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Predicting the duration of reach-to-grasp movements to objects with asymmetric contact surfaces

机译:预测到达具有非对称接触表面的对象的抓取运动的持续时间

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摘要

The duration of reach-to-grasp movements is influenced by the size of the contact surfaces, such that grasping objects with smaller contact surface areas takes longer. But what is the influence of asymmetric contact surfaces? In Experiment 1a, participants reached-to-lift wooden blocks off a table top, with the contact locations for the thumb and index finger varying in surface size. The time taken to lift the block was driven primarily by the thumb contact surface, which showed a larger effect size for the dependent variable of movement duration than the index finger’s contact surface. In Experiment 1b participants reached-to-grasp (but not lift) the blocks. The same effect was found with duration being largely driven by contact surface size for the thumb. Experiment 2 tested whether this finding generalised to movements towards conical frusta grasped in a different plane mounted off the table top. Experiment 2 showed that movement duration again was dictated primarily by the size of the thumb’s contact surface. The thumb contact surface was the visible surface in experiments 1 and 2 so Experiment 3 explored grasping when the index finger’s contact surface was visible (participants grasped the frusta with the index finger at the top). An interaction between thumb and finger surface size was now found to determine movement duration. These findings provide the first empirical report of the impact of asymmetric contact surfaces on prehension, and may have implications for scientists who wish to model reach-to-grasp behaviours.
机译:达到抓取运动的持续时间受接触​​面大小的影响,因此,以较小的接触面面积抓取物体会花费更长的时间。但是不对称接触表面的影响是什么?在实验1a中,参与者将木块从桌面上抬起,拇指和食指的接触位置的表面大小有所不同。提起木块所需的时间主要是由拇指接触面决定的,与食指的接触面相比,移动持续时间的因变量显示出更大的效果大小。在实验1b中,参与者可以抓住(但不能举起)障碍物。发现相同的效果,持续时间在很大程度上受拇指接触表面尺寸的影响。实验2测试了这一发现是否普遍适用于在安装在桌面以外的其他平面中抓住的朝向圆锥形锥面的运动。实验2表明,运动持续时间再次主要取决于拇指接触面的大小。在实验1和2中,拇指接触表面是可见的表面,因此实验3探索了当食指的接触表面可见时的抓握(参与者将食指放在顶部时握住了锥体)。现在发现拇指和手指表面大小之间的相互作用可以确定运动持续时间。这些发现提供了关于不对称接触表面对附着力影响的第一份经验报告,并且可能对希望模拟触手可及的行为的科学家产生影响。

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