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Functional specialization for auditory–spatial processing in the occipital cortex of congenitally blind humans

机译:先天性盲人枕叶皮质听觉空间处理的功能专业化

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摘要

The study of the congenitally blind (CB) represents a unique opportunity to explore experience-dependant plasticity in a sensory region deprived of its natural inputs since birth. Although several studies have shown occipital regions of CB to be involved in nonvisual processing, whether the functional organization of the visual cortex observed in sighted individuals (SI) is maintained in the rewired occipital regions of the blind has only been recently investigated. In the present functional MRI study, we compared the brain activity of CB and SI processing either the spatial or the pitch properties of sounds carrying information in both domains (i.e., the same sounds were used in both tasks), using an adaptive procedure specifically designed to adjust for performance level. In addition to showing a substantial recruitment of the occipital cortex for sound processing in CB, we also demonstrate that auditory–spatial processing mainly recruits the right cuneus and the right middle occipital gyrus, two regions of the dorsal occipital stream known to be involved in visuospatial/motion processing in SI. Moreover, functional connectivity analyses revealed that these reorganized occipital regions are part of an extensive brain network including regions known to underlie audiovisual spatial abilities (i.e., intraparietal sulcus, superior frontal gyrus). We conclude that some regions of the right dorsal occipital stream do not require visual experience to develop a specialization for the processing of spatial information and to be functionally integrated in a preexisting brain network dedicated to this ability.
机译:对先天性盲人(CB)的研究提供了一个独特的机会,可以在其出生后就失去其自然输入的感觉区域中探索依赖经验的可塑性。尽管几项研究表明CB的枕叶区域参与了非视觉加工,但直到最近才研究了在盲人的重新连接的枕叶区域中是否维持了在有视觉能力的个体(SI)中观察到的视觉皮层的功能组织。在目前的功能性MRI研究中,我们使用专门设计的自适应程序,比较了CB和SI处理两个区域中携带信息的声音的空间或音高特性(即,在两个任务中使用了相同的声音)的大脑活动。根据性能水平进行调整。除了显示出大量招募枕叶皮质以进行CB的声音处理外,我们还证明了听觉-空间加工主要募集了右枕骨和右枕中回,这两个枕骨后流是已知与视觉空间相关的。 / SI中的运动处理。此外,功能连通性分析表明,这些重组后的枕骨区域是广泛的脑部网络的一部分,包括已知是视听空间能力基础的区域(即顶顶沟,额额上回)。我们得出的结论是,右背枕叶流的某些区域不需要视觉经验即可开发出专门用于处理空间信息的功能,并且不需要在功能上整合到专用于此功能的预先存在的大脑网络中。

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