首页> 外文会议>2013 IEEE 13th International Conference on Rehabilitation Robotics >Adaptation to visuomotor rotation in isometric reaching is similar to movement adaptation
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Adaptation to visuomotor rotation in isometric reaching is similar to movement adaptation

机译:等距到达时对运动运动的适应类似于运动适应

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Isometric reaching, in which the arm remains stationary and the user controls a virtual cursor via force input, is a motor task that has not been thoroughly compared to real reaching. In this study, we ask if isometric adaptation to a kinematic perturbation is similar to adaptation in movement, and if the type of isometric mapping (position or velocity control) influences learning. Healthy subjects made real and virtual reaches with the arm in plane. In some trials, the cursor was rotated counter clockwise by 45° to perturb the kinematic mapping. To assess adaptation, the angular error of cursor movement at 150 ms from movement onset was measured for each reach; error was averaged across subjects and a two-state learning mode was fit to error data. For movement and isometric groups, average angular error peaked at perturbation onset, reduced over 200 reaches, and reversed direction when the perturbation was removed. We show that subjects are able to adapt to a visuomotor rotation in both position- and velocity-based cursor control, and that the time course of adaptation resembles that of movement adaptation. Training of virtual reaching using force/torque input could be particularly applicable for stroke patients with significant movement deficits, who could benefit from intensive treatments using simple, cost-effective devices.
机译:等距伸直是手臂尚未完成的运动任务,与手臂伸直相比,其中手臂保持静止,用户通过力输入控制虚拟光标。在这项研究中,我们询问对运动学扰动的等距适应是否类似于运动中的适应,以及等距映射的类型(位置或速度控制)是否影响学习。健康的受试者将手臂伸到平面上可以进行真实和虚拟的触及。在某些试验中,将光标逆时针旋转45°以扰动运动学映射。为了评估适应性,针对每个范围,测量了从移动开始到150 ms时光标移动的角度误差。对受试者平均错误,对错误数据采用两种状态的学习模式。对于运动和等距组,平均角度误差在扰动开始时达到峰值,在200个作用域内减小,并且在去除扰动时方向相反。我们证明对象在基于位置和基于速度的光标控制中都能够适应视觉运动,并且适应的时间过程类似于运动适应的时间过程。使用力/转矩输入进行虚拟触及的训练可能特别适用于运动严重不足的中风患者,他们可以通过使用简单,经济高效的设备进行强化治疗而受益。

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