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Perceived Cost and Intrinsic Motor Variability Modulate the Speed-Accuracy Trade-Off

机译:感知的成本和固有的电动机可变性调节速度精度的权衡

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摘要

Fitts’ Law describes the speed-accuracy trade-off of human movements, and it is an elegant strategy that compensates for random and uncontrollable noise in the motor system. The control strategy during targeted movements may also take into account the rewards or costs of any outcomes that may occur. The aim of this study was to test the hypothesis that movement time in Fitts’ Law emerges not only from the accuracy constraints of the task, but also depends on the perceived cost of error for missing the targets. Subjects were asked to touch targets on an iPad® screen with different costs for missed targets. We manipulated the probability of error by comparing children with dystonia (who are characterized by increased intrinsic motor variability) to typically developing children. The results show a strong effect of the cost of error on the Fitts’ Law relationship characterized by an increase in movement time as cost increased. In addition, we observed a greater sensitivity to increased cost for children with dystonia, and this behavior appears to minimize the average cost. The findings support a proposed mathematical model that explains how movement time in a Fitts-like task is related to perceived risk.
机译:菲茨定律描述了人类运动在速度准确性之间的权衡,这是一种优雅的策略,可以补偿电机系统中的随机噪声和不可控制的噪声。在目标运动期间的控制策略也可以考虑可能发生的任何结果的回报或成本。这项研究的目的是检验以下假设:菲茨定律中的移动时间不仅来自任务的准确性约束,还取决于错过目标的错误的可感知成本。要求受试者触摸iPad ®屏幕上的目标,错过目标的费用各不相同。我们通过比较患有肌张力障碍的儿童(以内在运动变异性增加为特征的儿童)与通常发育中的儿童进行比较来控制错误的可能性。结果表明,错误成本对菲茨法则关系的影响很大,其特征是随着成本增加,移动时间也会增加。此外,我们观察到对肌张力障碍患儿增加费用的敏感性更高,这种行为似乎使平均费用最小化。这些发现支持了一个提出的数学模型,该模型解释了类似Fitts任务中的运动时间与感知风险之间的关系。

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