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Extended Broca's area in the functional connectome of language in adults: Combined cortical and subcortical single-subject analysis using fMRI and DTI tractography

机译:成人语言功能连接组中的Broca扩展区域:使用fMRI和DTI束线描记术的皮层和皮层下单对象组合分析

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Traditional models of the human language circuitry encompass three cortical areas, Broca's, Geschwind's and Wernicke's, and their connectivity through white matter fascicles. The neural connectivity deep to these cortical areas remains poorly understood, as does the macroscopic functional organization of the cortico-subcortical language circuitry. In an effort to expand current knowledge, we combined functional MRI (fMRI) and diffusion tensor imaging to explore subject-specific structural and functional macroscopic connectivity, focusing on Broca's area. Fascicles were studied using diffusion tensor imaging fiber tracking seeded from volumes placed manually within the white matter. White matter fascicles and fMRI-derived clusters (antonym-generation task) of positive and negative blood-oxygen-level-dependent (BOLD) signal were co-registered with 3-D renderings of the brain in 12 healthy subjects. Fascicles connecting BOLD-derived clusters were analyzed within specific cortical areas: Broca's, with the pars triangularis, the pars opercularis, and the pars orbitaris; Geschwind's and Wernicke's; the premotor cortex, the dorsal supplementary motor area, the middle temporal gyrus, the dorsal prefrontal cortex and the frontopolar region. We found a functional connectome divisible into three systems - anterior, superior and inferior - around the insula, more complex than previously thought, particularly with respect to a new extended Broca's area. The extended Broca's area involves two new fascicles: the operculo-premotor fascicle comprised of well-organized U-shaped fibers that connect the pars opercularis with the premotor region; and (2) the triangulo-orbitaris system comprised of intermingled U-shaped fibers that connect the pars triangularis with the pars orbitaris. The findings enhance our understanding of language function.
机译:人类语言电路的传统模型包括三个皮质区域,即Broca,Geschwind和Wernicke,以及它们通过白质束的连通性。深入了解这些皮质区域的神经连通性,皮质-皮质下语言电路的宏观功能组织也了解得很少。为了扩展当前的知识,我们将功能性MRI(fMRI)和扩散张量成像相结合,以研究对象特定的结构和功能性宏观连通性,并着重于Broca领域。使用扩散张量成像纤维跟踪从人工放置在白质中的体积播种来研究束。正,负血氧水平依赖性(BOLD)信号的白质束和fMRI衍生的簇(反义词生成任务)与12位健康受试者的大脑3-D渲染共同注册。在特定的皮质区域内分析了连接BOLD的簇的分册:Broca's,具有pars triangleis,pars opercularis和pars orbitaris;盖斯温德和韦尼克的;运动前皮层,背侧辅助运动区,颞中回,背前额叶皮层和额极区。我们发现在岛状结构周围可分为三个系统(前,上和下)的功能连接体,比以前想象的要复杂,尤其是在新的Broca扩展区域方面。布罗卡区的扩展涉及两个新的分册::前运动丛,由组织良好的U形纤维组成,这些纤维将视神经与前运动区连接起来; (2)三角-轨道系统,由混杂的U形纤维组成,这些纤维将三角形的pars与轨道的pars连接起来。这些发现增强了我们对语言功能的理解。

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