The pre-Botzinger complex (pBC) is a heterogeneous neuronal network within the mammalian brainstem and has been experimentally found to generate robust, synchronous bursts [1]. Significant modeling research has been conducted on characterizing the dynamics of individual neurons within the pBC. [2, 3] It is well known that the persistent sodium current (INaP) contributes to square-wave bursting seen in the pBC [4]. Recent experimental work within the pBC identified a signaling cascade that starts with presynaptic glutamate and ends with the release of intracellular calcium that activates a nonspecific cationic current (ICAN) [5]. A subsequent model demonstrated that ICAN may contribute to bursts within the pBC that exhibit depolarization blo...
Abstract;Recent experimental and model work indicates that slowly inactivating potassium currents mi...
A multicompartmental biophysical model of entorhinal cortex layer II stellate cells was developed to...
Neocortical neurons in awake, behaving animals can generate high-frequency (.300 Hz) bursts of actio...
The pre-Botzinger complex (pBC) is a heterogeneous neuronal network within the mammalian brainstem a...
The preBotzinger complex (PBC) of the mammalian brainstem is a heterogeneous neuronal network underl...
SummaryThe persistent Na+ current, INaP, is known to amplify subthreshold oscillations and synaptic ...
Persistent Na current modifies burst discharge by regulating condi-tional backpropagation of dendri...
The persistent Na+ current, INaP, is known to amplify subthreshold oscillations and synaptic potenti...
The signaling properties of thalamocortical (TC) neurons depend on the diversity of ion conductance ...
The breathing motor pattern in mammals originates in brainstem networks. Whether pacemaker neurons p...
AbstractThe kinetic diversity of burst openings responsible for the persistent Na+ current (INaP) in...
Persistent Na current modifies burst discharge by regulating condi-tional backpropagation of dendri...
SummaryThe persistent Na+ current, INaP, is known to amplify subthreshold oscillations and synaptic ...
The pre-Bötzinger complex (pre-BötC) is an essential rhythmogenic brainstem nucleus located in the v...
A multicompartmental biophysical model of entorhinal cortex layer II stellate cells was developed to...
Abstract;Recent experimental and model work indicates that slowly inactivating potassium currents mi...
A multicompartmental biophysical model of entorhinal cortex layer II stellate cells was developed to...
Neocortical neurons in awake, behaving animals can generate high-frequency (.300 Hz) bursts of actio...
The pre-Botzinger complex (pBC) is a heterogeneous neuronal network within the mammalian brainstem a...
The preBotzinger complex (PBC) of the mammalian brainstem is a heterogeneous neuronal network underl...
SummaryThe persistent Na+ current, INaP, is known to amplify subthreshold oscillations and synaptic ...
Persistent Na current modifies burst discharge by regulating condi-tional backpropagation of dendri...
The persistent Na+ current, INaP, is known to amplify subthreshold oscillations and synaptic potenti...
The signaling properties of thalamocortical (TC) neurons depend on the diversity of ion conductance ...
The breathing motor pattern in mammals originates in brainstem networks. Whether pacemaker neurons p...
AbstractThe kinetic diversity of burst openings responsible for the persistent Na+ current (INaP) in...
Persistent Na current modifies burst discharge by regulating condi-tional backpropagation of dendri...
SummaryThe persistent Na+ current, INaP, is known to amplify subthreshold oscillations and synaptic ...
The pre-Bötzinger complex (pre-BötC) is an essential rhythmogenic brainstem nucleus located in the v...
A multicompartmental biophysical model of entorhinal cortex layer II stellate cells was developed to...
Abstract;Recent experimental and model work indicates that slowly inactivating potassium currents mi...
A multicompartmental biophysical model of entorhinal cortex layer II stellate cells was developed to...
Neocortical neurons in awake, behaving animals can generate high-frequency (.300 Hz) bursts of actio...