首页> 外文期刊>The European Journal of Neuroscience >Synchronization in the prefrontal-striatal circuit tracks behavioural choice in a go-no-go task in rats
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Synchronization in the prefrontal-striatal circuit tracks behavioural choice in a go-no-go task in rats

机译:前平面纹界电路中的同步在大鼠的Go-No-Go Task中跟踪行为选择

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摘要

Abstract Rodent striatum is involved in sensory-motor transformations and reward-related learning. Lesion studies suggest dorsolateral striatum, dorsomedial striatum and nucleus accumbens underlie stimulus-response transformations, goal-directed behaviour and reward expectation, respectively. In addition, prefrontal inputs likely control these functions. Here, we set out to study how reward-driven behaviour is mediated by the coordinated activity of these structures in the intact brain. We implemented a discrimination task requiring rats to either respond or suppress responding on a lever after the presentation of auditory cues in order to obtain rewards. Single unit activity in the striatal subregions and pre-limbic cortex was recorded using tetrode arrays. Striatal units showed strong onset responses to auditory cues paired with an opportunity to obtain reward. Cue-onset responses in both striatum and cortex were significantly modulated by previous errors suggesting a role of these structures in maintaining appropriate motivation or action selection during ongoing behaviour. Furthermore, failure to respond to the reward-paired tones was associated with higher pre-trial coherence among striatal subregions and between cortex and striatum suggesting a task-negative corti-costriatal network whose activity may be suppressed to enable processing of reward-predictive cues. Our findings highlight that coordinated activity in a distributed network including both pre-limbic cortex and multiple striatal regions underlies reward-related decisions.
机译:摘要啮齿动物纹状体参与了感官 - 电动机变换和奖励相关的学习。病变研究表明背面层纹状体,背体纹状体和核心,分别利于刺激 - 反应变换,目标导向行为和奖励期望。此外,预前输入可能控制这些功能。在这里,我们开始研究奖励驱动的行为是如何通过完整大脑中这些结构的协调活动进行调解的。我们实施了一种歧视任务,要求大鼠在听觉线索呈现后响应或抑制杠杆响应,以获得奖励。使用Tetrode阵列记录纹纹晶体区和预肢体皮质中的单个单元活动。尖端单位显示出与获取奖励的机会配对的听觉线索强烈的发病响应。通过先前的误差显着调节纹状体和皮质中的提示响应,这表明这些结构在保持行为期间保持适当的动机或动作选择方面的作用。此外,未能响应奖励成对的音调与纹纹群和皮质和纹章之间的预审连贯性相关联,暗示可能被抑制其活动的任务负皮质 - 康复网络以实现奖励预测性提示。我们的调查结果强调,分布式网络中的协调活动,包括肢峰皮层和多个尖端地区都是奖励相关的决定。

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