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多感官对振动触觉事件感知的贡献。

Multisensory contributions to the perception of vibrotactile events.

作者信息

Soto-Faraco Salvador, Deco Gustavo

机构信息

Parc Científic de Barcelona, Universitat de Barcelona, Spain.

出版信息

Behav Brain Res. 2009 Jan 23;196(2):145-54. doi: 10.1016/j.bbr.2008.09.018. Epub 2008 Sep 30.

Abstract

We argue that audio-tactile interactions during vibrotactile processing provide a promising, albeit largely neglected, benchmark for the systematic study multisensory integration. This article reviews and discusses current evidence for multisensory contributions to the perception of vibratory events, and proposes a framework to address a number of relevant questions. First, we highlight some of the features that characterize the senses of hearing and touch in terms of vibratory information processing, and which allow for potential cross-modal interactions at multiple levels along the functional architecture of the sensory systems. Second, we briefly review empirical evidence for interactions between hearing and touch in the domain of vibroactile perception and related stimulus properties, covering behavioural, electrophysiological and neuroimaging studies in humans and animals. Third, we discuss the vibrotactile discrimination task, which has been successfully applied in the study of perception and decision processes in psychophysical and physiological research. We argue that this approach, complemented with computational modeling using biophysically realistic neural networks, may be a convenient framework to address auditory contributions to vibrotactile processing in the somatosensory system. Finally, we comment on a series of particular issues which are relevant in multisensory research and potentially addressable within the proposed framework.

摘要

我们认为,在振动触觉处理过程中的听觉 - 触觉交互作用为系统研究多感官整合提供了一个有前景的基准,尽管这在很大程度上被忽视了。本文回顾并讨论了当前关于多感官对振动事件感知的贡献的证据,并提出了一个框架来解决一些相关问题。首先,我们强调了在振动信息处理方面表征听觉和触觉的一些特征,这些特征允许在沿着感觉系统功能结构的多个层面进行潜在的跨模态交互作用。其次,我们简要回顾了在振动触觉感知领域以及相关刺激特性方面听觉与触觉之间交互作用的实证证据,涵盖了人类和动物的行为、电生理和神经成像研究。第三,我们讨论了振动触觉辨别任务,该任务已成功应用于心理物理学和生理学研究中的感知和决策过程研究。我们认为,这种方法辅以使用生物物理逼真神经网络的计算建模,可能是一个方便的框架,用于解决听觉对体感系统中振动触觉处理的贡献问题。最后,我们对多感官研究中一系列相关的特定问题进行评论,这些问题在所提出的框架内可能是可以解决的。

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