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The spread of attention across modalities and space in a multisensory object.

机译:跨多感官对象中的形态和空间的注意力分散。

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Attending to a stimulus is known to enhance the neural responses to that stimulus. Recent experiments on visual attention have shown that this modulation can have object-based characteristics, such that, when certain parts of a visual object are attended, other parts automatically also receive enhanced processing. Here, we investigated whether visual attention can modulate neural responses to other components of a multisensory object defined by synchronous, but spatially disparate, auditory and visual stimuli. The audiovisual integration of such multisensory stimuli typically leads to mislocalization of the sound toward the visual stimulus (ventriloquism illusion). Using event-related potentials and functional MRI, we found that the brain's response to task-irrelevant sounds occurring synchronously with a visual stimulus from a different location was larger when that accompanying visual stimulus was attended versus unattended. The event-related potential effect consisted of sustained, frontally distributed, brain activity that emerged relatively late in processing, an effect resembling attention-related enhancements seen at earlier latencies during intramodal auditory attention. Moreover, the functional MRI data confirmed that the effect included specific enhancement of activity in auditory cortex. These findings indicate that attention to one sensory modality can spread to encompass simultaneous signals from another modality, even when they are task-irrelevant and from a different location. This cross-modal attentional spread appears to reflect an object-based, late selection process wherein spatially discrepant auditory stimulation is grouped with synchronous attended visual input into a multisensory object, resulting in the auditory information being pulled into the attentional spotlight and bestowed with enhanced processing.
机译:已知刺激会增强对该刺激的神经反应。最近关于视觉注意力的实验表明,这种调制可以具有基于对象的特征,这样,当视觉对象的某些部分受到关注时,其他部分也会自动接受增强的处理。在这里,我们研究了视觉注意力是否可以调节由同步但在空间上不同,听觉和视觉刺激所定义的多感官对象其他组件的神经反应。这种多感官刺激的视听整合通常会导致声音朝视觉刺激方向偏位(文风错觉)。使用事件相关电位和功能性MRI,我们发现,与伴随无意识的视觉刺激相比,与来自不同位置的视觉刺激同步发生的与任务无关的声音的大脑响应更大。事件相关的潜在影响包括持续的,前部分布的大脑活动,这些活动在处理中出现得相对较晚,类似于内模式听觉注意中较早的潜伏期所看到的注意相关增强。此外,功能性MRI数据证实该作用包括听觉皮层活动的特异性增强。这些发现表明,对一种感觉方式的关注可以扩展到涵盖来自另一种方式的同时信号,即使它们与任务无关并且来自不同的位置也是如此。这种跨模态的注意力分散似乎反映了基于对象的后期选择过程,其中空间差异的听觉刺激与同步到场的视觉输入组合到一个多感官对象中,导致听觉信息被拉入注意力聚光灯并得到增强的处理。

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