Archambault P S, Ferrari-Toniolo S, Caminiti R, Battaglia-Mayer A
School of Physical & Occupational Therapy, McGill University, Montreal, Canada; Interdisciplinary Research Centre in Rehabilitation, Montreal, Canada.
Department of Physiology and Pharmacology, SAPIENZA University of Rome, Rome, Italy.
Vision Res. 2015 May;110(Pt B):244-56. doi: 10.1016/j.visres.2014.09.009. Epub 2014 Sep 28.
The ability of human and non-human primates to make fast corrections to hand movement trajectories after a sudden shift in the target's location is a key feature of visuo-motor behavior. In healthy individuals, hand movements smoothly adapt to a change in target location without needing to complete the movement to the first target location, as typical of parietal patients. This finding indicates that the nervous system continuously monitors the visual scene and is able to integrate new information in order to produce an efficient motor response. In this paper, we review the kinematics, reaction times and muscle activity observed during the online correction of hand movements as well as the underlying neurophysiological processes studied through single-cell neural recordings in monkeys. Brain stimulation, lesion and imaging studies in humans are also discussed. We demonstrate that while online correction mechanisms strongly depend on the activity of a parieto-frontal network of which the posterior parietal cortex is a crucial node, these mechanisms proceed smoothly and are similar to what is observed during simple point-to-point movements. Online correction of hand movements would rely on feedforward and feedback mechanisms in the parietal cortex, as part of the activity within the fronto-parietal network for the planning and execution of visuo-motor tasks.
人类和非人类灵长类动物在目标位置突然改变后对手部运动轨迹进行快速校正的能力是视觉运动行为的一个关键特征。在健康个体中,手部运动能顺利适应目标位置的变化,无需像顶叶患者那样先完成向第一个目标位置的运动。这一发现表明,神经系统会持续监测视觉场景,并能够整合新信息以产生高效的运动反应。在本文中,我们回顾了手部运动在线校正过程中观察到的运动学、反应时间和肌肉活动,以及通过对猴子进行单细胞神经记录所研究的潜在神经生理过程。我们还讨论了人类的脑刺激、损伤和成像研究。我们证明,虽然在线校正机制强烈依赖于以顶叶后皮质为关键节点的顶叶 - 额叶网络的活动,但这些机制进展顺利,并且与简单点对点运动中观察到的情况相似。手部运动的在线校正将依赖于顶叶皮质中的前馈和反馈机制,这是额叶 - 顶叶网络内用于视觉运动任务规划和执行的活动的一部分。