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首页> 外文期刊>Neuroscience Research: The Official Journal of the Japan Neuroscience Society >Performance monitoring in the medial frontal cortex and related neural networks: From monitoring self actions to understanding others' actions
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Performance monitoring in the medial frontal cortex and related neural networks: From monitoring self actions to understanding others' actions

机译:内侧前皮层和相关神经网络中的性能监测:从监控自动行动以了解他人的行为

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摘要

Action is a key channel for interacting with the outer world. As such, the ability to monitor actions and their consequences - regardless as to whether they are self-generated or other-generated - is of crucial importance for adaptive behavior. The medial frontal cortex (MFC) has long been studied as a critical node for performance monitoring in nonsocial contexts. Accumulating evidence suggests that the MFC is involved in a wide range of functions necessary for one's own performance monitoring, including error detection, and monitoring and resolving response conflicts. Recent studies, however, have also pointed to the importance of the MFC in performance monitoring under social conditions, ranging from monitoring and understanding others' actions to reading others' mental states, such as their beliefs and intentions (i.e., mentalizing). Here we review the functional roles of the MFC and related neural networks in performance monitoring in both nonsocial and social contexts, with an emphasis on the emerging field of a social systems neuroscience approach using macaque monkeys as a model system. Future work should determine the way in which the MFC exerts its monitoring function via interactions with other brain regions, such as the superior temporal sulcus in the mentalizing system and the ventral premotor cortex in the mirror system. (C) 2018 Published by Elsevier B.V.
机译:行动是与外层世界互动的关键渠道。因此,监测行动的能力及其后果 - 无论它们是自我生成还是其他生成的 - 对于自适应行为至关重要。中间前置皮质(MFC)已长期被研究为非本社区性能监测的关键节点。累积证据表明,MFC涉及自己的性能监测所需的各种功能,包括错误检测和监控和解决响应冲突。然而,最近的研究还指出了MFC在社会条件下性能监测中的重要性,从监测和了解他人以阅读他人的心理国家(例如他们的信仰和意图)的行为(即委员会)的行为。在这里,我们审查了MFC和相关神经网络在非本社会和社会环境中的性能监测中的功能作用,并强调使用猕猴作为模型系统的社会系统神经科学方法的新兴领域。未来的工作应确定MFC通过与其他脑区的相互作用施加其监测功能的方式,例如镜子系统中的精神化系统中的优越颞沟和腹侧热激素皮质。 (c)2018由elsevier b.v发布。

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