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A tendon skeletal finger model for evaluation of pinching effort

机译:用于评估捏力的肌腱骨骼手指模型

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In this paper, we propose a tendon skeletal finger model and discuss which finger postures the human feels easy to pinch based on the tendon forces and the human experimental results. The finger model mimics a human tendon skeletal structure. The tendon forces during the pinching motion were simulated using the finger model. Simulation results show that the tendon forces closely mirror the human muscle activity. Sensory evaluation of subjective pinching effort was conducted with five subjects. The subject pinched five kinds of cylinders, from 20 [mm] to 100 [mm]. The pinching force and the surface EMGs were simultaneously measured in the experiment. Based on the human questionnaire tests, we investigated which finger postures the human feels easy to pinch a cylinder. The results show that the pattern of the EMGs measured by the experiment is very similar to that of the tendon forces calculated by the finger model simulation. This indicates that the tendon force is a useful index of the subjective pinching effort and it can be used for the quantitative evaluation instead of EMGs.
机译:在本文中,我们提出了一个肌腱骨骼手指模型,并根据肌腱力和实验结果讨论了人容易捏捏的手指姿势。手指模型模仿人的肌腱骨骼结构。使用手指模型模拟捏合运动中的肌腱力。仿真结果表明,肌腱力紧密反映了人体的肌肉活动。对五名受试者进行了主观捏力的感官评估。受试者从20 [mm]到100 [mm]捏了五种圆柱。在实验中同时测量收缩力和表面肌电图。根据人类问卷调查,我们调查了人类容易捏捏圆柱体的手指姿势。结果表明,通过实验测量的肌电图的模式与通过手指模型仿真计算出的肌腱力的模式非常相似。这表明肌腱力是主观捏力的有用指标,可以代替肌电图用于定量评估。

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