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Perceptual Fusion and Stimulus Coincidence in the Cross-Modal Integration of Speech

机译:语音的跨模态整合中的知觉融合和刺激重合

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摘要

Human speech perception is profoundly influenced by vision. Watching a speaker's mouth movements significantly improves comprehension, both for normal listeners in noisy environments and especially for the hearing impaired. A number of brain regions have been implicated in audiovisual speech tasks, but little evidence distinguishes them functionally. In an event-related functional magnetic resonance imaging study, we differentiate neural systems that evaluate cross-modal coincidence of the physical stimuli from those that mediate perceptual binding. Regions consistently involved in perceptual fusion per se included Heschl's gyrus, superior temporal sulcus, middle intraparietal sulcus, and inferior frontal gyrus. Successful fusion elicited activity biased toward the left hemisphere, although failed cross-modal binding recruited regions in both hemispheres. A broad network of other areas, including the superior colliculus, anterior insula, and anterior intraparietal sulcus, were more involved with evaluating the spatiotemporal correspondence of speech stimuli, regardless of a subject's perception. All of these showed greater activity to temporally offset stimuli than to audiovisually synchronous stimuli. Our results demonstrate how elements of the cross-modal speech integration network differ in their sensitivity to physical reality versus perceptual experience.
机译:人类的言语感知受到视觉的深刻影响。对于嘈杂环境中的正常听众,尤其是对于听力受损的听众,观看说话者的嘴巴动作可以显着提高他们的理解力。许多大脑区域已经牵涉到视听语音任务中,但是很少有证据可以从功能上区分它们。在一项与事件相关的功能磁共振成像研究中,我们将评估物理刺激的交叉模式重合的神经系统与介导知觉结合的神经系统区分开。持续参与知觉融合本身的区域包括赫氏回旋,颞上沟,顶壁中沟和额下回。成功的融合引发了偏向左半球的活动,尽管两个半球的交叉模式结合募集区域失败。不论受试者的感知如何,其他区域的广泛网络(包括上丘,前岛岛和顶顶前沟)都更多地参与评估言语刺激的时空对应关系。与视听同步刺激相比,所有这些都显示出在时间上抵消刺激更大的活动。我们的结果表明,跨模态语音集成网络的元素在对物理现实和感知体验的敏感性方面如何不同。

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