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把握规律:手动抓握中的速度-准确性权衡

Grasping at laws: Speed-accuracy trade-offs in manual prehension.

作者信息

McIntosh Robert D, Mon-Williams Mark, Tresilian James R

机构信息

Psychology, School of Philosophy, Psychology & Language Sciences, University of Edinburgh.

School of Psychology, University of Leeds.

出版信息

J Exp Psychol Hum Percept Perform. 2018 Jul;44(7):1022-1037. doi: 10.1037/xhp0000512. Epub 2018 Apr 26.

Abstract

Most of human performance is subject to speed-accuracy trade-offs. For spatially constrained aiming, the trade-off is often said to take the specific form of Fitts' law, in which movement duration is predicted from a single factor combining target distance and target size. However, efforts to extend this law to the three-dimensional context of reaching to grasp (prehension) have had limited success. We suggest that there are potentially confounding influences in standard grasping, and we introduce a novel task to regularize the direction of approach and to eliminate the influences of nearby surfaces. In six participants, we examined speed-accuracy trade-offs for prehension, manipulating the depth (in the plane of the reach), height (orthogonal to the reach), and width (the grasped dimension) of the target object independently. We obtained lawful relationships that were consistent at the group and individual levels. It took longer to reach for more distant objects, and more time was allowed when placing the fingers on a contact surface smaller in either depth or height. More time was taken to grasp wider objects, but only beyond a critical width that varied between individuals. These speed-accuracy trade-offs showed substantial departures from Fitts' law, and were well described by a two-factor model in which reach distance and object size have separate influences on movement duration. We discuss empirical and theoretical reasons for preferring a two-factor model, and we propose that this may represent the most general form of speed-accuracy trade-off, not only for grasping but also for other spatially constrained aiming tasks. (PsycINFO Database Record

摘要

人类的大多数行为表现都面临速度与准确性的权衡。对于空间受限的瞄准任务,这种权衡通常被认为采取费茨定律的特定形式,即运动持续时间可由结合目标距离和目标大小的单一因素预测得出。然而,将该定律扩展到伸手抓取(prehensile)的三维情境中的努力成效有限。我们认为在标准抓取过程中存在潜在的混杂影响,因此引入了一项新任务来规范接近方向并消除附近表面的影响。我们对6名参与者进行了伸手抓取的速度与准确性权衡研究,独立操纵目标物体的深度(在伸手平面内)、高度(与伸手方向正交)和宽度(抓取维度)。我们获得了在群体和个体层面都一致的规律关系。抓取更远的物体花费的时间更长,当手指放在深度或高度较小的接触面上时会留出更多时间。抓取更宽的物体花费的时间更多,但仅在个体间有所差异的临界宽度之上才会如此。这些速度与准确性的权衡与费茨定律有显著差异,并且可以用一个双因素模型很好地描述,即伸手距离和物体大小对运动持续时间有独立影响。我们讨论了支持双因素模型的实证和理论原因,并提出这可能代表了速度与准确性权衡的最一般形式,不仅适用于抓取,也适用于其他空间受限的瞄准任务。(《心理学文摘数据库记录》 )

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