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Frontiers in Human Neuroscience
|
May 6, 2016
Connectomic Insights into Topologically Centralized Network Edges and Relevant Motifs in the Human Brain
Mingrui Xia, Qixiang Lin, Yanchao Bi, et al.
Neuroimage
|
March 1, 2017
Individual differences and time-varying features of modular brain architecture
Xuhong Liao, Miao Cao, Mingrui Xia, et al.
Human Brain Mapping
|
January 10, 2018
Differentially categorized structural brain hubs are involved in different microstructural, functional, and cognitive characteristics and contribute to individual identification
Xindi Wang, Qixiang Lin, Mingrui Xia, et al.
Human Brain Mapping
|
November 17, 2017
Chronnectome fingerprinting: Identifying individuals and predicting higher cognitive functions using dynamic brain connectivity patterns
Jin Liu, Xuhong Liao, Mingrui Xia, et al.
Human Brain Mapping
|
March 4, 2017
Identifying topological motif patterns of human brain functional networks
Yongbin Wei, Xuhong Liao, Chaogan Yan, et al.
Neuroimage
|
August 24, 2020
The spatial organization of the chronnectome associates with cortical hierarchy and transcriptional profiles in the human brain
Jin Liu, Mingrui Xia, Xindi Wang, et al.
Frontiers in Human Neuroscience
|
July 16, 2015
GRETNA: a graph theoretical network analysis toolbox for imaging connectomics
Jinhui Wang, Xindi Wang, Mingrui Xia, et al.
Journal of Magnetic Resonance Imaging : JMRI
|
June 17, 2021
Characteristics of Intrinsic Brain Functional Connectivity Alterations in Major Depressive Disorder Patients With Suicide Behavior
Ziqi Chen, Mingrui Xia, Youjin Zhao, et al.
Frontiers in Human Neuroscience
|
September 9, 2015
Corrigendum: GRETNA: a graph theoretical network analysis toolbox for imaging connectomics
Jinhui Wang, Xindi Wang, Mingrui Xia, et al.
Communications Biology
|
October 4, 2022
Meta-connectomic analysis maps consistent, reproducible, and transcriptionally relevant functional connectome hubs in the human brain
Zhilei Xu, Mingrui Xia, Xindi Wang, et al.
Page
of 11
Search research articles
Search
Showing results (11-20 of 103) with videos related to
Sort By:
Page
of 11
Frontiers in Human Neuroscience
|
May 6, 2016
Connectomic Insights into Topologically Centralized Network Edges and Relevant Motifs in the Human Brain
Mingrui Xia, Qixiang Lin, Yanchao Bi, et al.
Neuroimage
|
March 1, 2017
Individual differences and time-varying features of modular brain architecture
Xuhong Liao, Miao Cao, Mingrui Xia, et al.
Human Brain Mapping
|
January 10, 2018
Differentially categorized structural brain hubs are involved in different microstructural, functional, and cognitive characteristics and contribute to individual identification
Xindi Wang, Qixiang Lin, Mingrui Xia, et al.
Human Brain Mapping
|
November 17, 2017
Chronnectome fingerprinting: Identifying individuals and predicting higher cognitive functions using dynamic brain connectivity patterns
Jin Liu, Xuhong Liao, Mingrui Xia, et al.
Human Brain Mapping
|
March 4, 2017
Identifying topological motif patterns of human brain functional networks
Yongbin Wei, Xuhong Liao, Chaogan Yan, et al.
Neuroimage
|
August 24, 2020
The spatial organization of the chronnectome associates with cortical hierarchy and transcriptional profiles in the human brain
Jin Liu, Mingrui Xia, Xindi Wang, et al.
Frontiers in Human Neuroscience
|
July 16, 2015
GRETNA: a graph theoretical network analysis toolbox for imaging connectomics
Jinhui Wang, Xindi Wang, Mingrui Xia, et al.
Journal of Magnetic Resonance Imaging : JMRI
|
June 17, 2021
Characteristics of Intrinsic Brain Functional Connectivity Alterations in Major Depressive Disorder Patients With Suicide Behavior
Ziqi Chen, Mingrui Xia, Youjin Zhao, et al.
Frontiers in Human Neuroscience
|
September 9, 2015
Corrigendum: GRETNA: a graph theoretical network analysis toolbox for imaging connectomics
Jinhui Wang, Xindi Wang, Mingrui Xia, et al.
Communications Biology
|
October 4, 2022
Meta-connectomic analysis maps consistent, reproducible, and transcriptionally relevant functional connectome hubs in the human brain
Zhilei Xu, Mingrui Xia, Xindi Wang, et al.
Page
of 11