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音频-触觉音高和响度相互作用的分离机制。

Separate mechanisms for audio-tactile pitch and loudness interactions.

机构信息

Department of Neurology, Division of Cognitive Neuroscience, Johns Hopkins University School of Medicine Baltimore, MD, USA.

出版信息

Front Psychol. 2010 Oct 13;1:160. doi: 10.3389/fpsyg.2010.00160. eCollection 2010.

Abstract

A major goal in perceptual neuroscience is to understand how signals from different sensory modalities are combined to produce stable and coherent representations. We previously investigated interactions between audition and touch, motivated by the fact that both modalities are sensitive to environmental oscillations. In our earlier study, we characterized the effect of auditory distractors on tactile frequency and intensity perception. Here, we describe the converse experiments examining the effect of tactile distractors on auditory processing. Because the two studies employ the same psychophysical paradigm, we combined their results for a comprehensive view of how auditory and tactile signals interact and how these interactions depend on the perceptual task. Together, our results show that temporal frequency representations are perceptually linked regardless of the attended modality. In contrast, audio-tactile loudness interactions depend on the attended modality: Tactile distractors influence judgments of auditory intensity, but judgments of tactile intensity are impervious to auditory distraction. Lastly, we show that audio-tactile loudness interactions depend critically on stimulus timing, while pitch interactions do not. These results reveal that auditory and tactile inputs are combined differently depending on the perceptual task. That distinct rules govern the integration of auditory and tactile signals in pitch and loudness perception implies that the two are mediated by separate neural mechanisms. These findings underscore the complexity and specificity of multisensory interactions.

摘要

知觉神经科学的一个主要目标是理解来自不同感觉模态的信号如何组合以产生稳定和连贯的表示。我们之前研究了听觉和触觉之间的相互作用,这是因为这两种模态都对环境振荡敏感。在我们之前的研究中,我们描述了听觉干扰对触觉频率和强度感知的影响。在这里,我们描述了相反的实验,研究了触觉干扰对听觉处理的影响。由于这两项研究采用了相同的心理物理范式,我们将它们的结果结合起来,以全面了解听觉和触觉信号如何相互作用,以及这些相互作用如何取决于感知任务。总之,我们的结果表明,无论关注的模态如何,时间频率表示在感知上是相互关联的。相比之下,音频-触觉响度相互作用取决于关注的模态:触觉干扰会影响对听觉强度的判断,但对触觉强度的判断不受听觉干扰的影响。最后,我们表明音频-触觉响度相互作用严重依赖于刺激定时,而音高相互作用则不依赖。这些结果表明,听觉和触觉输入的组合方式因感知任务而异。不同的规则支配着音高和响度感知中听觉和触觉信号的整合,这意味着两者由单独的神经机制介导。这些发现强调了多感觉相互作用的复杂性和特异性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f471/3157934/f5d0a0daa569/fpsyg-01-00160-g001.jpg

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