The rise of transcranial current stimulation (tCS) techniques have sparked an increasing interest in the effects of weak extracellular electric fields on neural activity. These fields modulate ongoing neural activity through polarization of the neuronal membrane. While the somatic polarization has been investigated experimentally, the frequency-dependent polarization of the dendritic trees in the presence of alternating (AC) fields has received little attention yet. Using a biophysically detailed model with experimentally constrained active conductances, we analyze the subthreshold response of cortical pyramidal cells to weak AC fields, as induced during tCS. We observe a strong frequency resonance around 10-20 Hz in the apical dendrites se...
Pyramidal neurons of the neocortex display a wide range of synchronous EEG rhythms, which arise from...
Neurons are highly-specialized cells capable of receiving and generating electrical signals through ...
In cortex, the local field potential (LFP) is thought to mainly stem from correlated synaptic input ...
<div><p>The rise of transcranial current stimulation (tCS) techniques have sparked an increasing int...
<p>(A) Considered neuron morphology with color coding the distance of each segment to the soma. (B) ...
<p>We consider a pyramidal cell model of Hay et al. [<a href="http://www.ploscompbiol.org/article/in...
An electric field can polarize a neuron, especially a neuron with elongated dendrites, and thus modi...
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...
A model is presented for the subthreshold polarization of a neuron by an applied electric field. It ...
A model is presented for the subthreshold polarization of a neuron by an applied electric field. It ...
How effectively synaptic and regenerative potentials propagate within neurons depends critically on ...
How effectively synaptic and regenerative potentials propagate within neurons depends critically on ...
How effectively synaptic and regenerative potentials propagate within neurons depends critically on ...
<div><p>Transcranial brain stimulation and evidence of ephaptic coupling have recently sparked stron...
Pyramidal neurons of the neocortex display a wide range of synchronous EEG rhythms, which arise from...
Neurons are highly-specialized cells capable of receiving and generating electrical signals through ...
In cortex, the local field potential (LFP) is thought to mainly stem from correlated synaptic input ...
<div><p>The rise of transcranial current stimulation (tCS) techniques have sparked an increasing int...
<p>(A) Considered neuron morphology with color coding the distance of each segment to the soma. (B) ...
<p>We consider a pyramidal cell model of Hay et al. [<a href="http://www.ploscompbiol.org/article/in...
An electric field can polarize a neuron, especially a neuron with elongated dendrites, and thus modi...
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...
A model is presented for the subthreshold polarization of a neuron by an applied electric field. It ...
A model is presented for the subthreshold polarization of a neuron by an applied electric field. It ...
How effectively synaptic and regenerative potentials propagate within neurons depends critically on ...
How effectively synaptic and regenerative potentials propagate within neurons depends critically on ...
How effectively synaptic and regenerative potentials propagate within neurons depends critically on ...
<div><p>Transcranial brain stimulation and evidence of ephaptic coupling have recently sparked stron...
Pyramidal neurons of the neocortex display a wide range of synchronous EEG rhythms, which arise from...
Neurons are highly-specialized cells capable of receiving and generating electrical signals through ...
In cortex, the local field potential (LFP) is thought to mainly stem from correlated synaptic input ...