greek δένδρον déndron, “tree”) are one of the major structural elements of neurons a...
Dendrites – with their most aesthetic tree-like structure- are the major receptive region of nerve c...
Reducing neuronal size results in less cell membrane and therefore lower input conductance. Smaller ...
Rathour RK, Narayanan R. Influence fields: a quantitative framework for representation and analysis ...
International audienceIn recent years it became clear that dendrites possess a host of ion channels ...
The electrical properties of the different anatomical types of retinal ganglion cells in the cat wer...
Summary Reducing neuronal size results in less membrane and therefore lower input conductance. Small...
Activity of the multi-functional networked neurons depends on their intrinsic states and bears both ...
Since the first experimental evidences of active conductances in dendrites, most neurons have been s...
The interplay between excitatory and inhibitory neurons imparts rich functions of the brain. To unde...
<p><b>a</b> A current of 1 nA is injected into the dendritic compartment. This results in a depolari...
Dendrites form the major components of neurons. They are complex branching structures that receive a...
Voltage-gated potassium channels effectively regulate dendritic excitability in neurones. It has bee...
The dendritic trees of neurons are structurally and functionally complex integrative units receiving...
Many neurons have extensive dendritic trees, and therefore somatic voltage clamp of dendritic synaps...
Dendrites (from Greek δένδρον déndron, “tree”) are one of the major structural elements of neurons a...
Dendrites – with their most aesthetic tree-like structure- are the major receptive region of nerve c...
Reducing neuronal size results in less cell membrane and therefore lower input conductance. Smaller ...
Rathour RK, Narayanan R. Influence fields: a quantitative framework for representation and analysis ...
International audienceIn recent years it became clear that dendrites possess a host of ion channels ...
The electrical properties of the different anatomical types of retinal ganglion cells in the cat wer...
Summary Reducing neuronal size results in less membrane and therefore lower input conductance. Small...
Activity of the multi-functional networked neurons depends on their intrinsic states and bears both ...
Since the first experimental evidences of active conductances in dendrites, most neurons have been s...
The interplay between excitatory and inhibitory neurons imparts rich functions of the brain. To unde...
<p><b>a</b> A current of 1 nA is injected into the dendritic compartment. This results in a depolari...
Dendrites form the major components of neurons. They are complex branching structures that receive a...
Voltage-gated potassium channels effectively regulate dendritic excitability in neurones. It has bee...