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On the Neurocircuitry of Grasping: The influence of action intent on kinematic asymmetries in reach-to-grasp actions

机译:在抓住的神经循环性:作用意图对克服动作中运动不对称的影响

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摘要

Evidence from electrophysiology suggests that nonhuman primates produce reach-to-grasp movements based on their functional end goal rather than on the biomechanical requirements of the movement. However, the invasiveness of direct-electrical stimulation and single-neuron recording largely precludes analogous investigations in humans. In this review, we present behavioural evidence in the form of kinematic analyses suggesting that the cortical circuits responsible for reach-to-grasp actions in humans are organized in a similar fashion. Grasp-to-eat movements are produced with significantly smaller and more precise maximum grip apertures (MGAs) than are grasp-to-place movements directed toward the same objects, despite near identical mechanical requirements of the two subsequent (i.e., grasp-to-eat and grasp-to-place) movements. Furthermore, the fact that this distinction is limited to right-handed movements suggests that the system governing reach-to-grasp movements is asymmetric. We contend that this asymmetry may be responsible, at least in part, for the preponderance of right-hand dominance among the global population.
机译:来自电生理学的证据表明,基于其功能最终目标而不是在运动的生物力学要求上产生克服伸缩运动。然而,直接电刺激和单神经元记录的侵袭性在很大程度上排除了人类的类似研究。在这篇综述中,我们呈现了运动学分析形式的行为证据,提示负责人类克服克服的动作的皮质电路以类似的方式组织。掌握的运动是产生的明显较小,更精确的最大夹持孔(MGA),而不是朝向相同对象的掌握到放置的运动,尽管两个随后的两个(即抓住 - 吃和抓住地点)运动。此外,这种区别仅限于右手运动的事实表明,控制伸展到掌握运动的系统是不对称的。我们认为,这种不对称可能至少部分地负责全球人口之间的右手优势的优势。

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