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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Connectivity-based parcellation of human cingulate cortex and its relation to functional specialization.
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Connectivity-based parcellation of human cingulate cortex and its relation to functional specialization.

机译:基于连接的人类扣带回皮层分裂及其与功能专业化的关系。

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Whole-brain neuroimaging studies have demonstrated regional variations in function within human cingulate cortex. At the same time, regional variations in cingulate anatomical connections have been found in animal models. It has, however, been difficult to estimate the relationship between connectivity and function throughout the whole cingulate cortex within the human brain. In this study, magnetic resonance diffusion tractography was used to investigate cingulate probabilistic connectivity in the human brain with two approaches. First, an algorithm was used to search for regional variations in the probabilistic connectivity profiles of all cingulate cortex voxels with the whole of the rest of the brain. Nine subregions with distinctive connectivity profiles were identified. It was possible to characterize several distinct areas in the dorsal cingulate sulcal region. Several distinct regions were also found in subgenual and perigenual cortex. Second, the probabilities of connection between cingulate cortex and 11 predefined target regions of interest were calculated. Cingulate voxels with a high probability of connection with the different targets formed separate clusters within cingulate cortex. Distinct connectivity fingerprints characterized the likelihood of connections between the extracingulate target regions and the nine cingulate subregions. Last, a meta-analysis of 171 functional studies reporting cingulate activation was performed. Seven different cognitive conditions were selected and peak activation coordinates were plotted to create maps of functional localization within the cingulate cortex. Regional functional specialization was found to be related to regional differences in probabilistic anatomical connectivity.
机译:全脑神经影像学研究已经证明了人类扣带回皮质内功能的区域差异。同时,在动物模型中发现了扣带回解剖连接的区域变化。但是,很难估计人脑中整个扣带回皮质的连通性和功能之间的关系。在这项研究中,磁共振扩散束摄影术被用来研究扣环在人类大脑中的概率连接有两种方法。首先,使用一种算法来搜索所有扣带回皮层体素与整个大脑其余部分的概率连通性分布图的区域变化。确定了九个具有独特连通性的次区域。可以在背扣带回沟区域中描绘出几个不同的区域。在属下和周围的皮质中也发现了几个不同的区域。第二,计算扣带回皮层与11个预定目标区域之间的连接概率。扣合与不同靶点连接的可能性高的体素在扣带状皮层内形成单独的簇。不同的连通性指纹表征了拔出的靶区域和9个扣带子区域之间连接的可能性。最后,对报告扣带回激活的171项功能研究进行了荟萃分析。选择了七个不同的认知条件,并绘制了峰值激活坐标以创建扣带回皮质内的功能定位图。发现区域功能专业化与概率解剖学连通性的区域差异有关。

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