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Impact of Commitment on Performance Evaluation in the Rostral Cingulate Motor Area

机译:承诺对延锋扣带运动区性能评估的影响

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摘要

Performance evaluation is a prerequisite for behavioral adaptation. Although the anterior cingulate cortex (ACC) is thought to play a central role in error detection, little is known about the electrophysiological activity of this structure during the performance-monitoring process. We directly addressed this issue by training monkeys to perform a Stroop-like task and then recorded neuronal activity in the rostral cingulate motor area (CMAr), a relatively unexplored region of the ACC known to be involved in motor processing. We found that most CMAr neurons responded during the evaluation period to both positive and negative feedback, but neuronal changes were more important after an error than after a successful trial. Interestingly, this performance-monitoring activity was not directly modulated by the degree of difficulty of the cognitive situation because changes in discharge frequency were similar whatever the level of attentional control imposed on the monkey. Firing activity during the evaluation period increased more, however, in erroneously completed than in incompleted trials and when the reward was delivered in an active rather than passive context, indicating that performance evaluation was conditioned by the degree of commitment of the animal to the task. It would thus seem that CMAr neurons could constitute a system for the evaluation of behavioral performance contingent on the subject's commitment to the task.
机译:绩效评估是行为适应的前提。尽管前扣带回皮质(ACC)被认为在错误检测中起着核心作用,但在性能监测过程中对该结构的电生理活性知之甚少。我们通过训练猴子来执行类似Stroop的任务,然后在延髓带状扣带运动区(CMAr)(已知参与运动加工的ACC的相对未开发区域)中记录神经元活动,从而直接解决了这个问题。我们发现,在评估期间,大多数CMAr神经元对正反馈和负反馈都有响应,但错误后的神经元变化比成功试验后的神经元变化更为重要。有趣的是,这种监视行为的能力并不受认知状况的困难程度的直接调节,因为无论对猴子的注意力控制水平如何,放电频率的变化都是相似的。在评估期间,错误完成的射击活动比未完成试验的射击活动增加更多,并且奖励是在主动而不是被动的情况下提供的,这表明性能评估取决于动物对任务的承诺程度。因此,似乎CMAr神经元可以构成一个评估行为表现的系统,具体取决于对象对任务的承诺。

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