BRAPH: A graph theory software for the analysis of brain connectivity
暂无分享,去创建一个
Giovanni Volpe | Eric Westman | Mite Mijalkov | Ehsan Kakaei | Joana B. Pereira | E. Westman | J. Pereira | M. Mijalkov | G. Volpe | Ehsan Kakaei
[1] Anders M. Dale,et al. An automated labeling system for subdividing the human cerebral cortex on MRI scans into gyral based regions of interest , 2006, NeuroImage.
[2] Yong He,et al. Diffusion tensor tractography reveals disrupted topological efficiency in white matter structural networks in multiple sclerosis. , 2011, Cerebral cortex.
[3] Susan L. Whitfield-Gabrieli,et al. Conn: A Functional Connectivity Toolbox for Correlated and Anticorrelated Brain Networks , 2012, Brain Connect..
[4] Pablo Barttfeld,et al. State-dependent changes of connectivity patterns and functional brain network topology in autism spectrum disorder , 2012, Neuropsychologia.
[5] Anders M. Dale,et al. Automatic parcellation of human cortical gyri and sulci using standard anatomical nomenclature , 2010, NeuroImage.
[6] Laura Astolfi,et al. Connectome : A MATLAB toolbox for mapping and imaging of brain , 2010 .
[7] Yong He,et al. Disrupted small-world networks in schizophrenia. , 2008, Brain : a journal of neurology.
[8] C. Junqué,et al. Resting‐State Functional Brain Networks in Parkinson's Disease , 2015, CNS neuroscience & therapeutics.
[9] Duncan J. Watts,et al. Collective dynamics of ‘small-world’ networks , 1998, Nature.
[10] Benjamin J. Shannon,et al. Molecular, Structural, and Functional Characterization of Alzheimer's Disease: Evidence for a Relationship between Default Activity, Amyloid, and Memory , 2005, The Journal of Neuroscience.
[11] P. Svenningsson,et al. Cognitive impairment in patients with Parkinson's disease: diagnosis, biomarkers, and treatment , 2012, The Lancet Neurology.
[12] H. Braak,et al. Neuropathological stageing of Alzheimer-related changes , 2004, Acta Neuropathologica.
[13] Michael Vourkas,et al. Tracking brain dynamics via time-dependent network analysis , 2010, Journal of Neuroscience Methods.
[14] E. Bullmore,et al. The hubs of the human connectome are generally implicated in the anatomy of brain disorders , 2014, Brain : a journal of neurology.
[15] Olaf Sporns,et al. Complex network measures of brain connectivity: Uses and interpretations , 2010, NeuroImage.
[16] Y. Benjamini,et al. Controlling the false discovery rate: a practical and powerful approach to multiple testing , 1995 .
[17] Fumiko Hoeft,et al. GAT: A Graph-Theoretical Analysis Toolbox for Analyzing Between-Group Differences in Large-Scale Structural and Functional Brain Networks , 2012, PloS one.
[18] Yong He,et al. GRETNA: a graph theoretical network analysis toolbox for imaging connectomics , 2015, Front. Hum. Neurosci..
[19] O. Sporns,et al. Mapping the Structural Core of Human Cerebral Cortex , 2008, PLoS biology.
[20] Huafu Chen,et al. Altered Functional Connectivity and Small-World in Mesial Temporal Lobe Epilepsy , 2010, PloS one.
[21] Jie Cui,et al. 2008 Special Issue: BSMART: A Matlab/C toolbox for analysis of multichannel neural time series , 2008 .
[22] Yong He,et al. BrainNet Viewer: A Network Visualization Tool for Human Brain Connectomics , 2013, PloS one.
[23] L. Schneider,et al. Defeating Alzheimer's disease and other dementias: a priority for European science and society , 2016, The Lancet Neurology.
[24] M E J Newman,et al. Community structure in social and biological networks , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[25] Giovanni Volpe,et al. Aberrant cerebral network topology and mild cognitive impairment in early Parkinson's disease , 2015, Human brain mapping.
[26] M. P. van den Heuvel,et al. Exploring the brain network: a review on resting-state fMRI functional connectivity. , 2010, European neuropsychopharmacology : the journal of the European College of Neuropsychopharmacology.
[27] Michael Breakspear,et al. Graph analysis of the human connectome: Promise, progress, and pitfalls , 2013, NeuroImage.
[28] S. Rombouts,et al. Consistent resting-state networks across healthy subjects , 2006, Proceedings of the National Academy of Sciences.
