Within the review's proposed model, the striatum is highlighted as a key target for restoring normal basal ganglia circuit function. The abstract presents it as a central circuit node rather than as a standalone tool.
First-pass extracted concept
striatum
Candidate: concept label2 source documents3 linked claims
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Evidence Snippets
Finally, we present a model based upon the findings of these studies that highlights the striatum as a particularly attractive target for restoring normal function to basal ganglia neurocircuits altered within psychiatric disorder patients.
We review the evidence supporting the role of the striatum in optimizing behavior by refining action selection and in shaping habits and skills as a modulator of motor repertoires.
Supporting Sources
Linked Claims
The review presents a model that highlights the striatum as a particularly attractive target for restoring normal function to altered basal ganglia neurocircuits in psychiatric disorder patients.
The review states that the striatum helps optimize behavior by refining action selection and shaping habits and skills as a modulator of motor repertoires.
Quoted textsource-backed
We review the evidence supporting the role of the striatum in optimizing behavior by refining action selection and in shaping habits and skills as a modulator of motor repertoires.
The review states that striatal learning mechanisms are not limited to the motor domain and generalize to cognitive skills and emotion-related patterns of action.
Quoted textsource-backed
These findings challenge the notion that striatal learning processes are limited to the motor domain. The learning mechanisms supported by striatal circuitry generalize to other domains, including cognitive skills and emotion-related patterns of action.