左西年

中国科学院心理研究所

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  • 左西年
  • 研究员
  •   北京市朝阳区林萃路16号院中国科学院心理所
简历:
2002年9月-2005年6月:北京师范大学数学科学学院,博士(专业 应用数学 方向 生物数学)2006年4月-2008年9月:中国科学院自动化所模式识别国家重点实验室,博士后2006年4月-2008年9月:北京师范大学认知神经科学与学习国家重点实验室,博士后2008年10月-2010年11月:美国纽约大学医学院儿童研究中心儿科神经科学研究所,博士后2008年10月-2010年11月:美国纽约大学Langone医疗中心,副研科学家
研究领域:
脑成像图谱和计算方法学:重测信度与可重复性研究健康人脑功能毕生发展连接组学:人脑连接组常模及神经科学机制精神疾病的脑发育病因学:人脑连接组发育曲线及其临床应用
社会任职:

国际人类脑图谱学会(OHBM)理事会成员:程序委员会主席(2018-2021)中国心理学会(脑成像专业委员会副主任/发展心理学委员会委员/心理测量委员会委员)NeuroImage(编委主页)NeuroImage: Clinical(编委主页)Neuroscience(编委主页)Network Neuroscience(编委主页) Frontiers(编委信息)PLoS One 统计编委(稿件统计学质量评估) Science Bulletin编委(生命科学与医学:2015-2017) Developmental Cognitive Neuroscience客座编委(2015)

获奖及荣誉:

获首届中源协和生命医学创新突破奖(2016)北京市科学技术奖二等奖(2017)ESI全球高被引学者(神经科学与行为科学领域:2017/2018)中国科学院领军人才研修项目(2018)

代表论著:

