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Development of brain structural connectivity between ages 12 and 30: A 4-Tesla diffusion imaging study in 439 adolescents and adults

机译:在12至30岁之间发展大脑结构连接性:在439名青少年和成年人中进行的4-Tesla扩散成像研究

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Understanding how the brain matures in healthy individuals is critical for evaluating deviations from normal development in psychiatric and neurodevelopmental disorders. The brain's anatomical networks are profoundly re-modeled between childhood and adulthood, and diffusion tractography offers unprecedented power to reconstruct these networks and neural pathways in vivo. Here we tracked changes in structural connectivity and network efficiency in 439 right-handed individuals aged 12 to 30 (211 female/126 male adults, mean age = 23.6, SD = 2.19; 31 female/24 male 12. year olds, mean age = 12.3, SD = 0.18; and 25 female/22 male 16. year olds, mean age = 16.2, SD = 0.37). All participants were scanned with high angular resolution diffusion imaging (HARDI) at 4. T. After we performed whole brain tractography, 70 cortical gyral-based regions of interest were extracted from each participant's co-registered anatomical scans. The proportion of fiber connections between all pairs of cortical regions, or nodes, was found to create symmetric fiber density matrices, reflecting the structural brain network. From those 70 × 70 matrices we computed graph theory metrics characterizing structural connectivity. Several key global and nodal metrics changed across development, showing increased network integration, with some connections pruned and others strengthened. The increases and decreases in fiber density, however, were not distributed proportionally across the brain. The frontal cortex had a disproportionate number of decreases in fiber density while the temporal cortex had a disproportionate number of increases in fiber density. This large-scale analysis of the developing structural connectome offers a foundation to develop statistical criteria for aberrant brain connectivity as the human brain matures.
机译:了解健康个体的大脑如何成熟对于评估与精神病和神经发育障碍正常发育的偏离至关重要。在童年和成年之间,大脑的解剖网络得到了深刻的重塑,而扩散体层摄影术为体内重构这些网络和神经通路提供了空前的力量。在这里,我们追踪了439位12至30岁的惯用右手的人(211位女性/ 126位男性成年人,平均年龄= 23.6,SD = 2.19; 31位女性/ 24位男性12岁,平均年龄= 12.3,SD = 0.18; 25女/ 22男性16岁,平均年龄= 16.2,SD = 0.37)。在4. T时用高角分辨率扩散成像(HARDI)扫描所有参与者。在我们进行了全脑束描记后,从每个参与者的共同注册的解剖扫描中提取了70个基于皮质回旋的感兴趣区域。发现所有成对的皮质区域或节点之间的纤维连接比例可以创建对称的纤维密度矩阵,从而反映出大脑的结构网络。从这些70×70矩阵中,我们计算了表征结构连通性的图论度量。几个关键的全局和节点指标在整个开发过程中发生了变化,显示出网络集成度的提高,其中一些连接被修剪,另一些则得到了增强。但是,纤维密度的增加和减少并未在大脑中成比例地分布。额叶皮层纤维密度下降的比例不成比例,而颞叶皮层纤维密度增加的比例不成比例。这种对发展中的结构连接体的大规模分析为随着人脑的成熟发展异常脑部连接的统计标准提供了基础。

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