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自主运动对听觉-触觉和触觉-触觉时间顺序判断的影响。

The effects of voluntary movements on auditory-haptic and haptic-haptic temporal order judgments.

作者信息

Frissen Ilja, Ziat Mounia, Campion Gianni, Hayward Vincent, Guastavino Catherine

机构信息

Multimodal Interaction Lab, School of Information Studies, McGill University, Montreal, Québec, Canada.

出版信息

Acta Psychol (Amst). 2012 Oct;141(2):140-8. doi: 10.1016/j.actpsy.2012.07.010. Epub 2012 Sep 8.

Abstract

In two experiments we investigated the effects of voluntary movements on temporal haptic perception. Measures of sensitivity (JND) and temporal alignment (PSS) were obtained from temporal order judgments made on intermodal auditory-haptic (Experiment 1) or intramodal haptic (Experiment 2) stimulus pairs under three movement conditions. In the baseline, static condition, the arm of the participants remained stationary. In the passive condition, the arm was displaced by a servo-controlled motorized device. In the active condition, the participants moved voluntarily. The auditory stimulus was a short, 500Hz tone presented over headphones and the haptic stimulus was a brief suprathreshold force pulse applied to the tip of the index finger orthogonally to the finger movement. Active movement did not significantly affect discrimination sensitivity on the auditory-haptic stimulus pairs, whereas it significantly improved sensitivity in the case of the haptic stimulus pair, demonstrating a key role for motor command information in temporal sensitivity in the haptic system. Points of subjective simultaneity were by-and-large coincident with physical simultaneity, with one striking exception in the passive condition with the auditory-haptic stimulus pair. In the latter case, the haptic stimulus had to be presented 45ms before the auditory stimulus in order to obtain subjective simultaneity. A model is proposed to explain the discrimination performance.

摘要

在两项实验中,我们研究了自主运动对时间触觉感知的影响。在三种运动条件下,通过对跨模态听觉 - 触觉(实验1)或模态内触觉(实验2)刺激对进行时间顺序判断,获得了敏感度(JND)和时间对齐(PSS)的测量值。在基线静态条件下,参与者的手臂保持静止。在被动条件下,手臂由伺服控制的电动装置移动。在主动条件下,参与者自主移动。听觉刺激是通过耳机呈现的500Hz短音,触觉刺激是垂直于手指运动施加在食指指尖的短暂阈上力脉冲。主动运动对听觉 - 触觉刺激对的辨别敏感度没有显著影响,而在触觉刺激对的情况下,它显著提高了敏感度,表明运动命令信息在触觉系统的时间敏感度中起关键作用。主观同时性点大体上与物理同时性一致,但在被动条件下听觉 - 触觉刺激对存在一个显著例外。在后一种情况下,触觉刺激必须在听觉刺激之前45毫秒呈现才能获得主观同时性。本文提出了一个模型来解释辨别性能。

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