The GABAergic neurons of the nucleus reticularis thalami that control the communication between thalamus and cortex are interconnected not only through axo-dendritic synapses but also through gap junctions and dendro-dendritic synapses. It is still unknown whether these dendritic communication processes may be triggered both by the tonic and the T-type Ca2+ channel-dependent high frequency burst firing of action potentials displayed by nucleus reticularis neurons during wakefulness and sleep, respectively. Indeed, while it is known that activation of T-type Ca2+ channels actively propagates throughout the dendritic tree, it is still unclear whether tonic action potential firing can also invade the dendritic arborization. Here, using two-pho...
International audienceT-type Ca2+ channels (T channels) underlie rhythmic burst discharges during ne...
International audienceT-type Ca2+ channels (T channels) underlie rhythmic burst discharges during ne...
Backpropagating action potentials (bAPs) are indispensable in dendritic signaling. Conflicting Ca2-i...
International audienceThe GABAergic neurons of the nucleus reticularis thalami that control the comm...
International audienceThe GABAergic neurons of the nucleus reticularis thalami that control the comm...
International audienceThe GABAergic neurons of the nucleus reticularis thalami that control the comm...
The distribution of T-type Ca2+ channels along the entire somatodendritic axis of sensory thalamocor...
The distribution of T-type Ca2+ channels along the entire somatodendritic axis of sensory thalamocor...
The distribution of T-type Ca2+ channels along the entire somatodendritic axis of sensory thalamocor...
The distribution of T-type Ca2+ channels along the entire somatodendritic axis of sensory thalamocor...
Activity-dependent dendritic Ca2+ signals play a critical role in multiple forms of nonlinear cellul...
Activity-dependent dendritic Ca2+ signals play a critical role in multiple forms of nonlinear cellul...
Activity-dependent dendritic Ca2+ signals play a critical role in multiple forms of nonlinear cellul...
Thalamocortical (TC) neurons of the dorsal thalamus integrate sensory inputs in an attentionally rel...
International audienceT-type Ca2+ channels (T channels) underlie rhythmic burst discharges during ne...
International audienceT-type Ca2+ channels (T channels) underlie rhythmic burst discharges during ne...
International audienceT-type Ca2+ channels (T channels) underlie rhythmic burst discharges during ne...
Backpropagating action potentials (bAPs) are indispensable in dendritic signaling. Conflicting Ca2-i...
International audienceThe GABAergic neurons of the nucleus reticularis thalami that control the comm...
International audienceThe GABAergic neurons of the nucleus reticularis thalami that control the comm...
International audienceThe GABAergic neurons of the nucleus reticularis thalami that control the comm...
The distribution of T-type Ca2+ channels along the entire somatodendritic axis of sensory thalamocor...
The distribution of T-type Ca2+ channels along the entire somatodendritic axis of sensory thalamocor...
The distribution of T-type Ca2+ channels along the entire somatodendritic axis of sensory thalamocor...
The distribution of T-type Ca2+ channels along the entire somatodendritic axis of sensory thalamocor...
Activity-dependent dendritic Ca2+ signals play a critical role in multiple forms of nonlinear cellul...
Activity-dependent dendritic Ca2+ signals play a critical role in multiple forms of nonlinear cellul...
Activity-dependent dendritic Ca2+ signals play a critical role in multiple forms of nonlinear cellul...
Thalamocortical (TC) neurons of the dorsal thalamus integrate sensory inputs in an attentionally rel...
International audienceT-type Ca2+ channels (T channels) underlie rhythmic burst discharges during ne...
International audienceT-type Ca2+ channels (T channels) underlie rhythmic burst discharges during ne...
International audienceT-type Ca2+ channels (T channels) underlie rhythmic burst discharges during ne...
Backpropagating action potentials (bAPs) are indispensable in dendritic signaling. Conflicting Ca2-i...