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Reinforcement-conflict based control: An integrative model of error detection in anterior cingulate cortex

机译:基于强化冲突的控制:前扣带回皮层错误检测的集成模型

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The concepts of error detection and compensation play a key role in the studies of human brain behavior. In particular, studies of event-related brain potentials have discovered the presence of a component following errors named the error related negativity (ERN). According to the highly used theories of this field, the ERN can occur due to an error detection in reward prediction (the reinforcement learning theory) or conflict detection (the conflict monitoring theory). Since each of these theories has given numerous experimental validations, there is an urge to reconcile them. Although there have been efforts to integrate these two theories, the research in this field needs to be improved. The present study aims at integrating the above-mentioned theories by proposing a model that simulates the role of anterior cingulate cortex in performance monitoring and reinforcement-guided action selection. In this model, an executive control module uses the conflict signal and the reward prediction error to adjust the timing of the control and to regulate the strength of the control over other structures. The simulation results show that the proposed model can successfully produce the expected experimental results in a modified version of the Eriksen flanker task.
机译:错误检测和补偿的概念在人类大脑行为的研究中起着关键作用。特别是,与事件相关的脑电势的研究发现了错误之后的一个组件,即错误相关的负性(ERN)。根据该领域广泛使用的理论,ERN可能由于奖励预测(强化学习理论)或冲突检测(冲突监视理论)中的错误检测而发生。由于这些理论中的每一种都给出了大量的实验验证,因此有调和它们的冲动。尽管已努力整合这两种理论,但该领域的研究仍需改进。本研究旨在通过提出一个模型来整合上述理论,该模型模拟前扣带回皮层在性能监测和强化引导动作选择中的作用。在此模型中,执行控制模块使用冲突信号和报酬预测误差来调整控制的时机并调整对其他结构的控制强度。仿真结果表明,提出的模型可以在Eriksen flanker任务的修改版本中成功产生预期的实验结果。

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