Bizley Jennifer K, Jones Gareth P, Town Stephen M
UCL Ear Institute, 332 Gray's Inn Road, London WC1X 8EE, UK.
UCL Ear Institute, 332 Gray's Inn Road, London WC1X 8EE, UK.
Curr Opin Neurobiol. 2016 Oct;40:31-37. doi: 10.1016/j.conb.2016.06.003. Epub 2016 Jun 23.
Multisensory integration is observed in many subcortical and cortical locations including primary and non-primary sensory cortex, and higher cortical areas including frontal and parietal cortex. During unisensory perceptual tasks many of these same brain areas show neural signatures associated with decision-making. It is unclear whether multisensory representations in sensory cortex directly inform decision-making in a multisensory task, or if cross-modal signals are only combined after the accumulation of unisensory evidence at a final decision-making stage in higher cortical areas. Manipulations of neuronal activity are required to establish causal roles for given brain regions in multisensory perceptual decision-making, and so far indicate that distributed networks underlie multisensory decision-making. Understanding multisensory integration requires synthesis of small-scale pathway specific and large-scale network level manipulations.
在许多皮质下和皮质区域都观察到了多感官整合,包括初级和非初级感觉皮层,以及包括额叶和顶叶皮层在内的高级皮层区域。在单感官感知任务中,许多相同的脑区会显示出与决策相关的神经特征。目前尚不清楚感觉皮层中的多感官表征是否直接为多感官任务中的决策提供信息,或者跨模态信号是否仅在高级皮层区域的最终决策阶段积累单感官证据后才进行整合。需要对神经元活动进行操纵,以确定特定脑区在多感官感知决策中的因果作用,目前的研究表明,分布式网络是多感官决策的基础。理解多感官整合需要综合小规模的通路特异性和大规模的网络水平操纵。