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A new device to measure the three dimensional forces and torques in precision grip.

机译:一种用于在精密抓握中测量三维力和扭矩的新设备。

摘要

Fine prehension is ubiquitous in everyday skilled hand manipulations. The anticipatory nature of the control of normal grip forces exerted against tangential loads has been extensively used to provide insights into the working of neural control of movements. We designed a new versatile device to measure the three dimensional forces and torques during a broad panel of precision grip tasks. The instrument measures constraints exerted independently on two grip surfaces by the thumb and the opposing fingers. In addition, the device can be loaded to increase the weight and/or induce torques and can be easily integrated in a variety of experimental contexts. Its compactness improves its stability during movement and allows an ergonomic manipulation for impaired persons or children.
机译:在日常熟练的手操作中普遍存在良好的理解力。对切​​向载荷施加的正常抓地力控制的预期性质已被广泛用于提供对运动的神经控制工作的见解。我们设计了一种新型多功能设备,可在各种精密抓握任务中测量三维力和扭矩。该仪器测量拇指和相反手指分别施加在两个握持面上的约束。另外,该装置可以被加载以增加重量和/或引起扭矩,并且可以容易地集成在各种实验环境中。它的紧凑性提高了其在运动过程中的稳定性,并允许对残障人士或儿童进行人体工程学操作。

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