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神经磁响应揭示视听同步的皮质时间。

Neuromagnetic responses reveal the cortical timing of audiovisual synchrony.

机构信息

Department of Neuroscience and Imaging, G. d'Annunzio University, Chieti, Italy.

出版信息

Neuroscience. 2011 Oct 13;193:182-92. doi: 10.1016/j.neuroscience.2011.07.018. Epub 2011 Jul 20.

Abstract

Multisensory processing involving visual and auditory inputs is modulated by their relative temporal offsets. In order to assess whether multisensory integration alters the activation timing of primary visual and auditory cortices as a function of the temporal offsets between auditory and visual stimuli, a task was designed in which subjects had to judge the perceptual simultaneity of the onset of visual stimuli and brief acoustic tones. These were presented repeatedly with three different inter-stimulus intervals that were chosen to meet three perceptual conditions: (1) physical synchrony perceived as synchrony by subjects (SYNC); (2) physical asynchrony perceived as asynchrony (ASYNC); (3) physical asynchrony perceived ambiguously (AMB, i.e. 50% perceived as synchrony, 50% as asynchrony). Magnetoencephalographic activity was recorded during crossmodal sessions and unimodal control sessions. The activation of primary visual and auditory cortices peaked at a longer latency for the crossmodal conditions as compared to the unimodal conditions. Moreover, the latency in the auditory cortex was longer in the SYNC than in the ASYNC condition, whereas in the visual cortex the latency in the AMB condition was longer than in the ASYNC condition. These findings suggest that multisensory processing affects temporal dynamics already in primary cortices, that such activity can differ regionally and can be sensitive to the temporal offsets of multisensory inputs. In addition, in the AMB condition the conscious awareness of asynchrony might be associated to a later activation of the primary auditory cortex.

摘要

多感觉处理包括视觉和听觉输入,其受到它们相对时间偏移的调节。为了评估多感觉整合是否会根据听觉和视觉刺激之间的时间偏移改变主要视觉和听觉皮层的激活时间,设计了一项任务,要求受试者判断视觉刺激和短暂声音的起始的知觉同时性。这些以三种不同的刺激间间隔重复呈现,这些间隔选择以满足三种知觉条件:(1)被受试者感知为同步的物理同步(SYNC);(2)被感知为异步的物理异步(ASYNC);(3)被感知为模糊的物理异步(AMB,即 50%被感知为同步,50%被感知为异步)。在跨模态和单模态对照期间记录了脑磁图活动。与单模态条件相比,跨模态条件下主要视觉和听觉皮层的激活具有更长的潜伏期。此外,在 SYNC 条件下,听觉皮层的潜伏期比 ASYNC 条件长,而在 AMB 条件下,视觉皮层的潜伏期比 ASYNC 条件长。这些发现表明,多感觉处理已经在主要皮层中影响时间动态,这种活动可以在区域上有所不同,并且可以对多感觉输入的时间偏移敏感。此外,在 AMB 条件下,对异步的意识可能与初级听觉皮层的延迟激活有关。

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