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首页> 外文期刊>Frontiers in Psychology >Amplitude-modulated stimuli reveal auditory-visual interactions in brain activity and brain connectivity
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Amplitude-modulated stimuli reveal auditory-visual interactions in brain activity and brain connectivity

机译:调幅刺激揭示了大脑活动和大脑连接性中的听觉-视觉相互作用

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The temporal congruence between auditory and visual signals coming from the same source can be a powerful means by which the brain integrates information from different senses. To investigate how the brain uses temporal information to integrate auditory and visual information from continuous yet unfamiliar stimuli, we used amplitude-modulated tones and size-modulated shapes with which we could manipulate the temporal congruence between the sensory signals. These signals were independently modulated at a slow or a fast rate. Participants were presented with auditory-only, visual-only, or auditory-visual (AV) trials in the fMRI scanner. On AV trials, the auditory and visual signal could have the same (AV congruent) or different modulation rates (AV incongruent). Using psychophysiological interaction analyses, we found that auditory regions showed increased functional connectivity predominantly with frontal regions for AV incongruent relative to AV congruent stimuli. We further found that superior temporal regions, shown previously to integrate auditory and visual signals, showed increased connectivity with frontal and parietal regions for the same contrast. Our findings provide evidence that both activity in a network of brain regions and their connectivity are important for AV integration, and help to bridge the gap between transient and familiar AV stimuli used in previous studies.
机译:来自同一来源的听觉和视觉信号之间的时间一致性可以成为大脑整合来自不同感官的信息的有力手段。为了研究大脑如何利用时间信息来整合来自连续但不熟悉的刺激的听觉和视觉信息,我们使用了振幅调制的音调和大小调制的形状,通过它们我们可以操纵感觉信号之间的时间一致性。这些信号以慢速或快速独立调制。在fMRI扫描仪中向参与者展示了仅听觉,仅视觉或听觉(AV)试验。在进行房颤试验时,听觉和视觉信号可能具有相同的(房颤一致)或不同的调制率(房颤不一致)。使用心理生理学相互作用分析,我们发现听觉区域显示功能连接增加,主要是额叶区域相对于AV一致刺激而言与AV不一致。我们还发现,先前显示的整合听觉和视觉信号的颞上叶区域,在相同对比度下,与额叶和顶叶区域的连接性增强。我们的发现提供了证据,表明大脑区域网络中的活动及其连接性对于AV整合很重要,并有助于弥合先前研究中使用的短暂性和熟悉性AV刺激之间的差距。

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