Changes to sensory experience result in plasticity of synapses in the cortex. This experience-dependent plasticity (EDP) is a fundamental property of the brain. Yet, while much is known about neuronal roles in EDP, very little is known about the role of astrocytes. To address this issue, we used the well-described mouse whiskers-to-barrel cortex system, which expresses a number of forms of EDP. We found that all-whisker deprivation induced characteristic experience-dependent Hebbian depression (EDHD) followed by homeostatic upregulation in L2/3 barrel cortex of wild type mice. However, these changes were not seen in mutant animals (IP3R2–/–) that lack the astrocyte-expressed IP3 receptor subtype. A separate paradigm, the single-whisker expe...
Changing the whisker complement on a rodent’s snout can lead to two forms of experience-dependent pl...
Changing the whisker complement on a rodent’s snout can lead to two forms of experience-dependent pl...
Changing the whisker complement on a rodent’s snout can lead to two forms of experience-dependent pl...
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...
Changing the whisker complement on a rodent's snout can lead to two forms of experience-dependent pl...
Changing the whisker complement on a rodent's snout can lead to two forms of experience-dependent pl...
Changing the whisker complement on a rodent's snout can lead to two forms of experience-dependent pl...
Changing the whisker complement on a rodent's snout can lead to two forms of experience-dependent pl...
Global brain state dynamics regulate plasticity in local cortical circuits, but the underlying cellu...
Changing the whisker complement on a rodent’s snout can lead to two forms of experience-dependent pl...
Changing the whisker complement on a rodent’s snout can lead to two forms of experience-dependent pl...
Changing the whisker complement on a rodent’s snout can lead to two forms of experience-dependent pl...
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...
Changing the whisker complement on a rodent's snout can lead to two forms of experience-dependent pl...
Changing the whisker complement on a rodent's snout can lead to two forms of experience-dependent pl...
Changing the whisker complement on a rodent's snout can lead to two forms of experience-dependent pl...
Changing the whisker complement on a rodent's snout can lead to two forms of experience-dependent pl...
Global brain state dynamics regulate plasticity in local cortical circuits, but the underlying cellu...
Changing the whisker complement on a rodent’s snout can lead to two forms of experience-dependent pl...
Changing the whisker complement on a rodent’s snout can lead to two forms of experience-dependent pl...
Changing the whisker complement on a rodent’s snout can lead to two forms of experience-dependent pl...