[22] Zuo XN*, Biswal BB, Poldrack RA. Editorial: Reliability and Reproducibility in Functional Connectomics. 2019; Front Neurosci. 13: 117.[21] Xing XX, Zuo XN*. The anatomy of reliability: a must read for future human brain mapping. Sci Bull. 2018; 63(24): 1606-1607. (Commentary) [20] Zuo XN*, He Y, Su X, Hou XH, Weng XC, Li Q. Developmental population neuroscience: Emerging from ICHBD. Sci Bull. 2018; 63(6): 331-332. (Research Highlights)[19] 杨宁#, 何叶#, 张喆#, 董昊铭#, 张蕾#, 朱幸婷, 侯晓晖, 王银山, 周荃, 宮竹青, 曹立智, 王平, 张一文, 隋丹阳, 徐婷, 魏高峡, 杨志, 姜黎黎, 李会杰, 冯廷勇, 陈安涛, 邱江, 陈旭, 左西年*. 彩巢计划-“成长在中国”. 科学通报. 2017, 62(26): 3008-3022. [封面文章] [中国科学出版社官方微信报道][18] Zuo XN*, He Y, Betzel RF, Colcombe S, Sporns O, Milham MP*. Human connectomics across the lifespan. Trends Cogn Sci. 2017; 21(1): 32-45. (Invited Review)[17] Zuo XN*. Mapping the Human Brain Function in Vivo. Sci Bull. 2016; 61(24): 1839-40. (Editorial)[16] Yang Z*, Qiu J, Wang P, Liu R, Zuo XN*. Brain structure-function associations identified in large-scale neuroimaging data. Brain Struct Funct. 2016; 221(9): 4459-474.[15] Jiang L* and Zuo XN*. Regional homogeneity: A multi-modal, multi-scale neuroimaging marker of the human connectome. Neuroscientist. 2016; 22(5): 486-505. (Cover Review)[14] Yang Z, Zuo XN*, McMahon KL, Craddock CR, Kelly C, de Zubicaray G, Hickie IB, Bandettini P, Castellanos FX, Milham MP*, Wright MJ. Genetic and environmental contributions to functional connectivity architecture of the human brain. Cereb Cortex. 2016; 26(5): 2341-2352.[13] He Y, Xu T, Zhang W, Zuo XN*. Lifespan anxiety is reflected in intrinsic amygdala cortical connectivity. Hum Brain Mapp. 2016; 37(3): 1178-1193.[12] Li HJ*, Hou XH, Liu HH, Yue CL, Lu GM, Zuo XN*. Putting age-related task activation into large-scale brain networks: A meta-analysis of 114 fMRI studies on healthy aging. Neurosci Biobehav Rev. 2015; 57:156-174.[11] Jiang L, Xu Y, Zhu XT, Yang Z, Li HJ, Zuo XN*. Local-to-remote cortical connectivity in childhood and adulthood schizophrenia. Transl Psychiatry. 2015; 5: e566.[10] Li HJ, Xu Y, Zhang KR, Hoptman MJ, Zuo XN*. Homotopic connectivity in drug-naive, first-episode, early-onset schizophrenia. J Child Psychol Psychiatry. 2015; 56(4):432-443.[9] Wang J, Yang N, Liao W, Zhang H, Yan CG, Zang YF, Zuo XN*. Dorsal anterior cingulate cortex in typically developing children: Laterality analysis. Dev Cogn Neurosci. 2015; 15: 117-129.[8] Jiang L, Xu T, He Y, Hou XH, Wang J, Cao XY, Wei GX, Yang Z, He Y, Zuo XN*. Toward neurobiological characterization of functional homogeneity in the human cortex: Regional variation, morphological association and functional covariance network organization. Brain Struct Funct. 2015; 220: 2485-2507.[7] Xu T, Yang Z, Jiang L, Xing XX, Zuo XN*. A Connectome Computation System (CCS) for discovery science of brain. Sci Bull. 2015; 60(1): 86-95. (Best Paper Award)[6] Yang Z*, Chang C, Xu T, Jiang L, Handwerker DA, Castellanos FX, Milham MP, Bandettini PA, Zuo XN*. Connectivity trajectory across lifespan differentiates the precuneus from the default network. Neuroimage. 2014; 89:45-56.[5] Cao M, Wang JH, Dai ZJ, Cao XY, Jiang LL, Fan FM, Song XW, Xia MR, Shu N, Dong Q, Milham MP, Castellanos FX, Zuo XN*, He Y*. Topological organization of the human brain functional connectome across the lifespan. Dev Cogn Neurosci. 2014; 7C:76-93.[4] Zuo XN*, Anderson JS, Bellec P, Birn RM, Biswal BB, Blautzik J, Breitner JCS, Buckner RL, Calhoun VD, Castellanos FX, Chen A, Chen B, Chen J, Chen X, Colcombe SJ, Courtney W, Craddock RC, Di Martino A, Dong HM, Fu X, Gong Q, Gorgolewski KJ, Han Y, He Y, He Y, Ho E, Holmes A, Hou XH, Huckins J, Jiang T, Jiang Y, Kelley W, Kelly C, King M, LaConte SM, Lainhart JE, Lei X, Li HJ, Li K, Li K, Lin Q, Liu D, Liu J, Liu X, Liu Y, Lu G, Lu J, Luna B, Luo J, Lurie D, Mao Y, Margulies DS, Mayer AR, Meindl T, Meyerand ME, Nan W, Nielsen JA, O'Connor D, Paulsen D, Prabhakaran V, Qi Z, Qiu J, Shao C, Shehzad Z, Tang W, Villringer A, Wang H, Wang K, Wei D, Wei GX, Weng XC, Wu X, Xu T, Yang N, Yang Z, Zang YF, Zhang L, Zhang Q, Zhang Z, Zhang Z, Zhao K, Zhen Z, Zhou Y, Zhu XT, Milham MP*. An open science resource for establishing reliability and reproducibility in functional connectomics. Sci. Data. 2014, 1: 140049. (CoRRConsortium Paper) (Nature Author's Corner)[3] Zuo XN* and Xing XX*. Test-retest reliabilities of resting-state FMRI measurements in human brain functional connectomics: A systems neuroscience perspective. Neurosci Biobehav Rev. 2014; 45: 100-118.(Invited Review)[2] Zuo XN*, Xu T, Jiang L, Yang Z, Cao XY, He Y, Zang YF, Castellanos FX, Milham MP. Toward reliable characterization of functional homogeneity in the human brain: Preprocessing, scan duration, imaging resolution and computational space. NeuroImage. 2013; 65(1): 374-386. [1] Zuo XN*, Ehmke R, Mennes M,Imperati D, Castellanos FX, Sporns O, Milham MP. Network centrality in the human functional connectome. Cereb Cortex. 2012; 22(8):1862-1875. (Cover Story)

更多成果信息请见:http://ir.psych.ac.cn/zuoxn@psych.ac.cn

承担科研项目情况:

国家自然科学基金委面上项目和国际重点合作项目、中国科学院重点部署项目和重点国际合作项目、国家科技部973子课题、北京市脑科学专项课题。