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首页> 外文期刊>The European Journal of Neuroscience >Onset timing of cross-sensory activations and multisensory interactions in auditory and visual sensory cortices.
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Onset timing of cross-sensory activations and multisensory interactions in auditory and visual sensory cortices.

机译:跨感觉激活和听觉和视觉感觉皮层中的多感觉相互作用的开始时间。

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摘要

Here we report early cross-sensory activations and audiovisual interactions at the visual and auditory cortices using magnetoencephalography (MEG) to obtain accurate timing information. Data from an identical fMRI experiment were employed to support MEG source localization results. Simple auditory and visual stimuli (300-ms noise bursts and checkerboards) were presented to seven healthy humans. MEG source analysis suggested generators in the auditory and visual sensory cortices for both within-modality and cross-sensory activations. fMRI cross-sensory activations were strong in the visual but almost absent in the auditory cortex; this discrepancy with MEG possibly reflects the influence of acoustical scanner noise in fMRI. In the primary auditory cortices (Heschl's gyrus) the onset of activity to auditory stimuli was observed at 23 ms in both hemispheres, and to visual stimuli at 82 ms in the left and at 75 ms in the right hemisphere. In the primary visual cortex (Calcarine fissure) the activations to visual stimuli started at 43 ms and to auditory stimuli at 53 ms. Cross-sensory activations thus started later than sensory-specific activations, by 55 ms in the auditory cortex and by 10 ms in the visual cortex, suggesting that the origins of the cross-sensory activations may be in the primary sensory cortices of the opposite modality, with conduction delays (from one sensory cortex to another) of 30-35 ms. Audiovisual interactions started at 85 ms in the left auditory, 80 ms in the right auditory and 74 ms in the visual cortex, i.e., 3-21 ms after inputs from the two modalities converged.
机译:在这里,我们报告使用磁脑电图(MEG)在视觉和听觉皮层早期交叉感觉激活和视听交互,以获取准确的计时信息。来自相同fMRI实验的数据用于支持MEG源定位结果。简单的听觉和视觉刺激(300毫秒的噪音爆发和棋盘格)被呈现给七个健康的人类。 MEG来源分析建议在听觉和视觉感觉皮层中的生成器用于模态内和跨感觉激活。 fMRI的交叉感觉激活在视觉上很强,但是在听觉皮层中几乎没有。与MEG的差异可能反映了fMRI中声学扫描仪噪声的影响。在初级听觉皮层(赫氏回)中,两个半球的听觉刺激均在23 ms发生,左半球的视觉刺激在82 ms处开始,右半球的视觉刺激在75 ms处开始。在初级视觉皮层(Calcarine裂隙)中,视觉刺激的激活时间为43 ms,听觉刺激的激活时间为53 ms。因此,跨感觉激活比感觉特异性激活晚了,在听觉皮层中开始了55 ms,在视觉皮层中开始了10 ms,这表明交叉感觉激活的起源可能是在相反形态的主要感觉皮层中。 ,其传导延迟(从一个感觉皮层到另一个感觉皮层)为30-35毫秒。视听互动开始于左听觉的85毫秒,右听觉的80毫秒和视觉皮层的74毫秒,即两种模式的输入融合后的3-21毫秒。

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