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听觉和触觉具有共同的节奏感知能力。

Rhythm perception is shared between audio and haptics.

机构信息

CNRS, PRISM, Aix-Marseille Univ, Marseille, France.

Centre Technique de Vélizy, Stellantis, Paris, France.

出版信息

Sci Rep. 2022 Mar 9;12(1):4188. doi: 10.1038/s41598-022-08152-w.

Abstract

A surface texture is perceived through both the sound and vibrations produced while being explored by our fingers. Because of their common origin, both modalities have a strong influence on each other, particularly at above 60 Hz for which vibrotactile perception and pitch perception share common neural processes. However, whether the sensation of rhythm is shared between audio and haptic perception is still an open question. In this study, we show striking similarities between the audio and haptic perception of rhythmic changes, and demonstrate the interaction of both modalities below 60 Hz. Using a new surface-haptic device to synthesize arbitrary audio-haptic textures, psychophysical experiments demonstrate that the perception threshold curves of audio and haptic rhythmic gradients are the same. Moreover, multimodal integration occurs when audio and haptic rhythmic gradients are congruent. We propose a multimodal model of rhythm perception to explain these observations. These findings suggest that audio and haptic signals are likely to be processed by common neural mechanisms also for the perception of rhythm. They provide a framework for audio-haptic stimulus generation that is beneficial for nonverbal communication or modern human-machine interfaces.

摘要

通过手指探索时产生的声音和振动,我们可以感知表面纹理。由于它们的共同起源,这两种模态对彼此都有很强的影响,特别是在高于 60 Hz 的频率下,触觉感知和音高感知共享共同的神经过程。然而,节奏感是否在听觉和触觉感知中共享仍然是一个悬而未决的问题。在这项研究中,我们展示了音频和触觉对节奏变化的感知之间的惊人相似之处,并证明了两种模态在 60 Hz 以下的相互作用。使用一种新的表面触觉设备来合成任意的音频触觉纹理,心理物理实验表明,音频和触觉节奏梯度的感知阈值曲线是相同的。此外,当音频和触觉节奏梯度一致时,会发生多模态整合。我们提出了一种多模态的节奏感知模型来解释这些观察结果。这些发现表明,听觉和触觉信号可能也通过共同的神经机制来处理节奏感知。它们为音频触觉刺激的产生提供了一个框架,这对非语言交流或现代人机界面很有好处。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5eda/8907191/95b311f16959/41598_2022_8152_Fig1_HTML.jpg

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