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触觉感知与抑制测量的可靠性

Reliability of Tactile Perception and Suppression Measurements.

作者信息

Voudouris Dimitris, Georgiadis Petros, Fiehler Katja, Arikan Belkis Ezgi

出版信息

IEEE Trans Haptics. 2025 Jul-Sep;18(3):671-678. doi: 10.1109/TOH.2025.3587742.

Abstract

Tactile signals arising on one's own body allow estimation of one's sensory state and foster interactions with the environment. However, tactile perception can be influenced by various factors. For instance, tactile perception is suppressed on a moving limb compared to when it is resting, a phenomenon termed tactile suppression. Here, we examine whether tactile perception during resting and during movement is robust over shorter and longer time intervals. Participants had to detect tactile stimuli of various intensities on their index finger while this finger was resting or moving (finger extension). This detection task was performed in four sessions on separate days across a period of one month. We found that tactile perception during resting is robust within single sessions and across days. However, tactile perception during movement changed across days, but these changes lacked a clear systematic pattern. We further show that temporal changes in perception alone cannot fully account for the previously reported tactile suppression effects. Finally, split-half correlations reveal high consistency in the estimated perceptual measures, demonstrating that estimates of tactile perception are robust across measurement points.

摘要

源自自身身体的触觉信号有助于评估自身的感觉状态,并促进与环境的互动。然而,触觉感知会受到多种因素的影响。例如,与静止时相比,移动肢体上的触觉感知会受到抑制,这种现象称为触觉抑制。在此,我们研究了在较短和较长时间间隔内,静止和运动过程中的触觉感知是否稳定。参与者在食指静止或移动(手指伸展)时,必须检测食指上不同强度的触觉刺激。这项检测任务在一个月内分四天进行了四次。我们发现,静止时的触觉感知在单次检测和不同日期之间是稳定的。然而,运动过程中的触觉感知在不同日期有所变化,但这些变化缺乏明显的系统模式。我们进一步表明,仅感知的时间变化并不能完全解释先前报道的触觉抑制效应。最后,对分半相关分析显示,估计的感知测量具有高度一致性,表明触觉感知的估计在各个测量点都是稳定的。

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