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Manual obstacle avoidance takes into account visual uncertainty, motor noise, and biomechanical costs.

机译:手动避开障碍物要考虑到视觉不确定性,电机噪音和生物力学成本。

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摘要

Moving around obstacles requires balancing the need to avoid collisions with the need to minimize biomechanical costs. We investigated this tradeoff by studying the effects of visual uncertainty, motor noise, and practice on clearance over obstacles in a manual positioning task. Participants moved a manipulandum back and forth over a stationary obstacle. We varied visual uncertainty by placing the obstacle at different heights relative to participants' eyes, and we varied motor noise by having participants hold the object to be moved at different positions relative to the range of motion of the arm joints. Clearance was larger in conditions of higher visual uncertainty than in conditions of lower visual uncertainty, larger in the higher motor noise conditions than in the lower motor noise conditions, and larger early in practice than late in practice. The results indicate that spatial accuracy and biomechanical costs are both taken into account during reaching over obstacles, but to differing degrees across practice.
机译:绕过障碍物需要在避免碰撞的需求与最小化生物力学成本的需求之间取得平衡。我们通过研究视觉不确定性,电机噪音以及在手动定位任务中清除障碍物的练习的影响,研究了这种折衷方案。参与者在固定的障碍物上来回移动manipulandum。通过将障碍物相对于参与者的眼睛放置在不同的高度来改变视觉不确定性,并且通过让参与者将要移动的对象保持在相对于手臂关节运动范围的不同位置来改变运动噪音。在视觉不确定性较高的情况下,与在视觉不确定性较低的条件下相比,间隙更大;在较高的电动机噪声条件下,与在较低电动机噪声条件下相比,间隙更大;在实践中,早期比实践中的晚期更大。结果表明,在越过障碍物时都考虑了空间准确性和生物力学成本,但是在整个实践中程度不同。

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