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首页> 外文期刊>Cerebral Cortex >Human Parietal “Reach Region” Primarily Encodes Intrinsic Visual Direction, Not Extrinsic Movement Direction, in a Visual–Motor Dissociation Task
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Human Parietal “Reach Region” Primarily Encodes Intrinsic Visual Direction, Not Extrinsic Movement Direction, in a Visual–Motor Dissociation Task

机译:人顶壁的“到达区域”主要在视觉-运动分离任务中编码内在的视觉方向,而不是外部的运动方向

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摘要

Posterior parietal cortex (PPC) participates in the planning of visuospatial behaviors, including reach movements, in gaze-centered coordinates. It is not known if these representations encode the visual goal in retinal coordinates, or the movement direction relative to gaze. Here, by dissociating the intrinsic retinal stimulus from the extrinsic direction of movement, we show that PPC employs a visual code. Using delayed pointing and event-related functional magnetic resonance imaging, we identified a cluster of PPC regions whose activity was topographically (contralaterally) related to the direction of the planned movement. We then switched the normal visual–motor spatial relationship by adapting subjects to optical left/right reversing prisms. With prisms, movement-related PPC topography reversed, remaining tied to the retinal image. Thus, remarkably, the PPC region in each hemisphere now responded more for planned ipsilateral pointing movements. Other non-PPC regions showed the opposite world- or motor-fixed pattern. These findings suggest that PPC primarily encodes not motor commands but movement goals in visual coordinates.
机译:顶叶后皮质(PPC)参与以凝视为中心的坐标的视觉空间行为的规划,包括伸手动作。尚不清楚这些表示形式是将视觉目标编码为视网膜坐标还是相对于凝视的运动方向进行编码。在这里,通过将固有的视网膜刺激与运动的外在方向分离,我们表明PPC采用了视觉代码。使用延迟指向和事件相关的功能磁共振成像,我们确定了一系列PPC区域,这些区域的活动在地形上(对侧)与计划的运动方向相关。然后,我们通过使对象适应光学的左/右倒车棱镜来切换正常的视觉-运动空间关系。使用棱镜时,与运动相关的PPC形貌会反转,仍然与视网膜图像相关。因此,值得注意的是,现在每个半球的PPC区域对计划的同侧指点运动的反应更大。其他非PPC地区则显示出相反的世界固定或马达固定模式。这些发现表明,PPC主要不是在视觉坐标中编码运动命令,而是对运动目标进行编码。

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  • 来源
    《Cerebral Cortex》 |2007年第10期|2283-2292|共10页
  • 作者单位

    Canadian Institutes of Health Research Group on Action and Perception;

    Departamento de Fisiología Facultad de Medicina Universidad Nacional Autónoma de México México;

    Centre for Vision Research York University Toronto Ontario Canada M3J 1P3;

    Imaging Research Labs Robarts Research Institute London Ontario N6A 5K8 Canada;

    Department of Psychology University of Western Ontario London Ontario Canada N6A 5C1;

    Department of Physiology and Pharmacology University of Western Ontario London Ontario Canada N6A 5C1;

    Department of Psychology York University Toronto Ontario Canada M3J 1P3;

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