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Seeing versus Believing: Conflicting Immediate and Predicted Feedback Lead to Suboptimal Motor Performance

机译:眼见为实:即时反馈与预测反馈相抵触导致电机性能欠佳

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摘要

Reaching hand movements tend to follow straight paths. Previous work has suggested that when visual feedback is perturbed such that straight hand motions are seen as curved motions, the motor system adapts to restore straight visual motion. We show that under a nonlinear visuomotor transformation, one that maps straight hand motions to high-curvature motions of a visual cursor, reaching movements do not converge with practice toward a straight path of either the hand or the cursor. Instead, hand trajectories converged to a repeatable and characteristic curved shape. We propose a new computational model in which the adapted trajectories are obtained by minimizing a cost function composed of two terms. The first term enforces hand-movement smoothness. The second term penalizes average visual aiming error, which is the instantaneous discrepancy between the direction of the hand movement and the direction of the vector that points from the cursor to the target. Our results are consistent with the model's predictions and demonstrate a persistent effect of the predicted feedback of direction errors despite the possibility of producing smoother hand motions by ignoring it.
机译:伸手的动作往往遵循直线运动。先前的工作表明,如果视觉反馈受到干扰,以至于笔直的运动被视为弯曲的运动,则电机系统将适应于恢复笔直的视觉运动。我们表明,在非线性粘性运动变换下,将笔直的手部运动映射到视觉光标的高曲率运动的一种方法,到达运动不会与实践趋向于朝向手或光标的笔直路径。取而代之的是,手部轨迹会聚为可重复的特征曲线形状。我们提出了一种新的计算模型,其中通过最小化由两个项组成的成本函数来获得自适应轨迹。第一项增强了手部动作的平滑度。第二项惩罚平均视觉瞄准误差,这是手的移动方向与从光标指向目标的矢量方向之间的瞬时差异。我们的结果与模型的预测相符,并证明了方向误差的预测反馈的持续影响,尽管有可能忽略它而产生更平滑的手部动作。

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