首页> 外文OA文献 >Effects of Visual Experience on the Human MT+ Functional Connectivity Networks: An fMRI Study of Motion Perception in Sighted and Congenitally Blind Individuals.
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Effects of Visual Experience on the Human MT+ Functional Connectivity Networks: An fMRI Study of Motion Perception in Sighted and Congenitally Blind Individuals.

机译:视觉体验对人类MT +功能连接网络的影响:对有视力和先天性盲人的运动知觉的fMRI研究。

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摘要

Human middle temporal complex (hMT+) responds also to the perception of non-visual motion in both sighted and early blind individuals, indicating a supramodal organization. Visual experience, however, leads to a segregation of hMT+ into a more anterior subregion, involved in the supramodal representation of motion, and a posterior subregion that processes visual motion only. In contrast, in congenitally blind subjects tactile motion activates the full extent of hMT+. Here, we used fMRI to investigate brain areas functionally connected with the two hMT+ subregions (seeds) during visual and tactile motion in sighted and blind individuals. A common functional connectivity network for motion processing, including bilateral ventral and dorsal extrastriate, inferior frontal, middle and inferior temporal areas, correlated with the two hMT+ seeds both in sighted and blind individuals during either visual or tactile motion, independently from the sensory modality through which the information was acquired. Moreover, ventral premotor, somatosensory, and posterior parietal areas correlated only with the anterior but not with the posterior portion of hMT+ in sighted subjects, and with both hMT+ seeds in blind subjects. Furthermore, a correlation between middle temporal and occipital areas with primary somatosensory seeds was demonstrated across conditions in both sighted and blind individuals, suggesting a cortico-cortical pathway that conveys non-visual information from somatosensory cortex, through posterior parietal regions, to ventral extrastriate cortex. These findings expand our knowledge about the development of the functional organization within hMT+ by showing that distinct patterns of brain functional correlations originate from the anterior and posterior hMT+ subregions as a result of visual experience.
机译:人类中颞复合体(hMT +)也对有视力的和早期失明的人的非视觉运动的感知做出反应,这表明超模态组织。然而,视觉经验导致hMT +分离为更前部的子区域,后者参与运动的超模态表示,而后部的子区域仅处理视觉运动。相反,在先天失明的受试者中,触觉运动激活了hMT +的整个范围。在这里,我们使用功能磁共振成像技术研究了视力和盲人视觉和触觉运动过程中与两个hMT +子区域(种子)功能相关的大脑区域。用于运动处理的通用功能连接网络,包括双侧腹侧和背侧纹状体,额叶下,中部和颞下区域,在视觉或触觉运动过程中,与视力和盲人中的两个hMT +种子相关,与感觉方式无关所获取的信息。此外,在有视力的受试者中,腹侧前运动区,体感区和顶壁后区仅与hMT +的前部而不与hMT +的后部相关,在盲人受试者中均与hMT +种子相关。此外,在有视力和盲人的情况下,中颞叶和枕叶区域与主要体感种子之间的相关性得到了证明,表明皮质-皮质途径将来自体感皮质的非视觉信息通过后顶叶区传递到腹侧纹状体皮层。 。这些发现通过显示视觉功能的结果是大脑功能相关性的不同模式起源于前后hMT +子区域,从而扩展了我们对hMT +中功能组织发展的认识。

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