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Evidence for a general performance‐monitoring system in the human brain

机译:人脑中通用性能监控系统的证据

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摘要

Adaptive behavior relies on the ability of the brain to form predictions and monitor action outcomes. In the human brain, the same system is thought to monitor action outcomes regardless of whether the information originates from internal (e.g., proprioceptive) and external (e.g., visual) sensory channels. Neural signatures of processing motor errors and action outcomes communicated by external feedback have been studied extensively; however, the existence of such a general action‐monitoring system has not been tested directly. Here, we use concurrent EEG‐MEG measurements and a probabilistic learning task to demonstrate that event‐related responses measured by electroencephalography and magnetoencephalography display spatiotemporal patterns that allow an effective transfer of a multivariate statistical model discriminating the outcomes across the following conditions: (a) erroneous versus correct motor output, (b) negative versus positive feedback, (c) high‐ versus low‐surprise negative feedback, and (d) erroneous versus correct brain–computer‐interface output. We further show that these patterns originate from highly‐overlapping neural sources in the medial frontal and the medial parietal cortices. We conclude that information about action outcomes arriving from internal or external sensory channels converges to the same neural system in the human brain, that matches this information to the internal predictions.
机译:适应性行为依赖于大脑形成预测和监视动作结果的能力。在人脑中,无论信息是否来自内部(例如本体感受)和外部(例如视觉)感觉通道,都认为同一系统可以监视动作结果。已经广泛研究了通过外部反馈传达的处理运动错误和动作结果的神经特征。但是,这种常规的行为监控系统的存在尚未经过直接测试。在这里,我们使用同时​​进行的EEG-MEG测量和概率学习任务来证明通过脑电图和磁脑电图测量的事件相关反应显示出时空模式,从而可以有效地转移多元统计模型,从而在以下情况下区分结果:(a)错误与正确的电动机输出,(b)负与正反馈,(c)高与低惊喜负反馈,以及(d)错误与正确的脑机接口输出。我们进一步表明,这些模式源自内侧额叶和内侧顶皮质的高度重叠的神经源。我们得出结论,关于来自内部或外部感官通道的动作结果的信息收敛到人脑中的同一神经系统,该信息将这些信息与内部预测相匹配。

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