In large network and single three-dimensional (3-D) neuron simulations, high computing speed dictates using reduced cable models to simulate neuronal firing behaviors. However, these models are unwarranted under active conditions and lack accurate representation of dendritic active conductances that greatly shape neuronal firing. Here, realistic 3-D (R3D) models (which contain full anatomical details of dendrites) of spinal motoneurons were systematically compared with their reduced single unbranched cable (SUC, which reduces the dendrites to a single electrically equivalent cable) counterpart under passive and active conditions. The SUC models matched the R3D model\u27s passive properties but failed to match key active properties, especial...
We used computer simulations to study the dendritic spatial distribution of low voltage-activated L-...
We used computer simulations to study the dendritic spatial distribution of low voltage-activated L-...
Motoneuron (MN) dendrites may be changed from a passive to an active state by increasing the levels ...
In large network and single three-dimensional (3-D) neuron simulations, high computing speed dictate...
In large network and single three-dimensional (3-D) neuron simulations, high computing speed dictate...
In large network and single three-dimensional (3-D) neuron simulations, high computing speed dictate...
In large network and single three-dimensional (3-D) neuron simulations, high computing speed dictate...
The goal of this study was to investigate the nature of activation of the dendritic calcium persiste...
The goal of this study was to investigate the nature of activation of the dendritic calcium persiste...
The goal of this study was to investigate the nature of activation of the dendritic calcium persiste...
The goal of this study was to investigate the nature of activation of the dendritic calcium persiste...
The goal of this study was to investigate the nature of activation of the dendritic calcium persiste...
We used computer simulations to study the dendritic spatial distribution of low voltage-activated L-...
We used computer simulations to study the dendritic spatial distribution of low voltage-activated L-...
We used computer simulations to study the dendritic spatial distribution of low voltage-activated L-...
We used computer simulations to study the dendritic spatial distribution of low voltage-activated L-...
We used computer simulations to study the dendritic spatial distribution of low voltage-activated L-...
Motoneuron (MN) dendrites may be changed from a passive to an active state by increasing the levels ...
In large network and single three-dimensional (3-D) neuron simulations, high computing speed dictate...
In large network and single three-dimensional (3-D) neuron simulations, high computing speed dictate...
In large network and single three-dimensional (3-D) neuron simulations, high computing speed dictate...
In large network and single three-dimensional (3-D) neuron simulations, high computing speed dictate...
The goal of this study was to investigate the nature of activation of the dendritic calcium persiste...
The goal of this study was to investigate the nature of activation of the dendritic calcium persiste...
The goal of this study was to investigate the nature of activation of the dendritic calcium persiste...
The goal of this study was to investigate the nature of activation of the dendritic calcium persiste...
The goal of this study was to investigate the nature of activation of the dendritic calcium persiste...
We used computer simulations to study the dendritic spatial distribution of low voltage-activated L-...
We used computer simulations to study the dendritic spatial distribution of low voltage-activated L-...
We used computer simulations to study the dendritic spatial distribution of low voltage-activated L-...
We used computer simulations to study the dendritic spatial distribution of low voltage-activated L-...
We used computer simulations to study the dendritic spatial distribution of low voltage-activated L-...
Motoneuron (MN) dendrites may be changed from a passive to an active state by increasing the levels ...