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首页> 外文期刊>Journal of Cognitive Neuroscience >Functional Properties of Parietal Hand Manipulation–related Neurons and Mirror Neurons Responding to Vision of Own Hand Action
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Functional Properties of Parietal Hand Manipulation–related Neurons and Mirror Neurons Responding to Vision of Own Hand Action

机译:顶手操作相关神经元和镜像神经元的功能特性对自身手部视觉的响应

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摘要

Parietofrontal pathways play an important role in visually guided motor control. In this pathway, hand manipulation-related neurons in the inferior parietal lobule represent 3-D properties of an object and motor patterns to grasp it. Furthermore, mirror neurons show visual responses that are concerned with the actions of others and motor-related activity during execution of the same grasping action. Because both of these categories of neurons integrate visual and motor signals, these neurons may play a role in motor control based on visual feedback signals. The aim of this study was to investigate whether these neurons in inferior parietal lobule including the anterior intraparietal area and PFG of macaques represent visual images of the monkey's own hand during a self-generated grasping action. We recorded 235 neurons related to hand manipulation tasks. Of these, 54 responded to video clips of the monkey's own hand action, the same as visual feedback during that action or clips of the experimenter's hand action in a lateral view. Of these 54 neurons, 25 responded to video clips of the monkey's own hand, even without an image of the target object. We designated these 25 neurons as “hand-type.” Thirty-three of 54 neurons that were defined as mirror neurons showed visual responses to the experimenter's action and motor responses. Thirteen of these mirror neurons were classified as hand-type. These results suggest that activity of hand manipulation-related and mirror neurons in anterior intraparietal/PFG plays a fundamental role in monitoring one's own body state based on visual feedback.
机译:额额叶途径在视觉引导的运动控制中起重要作用。在此途径中,上顶小叶中与手操作相关的神经元代表对象的3-D特性以及抓握该对象的运动模式。此外,镜像神经元在执行相同的抓握动作时会显示与他人的动作以及与运动有关的活动有关的视觉反应。由于这两种神经元都整合了视觉和运动信号,因此这些神经元可能会在基于视觉反馈信号的运动控制中发挥作用。这项研究的目的是调查在自上而下的抓握动作中,包括前壁顶区和猕猴PFG在内的顶下小叶中的这些神经元是否代表猴子自己的手的视觉图像。我们记录了235个与手操作任务相关的神经元。其中54个响应了猴子自己的手势的视频剪辑,与该动作期间的视觉反馈或实验者的侧视图的手势响应相同。在这54个神经元中,即使没有目标物体的图像,也有25个对猴子自己的手的视频片段做出了响应。我们将这25个神经元指定为“手型”。被定义为镜像神经元的54个神经元中有33个显示出对实验者的动作和运动反应的视觉反应。这些镜像神经元中有13个被归类为手型。这些结果表明,前壁内/ PFG中与手操作相关的神经元和镜像神经元的活动在基于视觉反馈监测自身身体状态方面起着基本作用。

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