
pmid: 17920013
Recent evidence supports the hypothesis of a functional dichotomy of perisomatic inhibition in the cerebral cortex: the parvalbumin- and cholecystokinin-containing basket cells that are specialized to control rhythm (as a clockwork) and "mood" (as a fine-tuning device), respectively, of network oscillations. Pathology extends this conclusion further, as the former is implicated in epilepsy and the latter in anxiety. The well-balanced cooperation of the two inhibitory systems is required for the normal network operations underlying the cognitive functions of the cerebral cortex.
Cerebral Cortex, Neurons, Epilepsy, Neuroscience(all), Models, Neurological, Neural Inhibition, Anxiety, Parvalbumins, Animals, Humans, Nerve Net, Cholecystokinin
Cerebral Cortex, Neurons, Epilepsy, Neuroscience(all), Models, Neurological, Neural Inhibition, Anxiety, Parvalbumins, Animals, Humans, Nerve Net, Cholecystokinin
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