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Human force reproduction error depends upon force level

机译:人的力量再现误差取决于力量水平

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For optimal haptic tele-manipulation system design, it is important to understand the accuracy and limitations of human force perception. Previous research demonstrated that humans generate higher forces when asked to reproduce an externally applied force; these studies proposed that the nervous system attenuates feedback from self-generated forces. The goal of this study was to determine how accurately subjects reproduce self-generated forces with the same hand over a broad range of force levels. Subjects (n=10, all right handed) had to generate an onscreen target force with visual support and subsequently reproduce the same force without visual support with their right hand against a static handle equipped with a force sensor. Six force levels (10 to 160N) were each presented randomly for eight repetitions. Subjects generated too high forces for lower force levels (≤40N) and too low forces for higher force levels (≥ 130N). Our results support force-dependent sensory integration and demonstrate that attenuated feedback of self-generated forces is not the sole factor in force reproduction errors.
机译:对于最佳的触觉远程操纵系统设计,重要的是要了解人类力量感知的准确性和局限性。先前的研究表明,当人们要求重现外部作用力时,人类会产生更高的作用力。这些研究表明,神经系统减弱了自生力量的反馈。这项研究的目的是确定受试者在广泛的力水平范围内用同一只手能够准确再现自生力的能力。受测者(n = 10,右手)必须在视觉支持下产生屏幕上的目标力,然后在没有视觉支持的情况下用右手在配备有力传感器的静态手柄上重现相同的力。随机出现六个力级别(10到160N),重复八次。对于较低的力水平(≤40N),受试者产生的力太高;对于较高的力水平(≥130N),受试者产生的力太低。我们的结果支持力依赖的感觉统合,并证明自生力的衰减反馈不是力再现误差的唯一因素。

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