首页> 美国卫生研究院文献>The Journal of Neuroscience >Hand Orientation during Reach-to-Grasp Movements Modulates Neuronal Activity in the Medial Posterior Parietal Area V6A
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Hand Orientation during Reach-to-Grasp Movements Modulates Neuronal Activity in the Medial Posterior Parietal Area V6A

机译:伸手抓住运动过程中的手的方向调节内侧后顶叶区域V6A中的神经元活动。

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摘要

Reach-to-grasp actions involve several components of forelimb movements needed to direct the hand toward the object to be grasped, and to orient and preshape the hand according to the object axis and shape. Area V6A, which represents a node of the dorsomedial frontoparietal circuits, has so far been implicated only in directing the arm toward different spatial locations. The present results confirm this finding and demonstrate, for the first time, that during reach-to-grasp, V6A neurons are also modulated by the orientation of the hand. In the present work the object to be grasped was a handle that could have different orientations. Reach-to-grasp movements were executed in complete darkness while gazing at a small fixation point. The majority of the tested cells (76/142; 54%) turned out to be sensitive to the orientation of the handle. Neurons could be modulated during preparation or execution of reach-to-grasp movements. The most represented cells were those modulated by hand orientation both during preparatory and movement periods. These data show that reaching and grasping are processed by the same population of neurons, providing evidence that the coordination of reaching and grasping takes place much earlier than previously thought, i.e., in the parieto-occipital cortex. The data here reported are in agreement with results of lesions to the medial posterior parietal cortex in both monkeys and humans, and with recent imaging data in humans, all of them indicating a functional coupling in the control of reaching and grasping by the medial parietofrontal circuit.
机译:伸手动作涉及前肢运动的几个组成部分,前肢运动需要将手指向要抓握的对象,并根据对象的轴和形状对手进行定向和预塑形。到目前为止,代表背侧额叶前额肌循环的一个节点的区域V6A仅涉及将手臂指向不同的空间位置。目前的结果证实了这一发现,并首次证明了在达到抓握过程中,V6A神经元也受到手部方向的调节。在当前的工作中,要抓住的对象是可能具有不同方向的手柄。伸手抓住的动作在完全黑暗的状态下注视着一个小的注视点。大部分测试单元(76/142; 54%)对手柄的方向敏感。在准备或执行触手可及的动作期间可以调节神经元。代表最多的细胞是在准备和运动期间均受到手部方向调节的细胞。这些数据表明,伸手和抓握是由相同数量的神经元处理的,这提供了证据,表明伸手和抓握的协调发生的时间比以前认为的要早得多,即在顶枕皮层中。本文报道的数据与猴子和人的内侧后顶叶皮层病变的结果以及人类的近期影像数据相吻合,所有这些数据均表明在控制内侧顶额叶回路到达和抓握方面存在功能耦合。

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