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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Neural correlates of auditory-visual stimulus onset asynchrony detection.
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Neural correlates of auditory-visual stimulus onset asynchrony detection.

机译:神经相关的听觉-视觉刺激发作异步检测。

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摘要

Intersensory temporal synchrony is an ubiquitous sensory attribute that has proven to be critical for binding multisensory inputs, sometimes erroneously leading to dramatic perceptual illusions. However, little is known about how the brain detects temporal synchrony between multimodal sensory inputs. We used positron emission tomography to demonstrate that detecting auditory-visual stimulus onset asynchrony activates a large-scale neural network of insular, posterior parietal, prefrontal, and cerebellar areas with the highest and task-specific activity localized to the right insula. Interregional covariance analysis further showed significant task-related functional interactions between the insula, the posterior thalamus, and superior colliculus. Based on these results and the available electrophysiological and anatomical connectivity data in animals, we propose that the insula, via its known short-latency connections with the tectal system, mediates temporally defined auditory-visual interaction at an early stage of cortical processing permitting phenomena such as the ventriloquist and the McGurk illusions.
机译:感觉间时间同步是普遍存在的感觉属性,已被证明对于绑定多感觉输入至关重要,有时会错误地导致戏剧性的感觉错觉。然而,关于大脑如何检测多模式感觉输入之间的时间同步知之甚少。我们使用正电子发射断层摄影术来证明检测听觉-视觉刺激发作的异步性会激活岛状,顶叶后,前额叶和小脑区域的大规模神经网络,其中最大的和特定于任务的活动位于右侧的岛状区域。区域间协方差分析进一步显示了岛上,丘脑后部和上丘之间重要的与任务相关的功能相互作用。根据这些结果以及动物中可用的电生理和解剖学连通性数据,我们建议该岛状体通过其与枕骨系统的已知短时延连接,在皮质处理的早期阶段介导时间定义的听觉-视觉相互作用,从而允许出现以下现象:作为口技表演者和McGurk的幻想。

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