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利手的神经基础:来自一例罕见去传入病例的启示。

The neural foundations of handedness: insights from a rare case of deafferentation.

机构信息

Department of Neurology, Pennsylvania State University College of Medicine, Hershey, Pennsylvania.

Aix Marseille Université, CNRS, ISM, Marseille, France.

出版信息

J Neurophysiol. 2020 Jul 1;124(1):259-267. doi: 10.1152/jn.00150.2020. Epub 2020 Jun 24.

Abstract

The role of proprioceptive feedback on motor lateralization remains unclear. We asked whether motor lateralization is dependent on proprioceptive feedback by examining a rare case of proprioceptive deafferentation (GL). Motor lateralization is thought to arise from asymmetries in neural organization, particularly at the cortical level. For example, we have previously provided evidence that the left hemisphere mediates optimal motor control that allows execution of smooth and efficient arm trajectories, while the right hemisphere mediates impedance control that can achieve stable and accurate final arm postures. The role of proprioception in both of these processes has previously been demonstrated empirically, bringing into question whether loss of proprioception will disrupt lateralization of motor performance. In this study, we assessed whether the loss of online sensory information produces deficits in integrating specific control contributions from each hemisphere by using a reaching task to examine upper limb kinematics in GL and five age-matched controls. Behavioral findings revealed differential deficits in the control of the left and right hands in GL and performance deficits in each of GL's hands compared with controls. Computational simulations can explain the behavioral results as a disruption in the integration of postural and trajectory control mechanisms when no somatosensory information is available. This rare case of proprioceptive deafferentation provides insights into developing a more accurate understanding of handedness that emphasizes the role of proprioception in both predictive and feedback control mechanisms. The role of proprioceptive feedback on the lateralization of motor control mechanisms is unclear. We examined upper limb kinematics in a rare case of peripheral deafferentation to determine the role of sensory information in integrating motor control mechanisms from each hemisphere. Our empirical findings and computational simulations showed that the loss of somatosensory information results in an impaired integration of control mechanisms, thus providing support for a complementary dominance hypothesis of handedness.

摘要

本体感觉反馈对运动偏侧性的作用尚不清楚。我们通过检查一种罕见的本体感觉去传入病例(GL)来研究运动偏侧性是否依赖于本体感觉反馈。运动偏侧性被认为是由神经组织的不对称性引起的,特别是在皮质水平。例如,我们之前提供了证据表明,左半球介导最佳运动控制,使手臂轨迹平稳高效执行,而右半球介导阻抗控制,使最终手臂姿势稳定准确。本体感觉在这两个过程中的作用以前都是通过经验证明的,这就提出了一个问题,即本体感觉的丧失是否会破坏运动表现的偏侧性。在这项研究中,我们通过使用一个手臂伸展任务来评估在线感觉信息的丧失是否会导致从每个半球整合特定控制贡献的能力受损,从而评估 GL 和五个年龄匹配的对照组的上肢运动学。行为研究结果表明,GL 的左手和右手控制存在差异,并且与对照组相比,GL 的双手在运动表现方面都存在缺陷。计算模拟可以解释行为结果,即当没有本体感觉信息时,姿势和轨迹控制机制的整合会受到干扰。这种罕见的本体感觉去传入病例为我们提供了对手性的更准确理解的见解,强调了本体感觉在预测和反馈控制机制中的作用。本体感觉反馈对运动控制机制偏侧性的作用尚不清楚。我们检查了一种罕见的外周去传入病例的上肢运动学,以确定感觉信息在整合来自每个半球的运动控制机制中的作用。我们的实证研究结果和计算模拟表明,本体感觉信息的丧失会导致控制机制的整合受损,从而为手性的互补优势假说提供了支持。

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Handedness can be explained by a serial hybrid control scheme.利手可以用一种串行混合控制方案来解释。
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Motor lateralization is characterized by a serial hybrid control scheme.运动侧化的特点是采用串行混合控制方案。
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