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Cortical EEG components that reflect inverse effectiveness during visuotactile integration processing

机译:在视触觉整合过程中反映反效力的皮质EEG成分

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Multisensory integration is required to interpret information from multiple senses and then produce the appropriate behavioral output. Inverse effectiveness, a phenomenon in which weaker stimuli induce greater activation of multisensory neurons than do stronger stimuli, is an essential component of multisensory integration. The superior colliculus is especially abundant in multisensory neurons with properties of inverse effectiveness. However, multisensory neurons are distributed throughout the brain, suggesting that a wide range of brain regions are involved in generating multisensory behavior in addition to the superior colliculus. In this study, we aimed to use scalp EEG to elucidate the cortical responses that respond to multisensory stimuli according to the principle of inverse effectiveness. By modulating the intensity of the tactile aspect of a simultaneous visuotactile stimulus, we explored the time frequency component of scalp EEG waveforms produced during multi-sensory stimulation. Using this method, we determined the relative values and temporal dynamics of the increment of power spectrum (event-related spectrum perturbation) and phase coherence across trials (e.g., inter-trial phase coherency) produced by multisensory stimulation compared to unisensoiy stimulation. In the somatosensory and anterior cingulate cortices, we observed significant differences in the inter-trial phase coherence of the theta band oscillation 200-400 ms post-stimulus, in response to visuotactile (multisensory) and tactile (unisensory) stimulation, while no differences were found in later time windows and other cortical areas. These results suggest that inverse effectiveness is an important aspect of multi-sensory processing in the somato-sensory and frontal cerebral cortices. (C) 2014 Elsevier B.V. All rights reserved.
机译:需要多感官整合来从多种意义上解释信息,然后产生适当的行为输出。逆向有效性是一种多感官整合的重要组成部分,在这种现象中,较弱的刺激会比较强的刺激诱导更多的感觉神经元激活。上丘在多感觉神经元中特别丰富,具有相反的功效。但是,多感觉神经元分布在整个大脑中,这表明除了上丘以外,广泛的大脑区域还参与产生多感觉行为。在这项研究中,我们旨在使用头皮脑电图,根据逆向有效性的原理,阐明对多感觉刺激作出反应的皮质反应。通过调制同时感触刺激的触觉方面的强度,我们探索了在多感觉刺激过程中产生的头皮脑电图波形的时频分量。使用这种方法,我们确定了与无感刺激相比,通过多感官刺激产生的整个试验中功率谱的增量(事件相关的光谱微扰)和相位相干性(例如,试验间相位相干性)的相对值和时间动态。在体感和前扣带回皮层中,我们观察到刺激后200-400 ms theta带振荡的trial相干相干性存在显着差异,响应于触觉(多感觉)和触觉(单感觉)刺激,而没有差异在以后的时间窗口和其他皮质区域中发现。这些结果表明,逆有效性是躯体感觉和额叶大脑皮层中多感觉处理的重要方面。 (C)2014 Elsevier B.V.保留所有权利。

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