Global brain state dynamics regulate plasticity in local cortical circuits, but the underlying cellular and molecular mechanisms are unclear. Here, we demonstrate that astrocyte Ca2+ signaling provides a critical bridge between cholinergic activation, associated with attention and vigilance states, and somatosensory plasticity in mouse barrel cortex in vivo. We investigated first whether a combined stimulation of mouse whiskers and the nucleus basalis of Meynert (NBM), the principal source of cholinergic innervation to the cortex, leads to enhanced whisker-evoked local field potential. This plasticity is dependent on muscarinic acetylcholine receptors (mAChR) and N-methyl-d-aspartic acid receptors (NMDARs). During the induction of this syna...
Changes to sensory experience result in plasticity of synapses in the cortex. This experience-depend...
Poster AbstractsAstrocytes have been shown to control synapse development and function (Allen and Er...
Local blood flow is modulated in response to changing patterns of neuronal activity (Roy and Sherrin...
[出版社版]Global brain state dynamics regulate plasticity in local cortical circuits, but the underlying...
Long-term potentiation (LTP) of synaptic transmission represents the cellular basis of learning and ...
Long-term potentiation (LTP) of synaptic transmission represents the cellular basis of learning and ...
Long-term potentiation (LTP) of synaptic transmission represents the cellular basis of learning and ...
<div><p>Long-term potentiation (LTP) of synaptic transmission represents the cellular basis of learn...
Changes to sensory experience result in plasticity of synapses in the cortex. This experience-depend...
Changes to sensory experience result in plasticity of synapses in the cortex. This experience-depend...
Changes to sensory experience result in plasticity of synapses in the cortex. This experience-depend...
Changes to sensory experience result in plasticity of synapses in the cortex. This experience-depend...
Changes to sensory experience result in plasticity of synapses in the cortex. This experience-depend...
Changes to sensory experience result in plasticity of synapses in the cortex. This experience-depend...
Changes to sensory experience result in plasticity of synapses in the cortex. This experience-depend...
Changes to sensory experience result in plasticity of synapses in the cortex. This experience-depend...
Poster AbstractsAstrocytes have been shown to control synapse development and function (Allen and Er...
Local blood flow is modulated in response to changing patterns of neuronal activity (Roy and Sherrin...
[出版社版]Global brain state dynamics regulate plasticity in local cortical circuits, but the underlying...
Long-term potentiation (LTP) of synaptic transmission represents the cellular basis of learning and ...
Long-term potentiation (LTP) of synaptic transmission represents the cellular basis of learning and ...
Long-term potentiation (LTP) of synaptic transmission represents the cellular basis of learning and ...
<div><p>Long-term potentiation (LTP) of synaptic transmission represents the cellular basis of learn...
Changes to sensory experience result in plasticity of synapses in the cortex. This experience-depend...
Changes to sensory experience result in plasticity of synapses in the cortex. This experience-depend...
Changes to sensory experience result in plasticity of synapses in the cortex. This experience-depend...
Changes to sensory experience result in plasticity of synapses in the cortex. This experience-depend...
Changes to sensory experience result in plasticity of synapses in the cortex. This experience-depend...
Changes to sensory experience result in plasticity of synapses in the cortex. This experience-depend...
Changes to sensory experience result in plasticity of synapses in the cortex. This experience-depend...
Changes to sensory experience result in plasticity of synapses in the cortex. This experience-depend...
Poster AbstractsAstrocytes have been shown to control synapse development and function (Allen and Er...
Local blood flow is modulated in response to changing patterns of neuronal activity (Roy and Sherrin...