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Asymmetric interlimb transfer of concurrent adaptation to opposing dynamic forces

机译:同时适应对立动态力的非对称插值传递

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摘要

Interlimb transfer of a novel dynamic force has been well documented. It has also been shown that unimanual adaptation to opposing novel environments is possible if they are associated with different workspaces. The main aim of this study was to test if adaptation to opposing velocity dependent viscous forces with one arm could improve the initial performance of the other arm. The study also examined whether this interlimb transfer occurred across an extrinsic, spatial, coordinative system or an intrinsic, joint based, coordinative system. Subjects initially adapted to opposing viscous forces separated by target location. Our measure of performance was the correlation between the speed profiles of each movement within a force condition and an ‘average’ trajectory within null force conditions. Adaptation to the opposing forces was seen during initial acquisition with a significantly improved coefficient in epoch eight compared to epoch one. We then tested interlimb transfer from the dominant to non-dominant arm (D → ND) and vice-versa (ND → D) across either an extrinsic or intrinsic coordinative system. Interlimb transfer was only seen from the dominant to the non-dominant limb across an intrinsic coordinative system. These results support previous studies involving adaptation to a single dynamic force but also indicate that interlimb transfer of multiple opposing states is possible. This suggests that the information available at the level of representation allowing interlimb transfer can be more intricate than a general movement goal or a single perceived directional error.
机译:新型动力的跨行转移已得到充分证明。还已经表明,如果它们与不同的工作空间相关联,则可以单手适应相对的新颖环境。这项研究的主要目的是测试用一只手臂适应与速度相关的对立粘滞力是否可以改善另一只手臂的初始性能。这项研究还检查了这种跨界转移是发生在外部的,空间的,协调的系统还是内在的,基于联合的协调系统上。受试者最初适应于由目标位置分隔开的反粘性力。我们对性能的度量是在力条件下每个运动的速度曲线与零力条件下的“平均”轨迹之间的相关性。在最初的采集过程中,可以看到对抗力的适应性,与第一个时期相比,第八个时期的系数显着提高。然后我们测试了跨非固有或固有协调系统从支配臂到非支配臂(D→ND)以及反之亦然(ND→D)的跨界转移。仅在整个内部协调系统中,从支配肢向非支配肢转移了肢体。这些结果支持以前的研究,涉及到对单个动力的适应,但也表明多个相反状态的边缘转移是可能的。这表明,比起一般的运动目标或单个感知的方向误差,在表示级别上允许进行跨界传递的可用信息可能更加复杂。

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