<div><p>Transcranial brain stimulation and evidence of ephaptic coupling have recently sparked strong interests in understanding the effects of weak electric fields on the dynamics of brain networks and of coupled populations of neurons. The collective dynamics of large neuronal populations can be efficiently studied using single-compartment (point) model neurons of the integrate-and-fire (IF) type as their elements. These models, however, lack the dendritic morphology required to biophysically describe the effect of an extracellular electric field on the neuronal membrane voltage. Here, we extend the IF point neuron models to accurately reflect morphology dependent electric field effects extracted from a canonical spatial “ball-and-stick” ...
A common method of measuring neural activity is to insert recording electrodes into brain tissue, as...
Pyramidal neurons of the neocortex display a wide range of synchronous EEG rhythms, which arise from...
Our goal was to investigate how the propagation of alternating signals (i.e. AC), like action potent...
Transcranial brain stimulation and evidence of ephaptic coupling have sparked strong interests in un...
Transcranial brain stimulation and evidence of ephaptic coupling have sparked strong interests in un...
An electric field can polarize a neuron, especially a neuron with elongated dendrites, and thus modi...
Neurons are highly-specialized cells capable of receiving and generating electrical signals through ...
Based on a reduced two-compartment model, the dynamical and biophysical mechanism underlying the spi...
Spike-frequency adaptation has been shown to play an important role in neural coding. Based on a red...
It has been discovered recently in experiments that the dendritic integration of excitatory glutamat...
The rise of transcranial current stimulation (tCS) techniques have sparked an increasing interest in...
Electrical stimulation of neural systems is a key tool for understanding neural dynamics and ultimat...
<div><p>The rise of transcranial current stimulation (tCS) techniques have sparked an increasing int...
Synaptic inputs to neurons are processed in a frequency-dependent manner, with either low-pass or re...
Gray circles are quantities associated with interactions between populations (i.e., a and b), while ...
A common method of measuring neural activity is to insert recording electrodes into brain tissue, as...
Pyramidal neurons of the neocortex display a wide range of synchronous EEG rhythms, which arise from...
Our goal was to investigate how the propagation of alternating signals (i.e. AC), like action potent...
Transcranial brain stimulation and evidence of ephaptic coupling have sparked strong interests in un...
Transcranial brain stimulation and evidence of ephaptic coupling have sparked strong interests in un...
An electric field can polarize a neuron, especially a neuron with elongated dendrites, and thus modi...
Neurons are highly-specialized cells capable of receiving and generating electrical signals through ...
Based on a reduced two-compartment model, the dynamical and biophysical mechanism underlying the spi...
Spike-frequency adaptation has been shown to play an important role in neural coding. Based on a red...
It has been discovered recently in experiments that the dendritic integration of excitatory glutamat...
The rise of transcranial current stimulation (tCS) techniques have sparked an increasing interest in...
Electrical stimulation of neural systems is a key tool for understanding neural dynamics and ultimat...
<div><p>The rise of transcranial current stimulation (tCS) techniques have sparked an increasing int...
Synaptic inputs to neurons are processed in a frequency-dependent manner, with either low-pass or re...
Gray circles are quantities associated with interactions between populations (i.e., a and b), while ...
A common method of measuring neural activity is to insert recording electrodes into brain tissue, as...
Pyramidal neurons of the neocortex display a wide range of synchronous EEG rhythms, which arise from...
Our goal was to investigate how the propagation of alternating signals (i.e. AC), like action potent...