Functional connectome through the human life span.

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作者:Sun Lianglong, Zhao Tengda, Liang Xinyuan, Xia Mingrui, Li Qiongling, Liao Xuhong, Gong Gaolang, Wang Qian, Pang Chenxuan, Yu Qian, Bi Yanchao, Chen Pindong, Chen Rui, Chen Yuan, Chen Taolin, Cheng Jingliang, Cheng Yuqi, Cui Zaixu, Dai Zhengjia, Deng Yao, Ding Yuyin, Dong Qi, Duan Dingna, Gao Jia-Hong, Gong Qiyong, Han Ying, Han Zaizhu, Huang Chu-Chung, Huang Ruiwang, Huo Ran, Li Lingjiang, Lin Ching-Po, Lin Qixiang, Liu Bangshan, Liu Chao, Liu Ningyu, Liu Ying, Liu Yong, Lu Jing, Ma Leilei, Men Weiwei, Qin Shaozheng, Qiu Jiang, Qiu Shijun, Si Tianmei, Tan Shuping, Tang Yanqing, Tao Sha, Wang Dawei, Wang Fei, Wang Jiali, Wang Pan, Wang Xiaoqin, Wang Yanpei, Wei Dongtao, Wu Yankun, Xie Peng, Xu Xiufeng, Xu Yuehua, Xu Zhilei, Yang Liyuan, Yuan Huishu, Zeng Zilong, Zhang Haibo, Zhang Xi, Zhao Gai, Zheng Yanting, Zhong Suyu, He Yong
The lifespan growth of the functional connectome remains unknown. Here, we assemble task-free functional and structural magnetic resonance imaging data from 33,250 individuals aged 32 postmenstrual weeks to 80 years from 132 global sites. We report critical inflection points in the nonlinear growth curves of the global mean and variance of the connectome, peaking in the late fourth and late third decades of life, respectively. After constructing a fine-grained, lifespan-wide suite of system-level brain atlases, we show distinct maturation timelines for functional segregation within different systems. Lifespan growth of regional connectivity is organized along a primary-to-association cortical axis. These connectome-based normative models reveal substantial individual heterogeneities in functional brain networks in patients with autism spectrum disorder, major depressive disorder, and Alzheimer's disease. These findings elucidate the lifespan evolution of the functional connectome and can serve as a normative reference for quantifying individual variation in development, aging, and neuropsychiatric disorders.

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