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认知障碍的神经影像学研究

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(1)Su F, Bai F*, Zhou H, Zhang Z. Microglial toll-like receptors and Alzheimer’s disease. Brain Behav Immun. 2016; 52: 187-198. (IF=5.889) (2)Su F, Bai F*, Zhang Z. Inflammatory Cytokines and Alzheimer's Disease: A Review from the Perspective of Genetic Polymorphisms. Neurosci Bull. 2016;32(5):469-480.(IF=2.509) (3)Ye Q, Bai F*, Zhang Z. Shared Genetic Risk Factors for Late-life Depression and Alzheimer’s Disease.J Alzheimers Dis. 2016; 52: 1-15.(IF=4.151) (4)Ye Q, Su F, Shu H, Gong L, Xie C, Zhang Z, Bai F*. The apolipoprotein E gene affects the three year trajectories of compensatory neural processes in the left lateralized hippocampal network. Brain Imaging Behav. 2016; doi:10.1007/s11682-016-9623-5. (IF=4.598) (5)Bai F*, Shi Y, Yuan Y, Xie C, Zhang Z*. Immunity factor contributes to altered brain functional networks in individuals at risk for Alzheimer’s disease: Neuroimaging-genetic evidence. Brain Behav Immun. 2016; 56: 84-95. (IF=5.889) (6)Bai F*, Yuan Y, Shi Y, Zhang Z*. Multiple genetic imaging study of the association between cholesterol metabolism and brain functional alterations in individuals with risk factors for Alzheimer’s disease. Oncotarget. 2016; 7: 15315-15328. (IF=6.359) (7)Bai F*#, Liao W#, Yue C, Pu M, Shi Y, Yu H, Yuan Y, Geng L, Zhang Z*. Genetics pathway-based imaging approaches in Chinese Han population with Alzheimer's disease risk. Brain Struct Funct. 2016; 221(1): 433-446. (#并列第一,IF=5.618) (8)Bai F*, Yuan Y, Yu H, Zhang Z*. Plasticmodulation of episodic memory networks in the aging brain with cognitivedecline. Behav Brain Res. 2016; 308: 38-45. (IF=3.028) (9Bai F#, Shu N#, Yuan Y, Shi Y, Yu H, Wu D, Wang J, Xia M, He Y*, Zhang Z*. Topologically convergent and divergent structural connectivity patterns between patients with remitted geriatric depression and amnestic mild cognitive impairment. J Neurosci. 2012; 32(12): 4307-4318.(cover paper#并列第一,IF=6.344) (10)Xie C#, Bai F#, Yu H, Shi Y, Yuan Y, Chen G, Li W, Chen G, Zhang Z*, Li SJ*. Abnormal insula functional network is associated with episodic memory decline in amnestic mild cognitive impairment. Neuroimage. 2012; 63(1): 320-327. (#并列第一,IF=6.357) (11)Bai F, Shi Y, Yuan Y, Wang Y, Yue C, Teng Y, Wu D, Zhang Z, Jia J*, Zhang Z*. Altered self-referential network in resting-state amnestic type mild cognitive impairment. Cortex. 2012; 48(5): 604-613. (IF=5.128) (12)Bai F, Watson DR, Shi Y, Yuan Y, Yu H, Zhang Z*. Mobilization and redistribution of default mode network from resting state to task state in amnestic mild cognitive impairment. Curr Alzheimer Res. 2012; 9(8): 944-952. (IF=3.889) (13)Bai F, Shi Y, Yuan Y, Yue C, Zhuang L, Xu X, Liu X, Zhang Z*. Association of a GSK-3β polymorphism with brain resting-state function in amnestic-type mild cognitive impairment. J Alzheimers Dis. 2012; 32(2): 387-396. (IF=4.151) (14)Bai F, Liao W, Watson DR, Shi Y, Yuan Y, Cohen AD, Xie C, Wang Y, Yue C, Teng Y, Wu D, Jia J, Zhang Z*. Mapping the altered patterns of cerebellar resting-state function in longitudinal amnestic mild cognitive impairment patients. J Alzheimers Dis. 2011; 23(1): 87-99. (IF=4.151) (15)Bai F, Xie C, Watson DR, Shi Y, Yuan Y, Wang Y, Yue C, Teng Y, Wu D, Zhang Z*. Aberrant hippocampal subregion networks associated with the classifications of aMCI subjects: a longitudinal resting-state study. PLoS One. 2011a; 6(12): e29288. (IF=3.234) (16)Bai F, Watson DR, Shi Y, Wang Y, Yue C, Teng Y, Wu D, Yuan Y, Zhang Z*. Specifically progressive deficits of brain functional marker in amnestic type mild cognitive impairment. PLoS One. 2011b; 6(9):e24271. (IF=3.234) (17)Bai F, Liao W, Watson DR, Shi Y, Wang Y, Yue C, Teng Y, Wu D, Yuan Y, Jia J, Zhang Z*. Abnormal whole-brain functional connection in amnestic mild cognitive impairment patients. Behav Brain Res. 2011; 216(2): 666-672. (IF=3.028)

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