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Basal ganglia mechanisms underlying precision grip force control.

机译:精确控制抓力的基础神经节机制。

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The classic grasping network has been well studied but thus far the focus has been on cortical regions in the control of grasping. Sub-cortically, specific nuclei of the basal ganglia have been shown to be important in different aspects of precision grip force control but these findings have not been well integrated. In this review, we outline the evidence to support the hypothesis that key basal ganglia nuclei are involved in parameterizing specific properties of precision grip force. We review literature from different areas of human and animal work that converges to build a case for basal ganglia involvement in the control of precision gripping. Following on from literature showing anatomical connectivity between the basal ganglia nuclei and key nodes in the cortical grasping network, we suggest a conceptual framework for how the basal ganglia could function within the grasping network, particularly as it relates to the control of precision grip force.
机译:对经典的抓取网络已进行了充分的研究,但到目前为止,重点一直放在抓取控制中的皮质区域。皮层下,已显示基底神经节的特定核在精确抓握力控制的不同方面很重要,但这些发现尚未得到很好的整合。在这篇综述中,我们概述了证据,以支持关键基底神经节核参与参数化精确抓地力的特定属性的假设。我们回顾了来自人类和动物工作不同领域的文献,它们融合为基础神经节参与精确抓握的控制建立了案例。继文献显示了基底神经节核与皮质抓握网络中关键节点之间的解剖学连通性之后,我们提出了一个概念框架,用于研究基底神经节如何在抓握网络中发挥作用,特别是因为它与精确抓握力的控制有关。

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