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Ramping single unit activity in the medial prefrontal cortex and ventral striatum reflects the onset of waiting but not imminent impulsive actions

机译:内侧前额叶皮层和腹侧纹状体中单个单元的活动增加反映了等待但不是即将来临的冲动行为的发作

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摘要

The medial prefrontal cortex (mPFC) and ventral striatum (VS), including the nucleus accumbens, are key forebrain regions involved in regulating behaviour for future rewards. Dysfunction of these regions can result in impulsivity, characterized by actions that are mistimed and executed without due consideration of their consequences. Here we recorded the activity of single neurons in the mPFC and VS of 16 rats during performance on a five-choice serial reaction time task of sustained visual attention and impulsivity. Impulsive responses were assessed by the number of premature responses made before target stimuli were presented. We found that the majority of cells signalled trial outcome after an action was made (both rewarded and unrewarded). Positive and negative ramping activity was a feature of population activity in the mPFC and VS (49.5 and 50.4% of cells, respectively). This delay-related activity increased at the same rate and reached the same maximum (or minimum) for trials terminated by either correct or premature responses. However, on premature trials, the ramping activity started earlier and coincided with shorter latencies to begin waiting. For all trial types the pattern of ramping activity was unchanged when the pre-stimulus delay period was made variable. Thus, premature responses may result from a failure in the timing of the initiation of a waiting process, combined with a reduced reliance on external sensory cues, rather than a primary failure in delay activity. Our findings further show that the neural locus of this aberrant timing signal may emanate from structures outside the mPFC and VS.
机译:内侧前额叶皮层(mPFC)和腹侧纹状体(VS),包括伏隔核,是参与调节行为以获取未来奖励的关键前脑区域。这些区域的功能失调可能会导致冲动,其特征是动作时机错误且执行不当,没有适当考虑其后果。在这里,我们记录了在持续选择视觉注意力和冲动性的五项选择反应时间任务中,在执行过程中对16只大鼠的mPFC和VS中单个神经元的活动进行记录。通过在出现目标刺激之前做出的过早反应的数量来评估冲动反应。我们发现,采取行动后,大多数细胞都发出了试验结果的信号(既有回报也无回报)。正向和负向上升活动是mPFC和VS(分别为49.5和50.4%的细胞)中的种群活动的特征。对于因正确或过早反应而终止的试验,与延迟相关的活动以相同的速率增加,并达到相同的最大值(或最小值)。但是,在过早的试验中,加速活动开始得较早,同时等待等待时间也较短。对于所有试验类型,当将刺激前延迟期设为可变时,斜坡活动的模式均不变。因此,过早的响应可能是由于等待过程启动时机的失败,加上对外部感官提示的减少依赖,而不是延迟活动中的主要失败。我们的发现进一步表明,这种异常定时信号的神经源可能来自mPFC和VS之外的结构。

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