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A Corticostriatal Path Targeting Striosomes Controls Decision-Making under Conflict

机译:皮质激素靶向皮质激素的路径控制冲突下的决策。

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A striking neurochemical form of compartmentalization has been found in the striatum of humans and other species, dividing it into striosomes and matrix. The function of this organization has been unclear, but the anatomical connections of striosomes indicate their relation to emotion-related brain regions, including the medial prefrontal cortex. We capitalized on this fact by combining pathway-specific optogenetics and electrophysiology in behaving rats to search for selective functions of striosomes. We demonstrate that a medial prefronto-striosomal circuit is selectively active in and causally necessary for cost-benefit decision-making under approach-avoidance conflict conditions known to evoke anxiety in humans. We show that this circuit has unique dynamic properties likely reflecting striatal interneuron function. These findings demonstrate that cognitive and emotion-related functions are, like sensory-motor processing, subject to encoding within compartmentally organized representations in the forebrain and suggest that striosome-targeting corticostriatal circuits can underlie neural processing of decisions fundamental for survival.
机译:在人类和其他物种的纹状体中发现了一种显着的神经化学分隔形式,将其分为粒状体和基质。该组织的功能尚不清楚,但基质小体在解剖学上的联系表明它们与情绪相关的大脑区域(包括前额内侧皮层)有关。我们通过结合行为特定的大鼠中特定途径的光遗传学和电生理学来寻找质体的选择性功能,从而利用了这一事实。我们证明,内侧前额叶-纹状体电路在已知避免引起人类焦虑的方法避免冲突条件下,在成本效益决策中有选择地活跃,并且是因果关系所必需的。我们表明,该电路具有独特的动态特性,可能反映了纹状体中间神经元功能。这些发现表明,与感觉和运动相关的功能与感觉运动处理一样,在前脑的间隔组织表示中也要进行编码,并表明以核小体为靶点的皮质前庭回路可以为生存基础的决策提供神经处理。

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