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A model of the coupling between grip aperture and hand transport during human prehension

机译:人类抓握过程中抓地力孔与手部运输之间的耦合模型

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摘要

It has been repeatedly demonstrated that the opening between the index finger and thumb (grasp component) during an object-directed reach-to-grasp movement achieves maximum aperture approximately two-thirds of the way through the duration of the reaching movement (transport component). Here we offer a quantitative model of the temporal coupling between grip aperture and wrist velocity which shows experimentally that the correlation between grip aperture and object size is a sigmoidal function of movement duration. When wrist velocity reaches its peak value, the correlation between the grip aperture and the size of the goal object has reached half of the correlation that is achieved by the end of the movement.
机译:反复证明,在对象定向的“到达-抓住”运动过程中,食指和拇指(抓取部分)之间的开口在到达运动的持续时间(运输部分)的大约三分之二处获得最大光圈。 。在这里,我们提供了握持孔和腕部速度之间的时间耦合的定量模型,该模型通过实验表明握持孔和对象大小之间的相关性是运动持续时间的S形函数。当腕部速度达到其峰值时,握持孔和目标物体的大小之间的相关性已达到运动结束时所获得的相关性的一半。

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