[29] A. Singleton,et al. The Parkinson Progression Marker Initiative (PPMI) , 2011, Progress in Neurobiology.
[30] Kristina M. Visscher,et al. A Core System for the Implementation of Task Sets , 2006, Neuron.
[31] H. Braak,et al. Staging of brain pathology related to sporadic Parkinson’s disease , 2003, Neurobiology of Aging.
[32] N. Tzourio-Mazoyer,et al. Automated Anatomical Labeling of Activations in SPM Using a Macroscopic Anatomical Parcellation of the MNI MRI Single-Subject Brain , 2002, NeuroImage.
[33] V Latora,et al. Efficient behavior of small-world networks. , 2001, Physical review letters.
[34] Yufeng Zang,et al. DynamicBC: A MATLAB Toolbox for Dynamic Brain Connectome Analysis , 2014, Brain Connect..
[35] E. Bullmore,et al. A Resilient, Low-Frequency, Small-World Human Brain Functional Network with Highly Connected Association Cortical Hubs , 2006, The Journal of Neuroscience.
[36] R Cameron Craddock,et al. A whole brain fMRI atlas generated via spatially constrained spectral clustering , 2012, Human brain mapping.
[37] Ulrik Brandes,et al. What is network science? , 2013, Network Science.
[38] D. Aarsland,et al. Cognitive performance and neuropsychiatric symptoms in early, untreated Parkinson's disease , 2015, Movement disorders : official journal of the Movement Disorder Society.
[39] C. Stam,et al. Alzheimer's disease: connecting findings from graph theoretical studies of brain networks , 2013, Neurobiology of Aging.
[40] J. D. Kruschwitz,et al. GraphVar: A user-friendly toolbox for comprehensive graph analyses of functional brain connectivity , 2015, Journal of Neuroscience Methods.
[41] Lorraine K. Tyler,et al. Age-related functional reorganization, structural changes, and preserved cognition , 2014, Neurobiology of Aging.
[42] Albert-Lszl Barabsi,et al. Network Science , 2016, Encyclopedia of Big Data.
[43] O. Sporns,et al. Network hubs in the human brain , 2013, Trends in Cognitive Sciences.
[44] Huafu Chen,et al. Altered functional-structural coupling of large-scale brain networks in idiopathic generalized epilepsy. , 2011, Brain : a journal of neurology.
[45] C. Stam,et al. Small‐world properties of nonlinear brain activity in schizophrenia , 2009, Human brain mapping.
[46] Olaf Sporns,et al. The human connectome: Origins and challenges , 2013, NeuroImage.
[47] W. Liao,et al. Decreased Network Efficiency in Benign Epilepsy with Centrotemporal Spikes. , 2017, Radiology.
[48] A. Simmons,et al. Disrupted Network Topology in Patients with Stable and Progressive Mild Cognitive Impairment and Alzheimer's Disease , 2016, Cerebral cortex.
[49] V. Calhoun,et al. The Chronnectome: Time-Varying Connectivity Networks as the Next Frontier in fMRI Data Discovery , 2014, Neuron.
[50] Hao He,et al. Assessing dynamic brain graphs of time-varying connectivity in fMRI data: Application to healthy controls and patients with schizophrenia , 2015, NeuroImage.
[51] M. V. D. Heuvel,et al. Exploring the brain network: A review on resting-state fMRI functional connectivity , 2010, European Neuropsychopharmacology.
[52] Timothy O. Laumann,et al. Functional Network Organization of the Human Brain , 2011, Neuron.
[53] C. Stam,et al. Small-world networks and functional connectivity in Alzheimer's disease. , 2006, Cerebral cortex.
[54] E. Bullmore,et al. Behavioral / Systems / Cognitive Functional Connectivity and Brain Networks in Schizophrenia , 2010 .
[55] Mark W. Woolrich,et al. Network modelling methods for FMRI , 2011, NeuroImage.
[56] E. Bullmore,et al. Hierarchical Organization of Human Cortical Networks in Health and Schizophrenia , 2008, The Journal of Neuroscience.
[57] Wei Liao,et al. Dynamical intrinsic functional architecture of the brain during absence seizures , 2013, Brain Structure and Function.
[58] Andrew Simmons,et al. The effects of intracranial volume adjustment approaches on multiple regional MRI volumes in healthy aging and Alzheimer's disease , 2014, Front. Aging Neurosci..