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听觉增强视觉闪光感知:时间和空间因素以及刺激强度的影响。

Auditory enhancement of visual phosphene perception: the effect of temporal and spatial factors and of stimulus intensity.

机构信息

Department of Psychology, University of Milano-Bicocca, Milano, Italy.

出版信息

Neurosci Lett. 2010 Jun 25;477(3):109-14. doi: 10.1016/j.neulet.2010.04.044. Epub 2010 Apr 27.

Abstract

Multisensory integration of information from different sensory modalities is an essential component of perception. Neurophysiological studies have revealed that audiovisual interactions occur early in time and even within sensory cortical areas believed to be modality-specific. Here we investigated the effect of auditory stimuli on visual perception of phosphenes induced by transcranial magnetic stimulation (TMS) delivered to the occipital visual cortex. TMS applied at subthreshold intensity led to the perception of phosphenes when coupled with an auditory stimulus presented within close spatiotemporal congruency at the expected retinotopic location of the phosphene percept. The effect was maximal when the auditory stimulus preceded the occipital TMS pulse by 40 ms. Follow-up experiments confirmed a high degree of temporal and spatial specificity of this facilitatory effect. Furthermore, audiovisual facilitation was only present at subthreshold TMS intensity for the phosphenes, suggesting that suboptimal levels of excitability within unisensory cortices may be better suited for enhanced crossmodal interactions. Overall, our findings reveal early auditory-visual interactions due to the enhancement of visual cortical excitability by auditory stimuli. These interactions may reflect an underlying anatomical connectivity between unisensory cortices.

摘要

多感觉信息整合来自不同的感觉模态是感知的一个重要组成部分。神经生理学研究表明,听觉-视觉相互作用发生在时间上甚至在被认为是模态特异性的感觉皮质区域内。在这里,我们研究了听觉刺激对经颅磁刺激(TMS)诱导的光幻视的视觉感知的影响,TMS 施加于阈下强度,当与听觉刺激在预期的光幻视感知的视网膜对应位置以接近时空一致性呈现时,会导致光幻视的感知。当听觉刺激在枕叶 TMS 脉冲之前 40 毫秒出现时,效果最大。后续实验证实了这种促进效应具有高度的时间和空间特异性。此外,只有在阈下 TMS 强度下,光幻视才会出现视听促进作用,这表明单感觉皮质内的兴奋性水平不理想可能更适合增强跨感觉相互作用。总的来说,我们的发现揭示了由于听觉刺激增强视觉皮质兴奋性而导致的早期听觉-视觉相互作用。这些相互作用可能反映了单感觉皮质之间的潜在解剖连接。

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