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The Prelimbic Cortex and Subthalamic Nucleus Contribute to Cue-Guided Behavioral Switching

机译:前缘皮层和丘脑底核有助于线索引导的行为转换

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摘要

Frontal cortex - basal ganglia circuitry supports behavioral switching when a change in outcome information is used to adapt response patterns. Less is known about whether specific frontal cortex-basal ganglia circuitry supports behavioral switching when cues signal that a change in response patterns should occur. The present experiments investigated whether the prelimbic cortex and subthalamic nucleus in male Long-Evans rats supports cue-guided switching in a conditional discrimination test. Rats learned in a cross-maze that a start arm cue (black or white) signaled which of two maze arms to enter for a food reward. The cue was switched every 3-6 trials. Baclofen and muscimol infused into the prelimbic cortex significantly impaired performance by increasing switch trial errors, as well as trials immediately following a switch trial (perseveration) and after initially making a correct switch (maintenance error). NMDA receptor blockade in the subthalamic nucleus significantly impaired performance by increasing switch errors and perseveration. Contralateral disconnection of these areas significantly reduced conditional discrimination performance by increasing switch and perseverative errors. These findings suggest that the prelimbic area and subthalamic nucleus support the use of cue information to facilitate an initial switch away from a previously relevant response pattern.
机译:当结果信息的变化用于适应反应模式时,额叶皮层-基底神经节电路支持行为切换。当提示信号响应模式发生变化时,特定的额叶皮质-基底神经节电路是否支持行为切换知之甚少。本实验研究了在条件辨别测试中,雄性Long-Evans大鼠的前缘皮层和丘脑下核是否支持提示引导的转换。老鼠在十字迷宫中了解到,启动臂提示(黑色或白色)表示要进入两个迷宫臂中的哪一个以获得食物奖励。提示每3-6次尝试切换一次。将巴氯芬和麝香酚注入到前肢皮质中,会增加开关试验错误,以及在进行开关试验后(持续性)和刚开始进行正确的开关试验后(维护错误),从而严重损害性能。丘脑下核中的NMDA受体阻滞通过增加开关错误和坚持而严重损害了性能。这些区域的对侧断开连接通过增加切换和持久错误大大降低了条件区分性能。这些发现表明前边缘区和丘脑底核支持提示信息的使用,以促进从先前相关反应模式的初始转换。

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