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TMS modulation of visual and auditory processing in the posterior parietal cortex

机译:TMS调节顶叶后皮质的视觉和听觉处理

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Audio-visual stimuli typically yield faster responses than isolated modality-specific ones. This crossmodal speed advantage depends upon efficient multisensory integration mechanisms in the brain. Here, we used repetitive transcranial magnetic stimulation (rTMS) to address the role of the posterior parietal cortex, in particular of the inferior parietal lobule (IPL), in speeding up responses to crossmodal stimuli. The results show that rTMS over IPL impairs the response to contralateral modality-specific visual and auditory targets without affecting the response speed advantage following audio-visual targets. Furthermore, this speed advantage is subserved by a neural coactivation mechanism suggesting a summation in a given neural site. Control rTMS over V1 impaired only contralateral visual responses without affecting the response to auditory or audio-visual targets. These results suggest that the response speed advantage for crossmodal targets is maintained in spite of the IPL interference that impairs modality-specific responses. The possible role of alternative sites for the audio-visual advantage, such as the superior colliculus, is discussed. Keywords Multisensory - Superior colliculus - Parietal cortex - Auditory - Visual - rTMS
机译:视听刺激通常会比孤立的特定于形式的刺激产生更快的响应。这种跨峰速度优势取决于大脑中有效的多感觉整合机制。在这里,我们使用重复经颅磁刺激(rTMS)来解决顶叶后皮质,特别是下顶叶(IPL)在加速对交叉峰刺激的反应中的作用。结果表明,基于IPL的rTMS削弱了对对侧模态特定的视觉和听觉目标的响应,而不会影响视听目标后的响应速度优势。此外,这种速度优势还可以通过神经共激活机制得到保留,该机制表明了给定神经部位的总和。对V1的控制rTMS仅损害对侧视觉反应,而不会影响对听觉或视听目标的反应。这些结果表明,尽管IPL干扰削弱了特定于模态的响应,但仍保留了交叉模式目标的响应速度优势。讨论了替代站点对视听优势的可能作用,例如上丘。多感官-上丘-顶叶皮层-听觉-视觉-rTMS

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