首页> 美国卫生研究院文献>The Journal of Neuroscience >Error Monitoring Using External Feedback: Specific Roles of the Habenular Complex the Reward System and the Cingulate Motor Area Revealed by Functional Magnetic Resonance Imaging
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Error Monitoring Using External Feedback: Specific Roles of the Habenular Complex the Reward System and the Cingulate Motor Area Revealed by Functional Magnetic Resonance Imaging

机译:使用外部反馈进行错误监视:功能性磁共振成像揭示了枢纽复合体奖励系统和扣带运动区域的特定作用

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摘要

The dopaminergic system has been shown to be involved in the processing of rewarding stimuli, specifically of errors in reward prediction, in animal studies as well as in recent neuroimaging studies in humans. Furthermore, a specific role of dopamine in the human homolog of the rostral cingulate motor area (rCMA) was proposed in a recent model of error detection. Negative feedback as well as self-detected errors elicit a negative event-related brain potential probably generated in the rCMA. We performed two experiments using functional magnetic resonance imaging to investigate the brain activity related to negative and positive feedback in a dynamically adaptive motion prediction task. Whereas positive feedback raised hemodynamic activity in the ventral striatum (nucleus accumbens), negative feedback activated the rCMA, the inferior anterior insula, and the epithalamus (habenular complex). These data demonstrate the role of the habenular complex in the control of the human reward system, a function previously hypothesized on the basis of animal research. The rCMA reacted only to errors with negative feedback but not to errors without feedback, which ruled out an influence of response conflict or uncertainty on its role in error detection by external signals.
机译:在动物研究以及最近的人类神经影像学研究中,多巴胺能系统已显示出参与奖励刺激的过程,尤其是奖励预测错误。此外,在最近的错误检测模型中,提出了多巴胺在有齿扣带回运动区(rCMA)的人类同源物中的特定作用。负反馈以及自我检测到的错误会引起与rCMA相关的与事件相关的负脑电势。我们使用功能磁共振成像进行了两个实验,以研究动态自适应运动预测任务中与负反馈和正反馈有关的大脑活动。正反馈增加了腹侧纹状体(伏隔核)的血流动力学活性,负反馈激活了rCMA,前下岛和上丘脑(下颌复合体)。这些数据证明了哈贝状复合物在人类奖赏系统控制中的作用,该功能先前是根据动物研究假设的。 rCMA仅对具有负反馈的错误做出反应,而对没有反馈的错误没有反应,这排除了响应冲突或不确定性对其在外部信号检测错误中的作用的影响。

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