首页> 外文期刊>Archives Italiennes de Biologie >TACTILE SPATIAL WORKING MEMORY ACTIVATES THE DORSAL EXTRASTRIATE CORTICAL PATHWAY IN CONGENITALLY BLIND INDIVIDUALS
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TACTILE SPATIAL WORKING MEMORY ACTIVATES THE DORSAL EXTRASTRIATE CORTICAL PATHWAY IN CONGENITALLY BLIND INDIVIDUALS

机译:触觉的空间工作记忆激活了先天性盲人背侧硬脑膜皮质的通路

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In sighted individuals, both the visual and tactile version of the same spatial working memory task elicited neural responses in the dorsal "where" cortical pathway (Ricciardi et al., 2006). Whether the neural response during the tactile working memory task is due to visually-based spatial imagery or rather reflects a more abstract, supramodal organization of the dorsal cortical pathway remains to be determined. TO understand the role of visual experience on the functional organization of the dorsal cortical stream, using functional magnetic resonance imaging (fMRI) here we examined brain response in four individuals with congenital or early blindness and no visual recollection, while they performed the same tactile spatial working memory task, a one-back recognition of 2D and 3D matrices. The blind subjects showed a significant activation in bilateral posterior parietal cortex, dorsolateral and inferior prefrontal areas, precuneus, lateral occipital cortex, and cerebellum. Thus, dorsal occipito-parietal areas are involved in mental imagery dealing with spatial components in subjects without prior visual experience and in response to a non-visual task. These data indicate that recruitment of the dorsal cortical pathway in response to the tactile spatial working memory task is not mediated by visually-based imagery and that visual experience is not a prerequisite for the development of a more abstract functional organization of the dorsal stream, These findings, along with previous data indicating a similar supramodal functional organization within the ventral cortical pathway and the motion processing brain regions, may contribute to explain how individuals who are born deprived of sight are able to interact effectively with the surrounding world.
机译:在有视力的个体中,相同的空间工作记忆任务的视觉和触觉版本都在背侧“皮层”皮质途径中引起神经反应(Ricciardi等,2006)。触觉工作记忆任务期间的神经反应是否是由于基于视觉的空间图像所致,还是反映了背侧皮质通路的更抽象的超模态组织,尚待确定。为了了解视觉体验在背皮质流功能组织中的作用,我们在这里使用功能磁共振成像(fMRI)检查了四名先天性或早期失明且无视觉记忆的人的大脑反应,而他们的触觉空间相同工作记忆任务,即2D和3D矩阵的单向识别。盲人受试者的双侧后顶叶皮层,背外侧和前额叶下区域,前突神经,枕后外侧皮层和小脑明显激活。因此,背部枕顶区参与了心理成像,涉及对象的空间成分,而没有事先的视觉经验,并且响应于非视觉任务。这些数据表明,基于触觉空间工作记忆任务的背侧皮质通路的募集不是由基于视觉的图像介导的,并且视觉体验并不是开发背流更抽象的功能组织的前提,这些这些发现以及先前的数据表明腹侧皮质通路和运动处理脑区域内存在类似的超峰功能组织,这可能有助于解释出生时无视力的人如何与周围世界进行有效互动。

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