The thalamus integrates and transmits sensory information to the neocortex. The activity of thalamocortical relay (TC) cells is modulated by specific inhibitory circuits. Although this inhibition plays a crucial role in regulating thalamic activity, little is known about long-term changes in synaptic strength at these inhibitory synapses. Therefore, we studied long-term plasticity of inhibitory inputs to TC cells in the posterior medial nucleus of the thalamus by combining patch-clamp recordings with two-photon fluorescence microscopy in rat brain slices. We found that specific activity patterns in the postsynaptic TC cell induced inhibitory long-term potentiation (iLTP). This iLTP was non-Hebbian because it did not depend on the timing bet...
The spatial organization of long-term synaptic plasticity [long-term potentiation (LTP) and long-ter...
Long-term potentiation (LTP) is a synaptic change supposed to provide the cellular basis for learnin...
Inhibitory circuits in the brain rely on GABA-releasing interneurons. For long, inhibitory circuits ...
The thalamus integrates and transmits sensory information to the neocortex. The activity of thalamoc...
Sensory experience and perceptual learning changes receptive field properties of cortical pyramidal ...
Long-term synaptic potentiation (LTP) is thought to be a key process in cortical synaptic network pl...
SummaryCortical pyramidal neurons alter their responses to input signals depending on behavioral sta...
The hippocampus projects to the anterior thalamic nuclei both directly and indirectly via the mammil...
Current evidence appoints a central role to cholinergic interneurons in modulating striatal function...
The hippocampus projects to the anterior thalamic nuclei both directly and indirectly via the mammil...
Long-term potentiation (LTP) is a synaptic change supposed to provide the cellular basis for learnin...
Current evidence appoints a central role to cholinergic interneurons in modulating striatal function...
Current evidence appoints a central role to cholinergic interneurons in modulating striatal function...
Current evidence appoints a central role to cholinergic interneurons in modulating striatal function...
The spatial organization of long-term synaptic plasticity [long-term potentiation (LTP) and long-ter...
The spatial organization of long-term synaptic plasticity [long-term potentiation (LTP) and long-ter...
Long-term potentiation (LTP) is a synaptic change supposed to provide the cellular basis for learnin...
Inhibitory circuits in the brain rely on GABA-releasing interneurons. For long, inhibitory circuits ...
The thalamus integrates and transmits sensory information to the neocortex. The activity of thalamoc...
Sensory experience and perceptual learning changes receptive field properties of cortical pyramidal ...
Long-term synaptic potentiation (LTP) is thought to be a key process in cortical synaptic network pl...
SummaryCortical pyramidal neurons alter their responses to input signals depending on behavioral sta...
The hippocampus projects to the anterior thalamic nuclei both directly and indirectly via the mammil...
Current evidence appoints a central role to cholinergic interneurons in modulating striatal function...
The hippocampus projects to the anterior thalamic nuclei both directly and indirectly via the mammil...
Long-term potentiation (LTP) is a synaptic change supposed to provide the cellular basis for learnin...
Current evidence appoints a central role to cholinergic interneurons in modulating striatal function...
Current evidence appoints a central role to cholinergic interneurons in modulating striatal function...
Current evidence appoints a central role to cholinergic interneurons in modulating striatal function...
The spatial organization of long-term synaptic plasticity [long-term potentiation (LTP) and long-ter...
The spatial organization of long-term synaptic plasticity [long-term potentiation (LTP) and long-ter...
Long-term potentiation (LTP) is a synaptic change supposed to provide the cellular basis for learnin...
Inhibitory circuits in the brain rely on GABA-releasing interneurons. For long, inhibitory circuits ...