首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Functional network mirrored in the prefrontal cortex, caudate nucleus, and thalamus: High-resolution functional imaging and structural connectivity
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Functional network mirrored in the prefrontal cortex, caudate nucleus, and thalamus: High-resolution functional imaging and structural connectivity

机译:在前额叶皮层,尾状核和丘脑中镜像的功能网络:高分辨率功能成像和结构连接

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Despite myriads of studies on a parallel organization of cortico-striatal-thalamo-cortical loops, direct evidence of this has been lacking for the healthy human brain. Here, we scrutinize the functional specificity of the cortico-subcortical loops depending on varying levels of cognitive hierarchy as well as their structural connectivity with high-resolution fMRI and diffusion-weighted MRI (dMRI) at 7 tesla. Three levels of cognitive hierarchy were implemented in two domains: second language and nonlanguage. In fMRI, for the higher level, activations were found in the ventroanterior portion of the prefrontal cortex (PFC), the head of the caudate nucleus (CN), and the ventral anterior nucleus (VA) in the thalamus. Conversely, for the lower level, activations were located in the posterior region of the PFC, the body of the CN, and the medial dorsal nucleus (MD) in the thalamus. This gradient pattern of activations was furthermore shown to be tenable by the parallel connectivity in dMRI tractography connecting the anterior regions of the PFC with the head of the CN and the VA in the thalamus, whereas the posterior activations of the PFC were linked to the body of the CN and the MD in the thalamus. This is the first human in vivo study combining fMRI and dMRI showing that the functional specificity is mirrored within the cortico-subcortical loop substantiated by parallel networks.
机译:尽管对皮质-纹状体-丘脑-皮质loop的平行组织进行了大量研究,但对于健康的人脑来说,尚缺乏直接证据。在这里,我们根据7特斯拉的高分辨率fMRI和扩散加权MRI(dMRI)来检查皮质-皮层下环的功能特异性,这取决于认知层次的不同水平及其结构连接性。在两个领域中实现了三个层次的认知等级:第二语言和非语言。在功能磁共振成像中,对于较高水平,在前额叶皮层(PFC)的腹侧前部,丘脑的尾状核头(CN)和腹侧前核(VA)中发现了激活。相反,对于较低的水平,激活位于PFC的后部区域,CN的身体和丘脑中的内侧背核(MD)。通过在dMRI术中将PFC的前部区域与丘脑中的CN头和VA的头部连接起来的dMRI术中的平行连通性,这种激活方式的梯度模式仍然是可行的,而PFC的后部激活方式与身体相关丘脑中的CN和MD。这是首次将fMRI和dMRI结合在一起的体内研究,表明功能特异性反映在由并行网络证实的皮质-皮层下皮层环内。

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