Changing the whisker complement on a rodent's snout can lead to two forms of experience-dependent plasticity (EDP) in the neurons of the barrel cortex, where whiskers are somatotopically represented. One form, termed coding plasticity, concerns changes in synaptic transmission and connectivity between neurons. This is thought to underlie learning and memory processes and so adaptation to a changing environment. The second, called homeostatic plasticity, serves to maintain a restricted dynamic range of neuronal activity thus preventing its saturation or total downregulation. Current explanatory models of cortical EDP are almost exclusively neurocentric. However, in recent years, increasing evidence has emerged on the role of astrocytes in br...
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...
Recent studies have shown that ocular dominance plasticity in layer 2/3 of the visual cortex exhibit...
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...
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...
Changes to sensory experience result in plasticity of synapses in the cortex. This experience-depend...
Recent studies have shown that ocular dominance plasticity in layer 2/3 of the visual cortex exhibit...
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...
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...
Changes to sensory experience result in plasticity of synapses in the cortex. This experience-depend...
Recent studies have shown that ocular dominance plasticity in layer 2/3 of the visual cortex exhibit...