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Using in vivo probabilistic tractography to reveal two segregated dorsal 'language-cognitive' pathways in the human brain

机译:使用体内概率束摄影术揭示人脑中两个分离的背侧“语言认知”途径

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摘要

Primate studies have recently identified the dorsal stream as constituting multiple dissociable pathways associated with a range of specialized cognitive functions. To elucidate the nature and number of dorsal pathways in the human brain, the current study utilized in vivo probabilistic tractography to map the structural connectivity associated with subdivisions of the left supramarginal gyrus (SMG). The left SMG is a prominent region within the dorsal stream, which has recently been parcellated into five structurally-distinct regions which possess a dorsal-ventral (and rostral-caudal) organisation, postulated to reflect areas of functional specialisation. The connectivity patterns reveal a dissociation of the arcuate fasciculus into at least two segregated pathways connecting frontal-parietal-temporal regions. Specifically, the connectivity of the inferior SMG, implicated as an acoustic-motor speech interface, is carried by an inner/ventro-dorsal arc of fibres, whilst the pathways of the posterior superior SMG, implicated in object use and cognitive control, forms a parallel outer/dorso-dorsal crescent.
机译:灵长类动物研究最近已确定背水流构成与多种专门的认知功能相关的多个可分离途径。为了阐明人脑中背侧通路的性质和数量,本研究利用体内概率束摄影术绘制了与左上指回(SMG)细分相关的结构连通性。左SMG是背侧流中的一个突出区域,最近已被分成五个结构上不同的区域,这些区域具有背腹(和尾侧-尾侧)组织,并假定可以反映功能专业领域。连通性模式揭示了弓形束分离成至少两个分隔的连接前额顶颞区的通路。具体而言,下层SMG的连通性(通过声学-运动语音接口暗示)由纤维的内/背-背弧承载,而后上层SMG的通路(涉及对象使用和认知控制)形成平行的外部/背-月牙。

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