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Changes in anatomical brain connectivity between ages 12 and 30: A HARDI study of 467 adolescents and adults

机译:12至30岁之间的大脑解剖学连接性变化:一项针对467名青少年和成年人的HARDI研究

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摘要

Graph theory can be applied to matrices that represent the brain's anatomical connections, to better understand global properties of anatomical networks, such as their clustering, efficiency and "small-world" topology. Network analysis is popular in adult studies of connectivity, but only one study - in just 30 subjects - has examined how network measures change as the brain develops over this period. Here we assessed the developmental trajectory of graph theory metrics of structural brain connectivity in a cross-sectional study of 467 subjects, aged 12 to 30. We computed network measures from 70×70 connectivity matrices of fiber density generated using whole-brain tractography in 4-Tesla 105-gradient high angular resolution diffusion images (HARDI). We assessed global efficiency and modularity, and both age and age 2 effects were identified. HARDI-based connectivity maps are sensitive to the remodeling and refinement of structural brain connections as the human brain develops.
机译:图论可以应用于代表大脑解剖连接的矩阵,以更好地了解解剖网络的全局特性,例如它们的聚类,效率和“小世界”拓扑。网络分析在成人连通性研究中很流行,但只有一项研究(仅30个主题)研究了在此期间网络测量如何随着大脑的发展而变化。在这里,我们对12位至30岁的467位受试者进行了一项横断面研究,评估了结构大脑连接性的图论指标的发展轨迹。我们使用4份全脑束线图生成的纤维密度的70×70个连通性矩阵计算了网络测度-特斯拉105梯度高角度分辨率扩散图像(HARDI)。我们评估了全球效率和模块性,并确定了年龄和2岁年龄段的影响。随着人类大脑的发展,基于HARDI的连接图对结构性大脑连接的重塑和完善非常敏感。

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