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苍白球动力学揭示了行为抑制的隐蔽策略。

Globus pallidus dynamics reveal covert strategies for behavioral inhibition.

机构信息

Department of Neurology, University of California, San Francisco, San Francisco, United States.

Department of Psychology, University of Sheffield, Sheffield, United Kingdom.

出版信息

Elife. 2020 Jun 10;9:e57215. doi: 10.7554/eLife.57215.

Abstract

Flexible behavior requires restraint of actions that are no longer appropriate. This behavioral inhibition critically relies on frontal cortex - basal ganglia circuits. Within the basal ganglia, the globus pallidus pars externa (GPe) has been hypothesized to mediate selective proactive inhibition: being prepared to stop a specific action, if needed. Here we investigate population dynamics of rat GPe neurons during preparation-to-stop, stopping, and going. Rats selectively engaged proactive inhibition towards specific actions, as shown by slowed reaction times (RTs). Under proactive inhibition, GPe population activity occupied state-space locations farther from the trajectory followed during normal movement initiation. Furthermore, the state-space locations were predictive of distinct types of errors: failures-to-stop, failures-to-go, and incorrect choices. Slowed RTs on correct proactive trials reflected starting bias towards the alternative action, which was overcome before progressing towards action initiation. Our results demonstrate that rats can exert cognitive control via strategic adjustments to their GPe network state.

摘要

灵活的行为需要抑制不再适当的行为。这种行为抑制主要依赖于前额叶皮层-基底节回路。在基底节中,苍白球外节(GPe)被假设介导选择性的主动抑制:如果需要,准备停止特定的动作。在这里,我们研究了大鼠 GPe 神经元在准备停止、停止和进行期间的群体动力学。大鼠通过减慢反应时间(RT)选择性地对特定动作进行主动抑制。在主动抑制下,GPe 群体活动占据了与正常运动启动时所遵循的轨迹不同的状态空间位置。此外,状态空间位置可以预测不同类型的错误:停止失败、进行失败和错误选择。正确的主动试验中较慢的 RT 反映了对替代动作的起始偏向,在朝着动作启动前进之前,这种偏向被克服。我们的结果表明,大鼠可以通过对其 GPe 网络状态进行策略性调整来施加认知控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c6f6/7314538/9dd36ee32efd/elife-57215-fig1.jpg

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