Many brain regions communicate information through synchronized network activity. Electrical coupling among the dendrites of interneurons in the cortex has been implicated in forming and sustaining such activity in the cortex. Evidence for the existence of electrical coupling among cortical pyramidal cells, however, has been largely absent. A recent experimental study measured properties of electrical connections between pyramidal cells in the cortex deemed “electrotonic couplings.” These junctions were seen to occur pair-wise, sparsely, and often coexist with electrically-coupled interneurons. Here, we construct a network model to investigate possible roles for these rare, electrotonically-coupled pyramidal-cell pairs. Through simulations,...
AbstractCertain neurons in the mammalian brain have long been known to be joined by gap junctions, w...
Electrical synapses are ubiquitous in interneuron networks. They form intercellular pathways, allowi...
Recent studies reveal the occasional impact of single neurons on surround firing statistics and even...
Electrotonic couplings (i.e., electrical synapses or gap junctions) are fundamental to neuronal sync...
Electrical synapses continuously transfer signals bi-directionally from one cell to another, directl...
AbstractRecent studies have described the coupling between pairs of neocortical interneurons involvi...
Electrical coupling between pyramidal cell axons, and between interneuron dendrites, have both been ...
Gap junctions form electrical synapses that modulate neuronal activity by synchronizing action poten...
© The Author(s), 2018. This article is distributed under the terms of the Creative Commons Attributi...
AbstractIn a paper by Schmitz and colleagues in this issue of Neuron, new evidence for the existence...
SummaryTemporal precision in spike timing is important in cortical function, interactions, and plast...
The recent report by Fukuda et al [1] provides convincing evidence for dense gap-junction connectivi...
Correlated electrical activity in neurons is a prominent characteristic of cortical microcircuits. D...
Neurons display a variety of complex dendritic morphologies even within the same class. We examined ...
L5 pyramidal neurons are the only neocortical cell type with dendrites reaching all six layers of co...
AbstractCertain neurons in the mammalian brain have long been known to be joined by gap junctions, w...
Electrical synapses are ubiquitous in interneuron networks. They form intercellular pathways, allowi...
Recent studies reveal the occasional impact of single neurons on surround firing statistics and even...
Electrotonic couplings (i.e., electrical synapses or gap junctions) are fundamental to neuronal sync...
Electrical synapses continuously transfer signals bi-directionally from one cell to another, directl...
AbstractRecent studies have described the coupling between pairs of neocortical interneurons involvi...
Electrical coupling between pyramidal cell axons, and between interneuron dendrites, have both been ...
Gap junctions form electrical synapses that modulate neuronal activity by synchronizing action poten...
© The Author(s), 2018. This article is distributed under the terms of the Creative Commons Attributi...
AbstractIn a paper by Schmitz and colleagues in this issue of Neuron, new evidence for the existence...
SummaryTemporal precision in spike timing is important in cortical function, interactions, and plast...
The recent report by Fukuda et al [1] provides convincing evidence for dense gap-junction connectivi...
Correlated electrical activity in neurons is a prominent characteristic of cortical microcircuits. D...
Neurons display a variety of complex dendritic morphologies even within the same class. We examined ...
L5 pyramidal neurons are the only neocortical cell type with dendrites reaching all six layers of co...
AbstractCertain neurons in the mammalian brain have long been known to be joined by gap junctions, w...
Electrical synapses are ubiquitous in interneuron networks. They form intercellular pathways, allowi...
Recent studies reveal the occasional impact of single neurons on surround firing statistics and even...