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手指和指骨触觉体积感知的辨别阈值。

Discrimination threshold for haptic volume perception of fingers and phalanges.

作者信息

Zhang Zhilin, Li Chunlin, Zhang Jian, Huang Qiang, Go Ritsu, Yan Tianyi, Wu Jinglong

机构信息

Intelligent Robotics Institute, School of Mechatronical Engineering, Beijing Institute of Technology, Beijing, 100081, China.

School of Biomedical Engineering, Capital Medical University, Beijing, 100069, China.

出版信息

Atten Percept Psychophys. 2018 Feb;80(2):576-585. doi: 10.3758/s13414-017-1453-z.

Abstract

Humans exhibit a remarkable ability to discriminate variations in object volume based on natural haptic perception. The discrimination thresholds for the haptic volume perception of the whole hand are well known, but the discrimination thresholds for haptic volume perception of fingers and phalanges are still unknown. In the present study, two psychophysical experiments were performed to investigate haptic volume perception in various fingers and phalanges. The configurations of both experiments were completely dependent on haptic volume perception from the fingers and phalanges. The participants were asked to blindly discriminate the volume variation of regular solid objects in a random order by using the distal phalanx, medial phalanx, and proximal phalanx of their index finger, middle finger, ring finger, and little finger. The discrimination threshold of haptic volume perception gradually decreases from the little finger to the index finger as well as from the proximal phalanx to the distal phalanx. Overall, both the shape of the target and the part of the finger in contact with the target significantly influence the precision of haptic perception of volume. This substantial data set provides detailed and compelling perspectives on the haptic system, including for discrimination of the spatial size of objects and for performing more general perceptual processes.

摘要

人类表现出基于自然触觉感知来辨别物体体积变化的非凡能力。全手触觉体积感知的辨别阈值是众所周知的,但手指和指骨的触觉体积感知辨别阈值仍然未知。在本研究中,进行了两项心理物理学实验来研究不同手指和指骨的触觉体积感知。两个实验的配置完全依赖于手指和指骨的触觉体积感知。参与者被要求通过使用食指、中指、无名指和小指的远节指骨、中节指骨和近节指骨,以随机顺序盲目辨别规则固体物体的体积变化。触觉体积感知的辨别阈值从小指到食指以及从近节指骨到远节指骨逐渐降低。总体而言,目标的形状以及与目标接触的手指部位均会显著影响体积触觉感知的精度。这个丰富的数据集为触觉系统提供了详细且有说服力的观点,包括对物体空间大小的辨别以及执行更一般的感知过程。

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