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Publication : Input- and Output-Specific Regulation of Serial Order Performance by Corticostriatal Circuits.

First Author  Rothwell PE Year  2015
Journal  Neuron Volume  88
Issue  2 Pages  345-56
PubMed ID  26494279 Mgi Jnum  J:228642
Mgi Id  MGI:5708418 Doi  10.1016/j.neuron.2015.09.035
Citation  Rothwell PE, et al. (2015) Input- and Output-Specific Regulation of Serial Order Performance by Corticostriatal Circuits. Neuron 88(2):345-56
abstractText  The serial ordering of individual movements into sequential patterns is thought to require synaptic plasticity within corticostriatal circuits that route information through the basal ganglia. We used genetically and anatomically targeted manipulations of specific circuit elements in mice to isolate the source and target of a corticostriatal synapse that regulates the performance of a serial order task. This excitatory synapse originates in secondary motor cortex, terminates on direct pathway medium spiny neurons in the dorsolateral striatum, and is strengthened by serial order learning. This experience-dependent and synapse-specific form of plasticity may sculpt the balance of activity in basal ganglia circuits during sequential movements, driving a disparity in striatal output that favors the direct pathway. This disparity is necessary for execution of responses in serial order, even though both direct and indirect pathways are active during movement initiation, suggesting dynamic modulation of corticostriatal circuitry contributes to the choreography of behavioral routines.
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