Neuromodulation of crossmodal influences on visual cortex excitability

S. Convento, Chiara Galantini, N. Bolognini, G. Vallar
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Abstract

Crossmodal interactions occur not only within brain regions deemed to be heteromodal, but also within primary sensory areas, traditionally considered as modality-specific. So far, mechanisms of crossmodal interactions in primary visual areas remain largely unknown. In the present study, we explored the effect of crossmodal stimuli on phosphene perception, induced by single-pulse transcranial magnetic stimulation (sTMS) delivered to the occipital visual cortex. In three experiments, we showed that redundant auditory and/or tactile information facilitated the detection of phosphenes induced by occipital sTMS, applied at sub-threshold intensity, which also increased their level of brightness, with the maximal enhancement occurring for trimodal stimulus combinations. Such crossmodal enhancement can be further boosted by the brain polarization of heteromodal areas mediating crossmodal links in spatial attention. Specifically, anodal transcranial direct current stimulation (tDCS) of both the occipital and the parietal cortices facilitated phosphene detection under unimodal conditions, whereas anodal tDCS of the parietal and temporal cortices enhanced phosphene detection selectively under crossmodal conditions, when auditory or tactile stimuli were combined with occipital sTMS. Overall, crossmodal interactions can enhance neural excitability within low-level visual areas, and tDCS can be used for boosting such crossmodal influences on visual responses, likely affecting mechanisms of crossmodal spatial attention involving feedback modulation from heteromodal areas on sensory-specific cortices. TDCS can effectively facilitate the integration of multisensory signals originating from the external world, hence improving visual perception.
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神经调节对视觉皮层兴奋性的影响
跨模态相互作用不仅发生在被认为是异模态的大脑区域内,也发生在传统上被认为是模态特异性的主要感觉区域内。到目前为止,初级视觉区域的跨模式相互作用机制仍然很大程度上是未知的。在本研究中,我们探讨了通过单脉冲经颅磁刺激(sTMS)传递到枕部视觉皮层的跨模刺激对光幻视感知的影响。在三个实验中,我们发现冗余的听觉和/或触觉信息促进了枕部sTMS在亚阈值强度下诱导的光幻视的检测,这也增加了它们的亮度水平,在三模刺激组合中出现了最大的增强。这种跨模增强可以通过介导空间注意跨模联系的异模区域的大脑极化进一步增强。具体来说,枕叶和顶叶皮质的阳极经颅直流刺激(tDCS)在单峰条件下促进了磷光烯的检测,而当听觉或触觉刺激与枕叶sTMS相结合时,顶叶和颞叶皮质的阳极tDCS在跨峰条件下选择性地增强了磷光烯的检测。总的来说,跨模态相互作用可以增强低水平视觉区域内的神经兴奋性,tDCS可以用于增强这种对视觉反应的跨模态影响,可能影响跨模态空间注意的机制,包括来自异模态区域对感觉特异性皮质的反馈调制。TDCS可以有效地促进来自外部世界的多感官信号的整合,从而改善视觉感知。
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Seeing and Perceiving
Seeing and Perceiving BIOPHYSICS-PSYCHOLOGY
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