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Spatial Language Processing in the Blind: Evidence for a Supramodal Representation and Cortical Reorganization

机译:盲人中的空间语言处理:超模态表示和皮层重组的证据

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摘要

Neuropsychological and imaging studies have shown that the left supramarginal gyrus (SMG) is specifically involved in processing spatial terms (e.g. above, left of), which locate places and objects in the world. The current fMRI study focused on the nature and specificity of representing spatial language in the left SMG by combining behavioral and neuronal activation data in blind and sighted individuals. Data from the blind provide an elegant way to test the supramodal representation hypothesis, i.e. abstract codes representing spatial relations yielding no activation differences between blind and sighted. Indeed, the left SMG was activated during spatial language processing in both blind and sighted individuals implying a supramodal representation of spatial and other dimensional relations which does not require visual experience to develop. However, in the absence of vision functional reorganization of the visual cortex is known to take place. An important consideration with respect to our finding is the amount of functional reorganization during language processing in our blind participants. Therefore, the participants also performed a verb generation task. We observed that only in the blind occipital areas were activated during covert language generation. Additionally, in the first task there was functional reorganization observed for processing language with a high linguistic load. As the visual cortex was not specifically active for spatial contents in the first task, and no reorganization was observed in the SMG, the latter finding further supports the notion that the left SMG is the main node for a supramodal representation of verbal spatial relations.
机译:神经心理学和影像学研究表明,左上颌上回(SMG)特别参与处理空间术语(例如上方,左侧),以定位世界上的位置和物体。当前的功能磁共振成像研究集中在盲人和有眼力的个体中,通过结合行为和神经元激活数据,以左手SMG代表空间语言的性质和特异性。来自盲人的数据提供了一种检验超模态表示假设的优雅方法,即抽象代码表示空间关系,在盲人和视力之间不会产生激活差异。的确,在空间语言处理过程中,盲人和有视力的人都激活了左SMG,这暗示了空间和其他维度关系的超模态表示,不需要视觉经验即可发展。然而,在没有视觉的情况下,已知发生了视觉皮层的功能重组。关于我们的发现,一个重要的考虑因素是盲人参与者在语言处理过程中的功能重组量。因此,参与者还执行了动词生成任务。我们观察到在隐性语言生成过程中仅在枕骨盲区被激活。另外,在第一个任务中,观察到功能重组,以处理具有高语言负荷的语言。由于视觉皮层在第一个任务中并不特别活跃于空间内容,并且在SMG中未观察到任何重组,因此后者的发现进一步支持了以下观点,即左SMG是言语空间关系的超模态表示的主要节点。

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