Examining brain maturation during adolescence using graph Laplacian learning based Fourier transform
暂无分享,去创建一个
Li Xiao | Yu-Ping Wang | Tony W. Wilson | Junqi Wang | V. Calhoun | Li Xiao | J. Stephen | T. Wilson | Yu-ping Wang | Junqi Wang
[1] Alexander J. Smola,et al. Learning with Kernels: support vector machines, regularization, optimization, and beyond , 2001, Adaptive computation and machine learning series.
[2] M. Raichle. The brain's default mode network. , 2015, Annual review of neuroscience.
[3] Yong He,et al. BrainNet Viewer: A Network Visualization Tool for Human Brain Connectomics , 2013, PloS one.
[4] José M. F. Moura,et al. Discrete Signal Processing on Graphs , 2012, IEEE Transactions on Signal Processing.
[5] Quanzheng Li,et al. Matched Signal Detection on Graphs: Theory and Application to Brain Network Classification , 2013, IPMI.
[6] Alan C. Evans,et al. Intellectual ability and cortical development in children and adolescents , 2006, Nature.
[7] Gary H. Glover,et al. Default-mode function and task-induced deactivation have overlapping brain substrates in children , 2008, NeuroImage.
[8] E. Bullmore,et al. Hierarchical Organization of Human Cortical Networks in Health and Schizophrenia , 2008, The Journal of Neuroscience.
[9] Michael D. Greicius,et al. Development of functional and structural connectivity within the default mode network in young children , 2010, NeuroImage.
[10] R. Buxton,et al. The development of face and location processing: an fMRI study , 2003 .
[11] H. Abdi,et al. Principal component analysis , 2010 .
[12] B. Bollobás. The evolution of random graphs , 1984 .
[13] Pascal Frossard,et al. The emerging field of signal processing on graphs: Extending high-dimensional data analysis to networks and other irregular domains , 2012, IEEE Signal Processing Magazine.
[14] Jonathan D. Power,et al. Functional Brain Networks Develop from a “Local to Distributed” Organization , 2009, PLoS Comput. Biol..
[15] Alejandro Ribeiro,et al. Graph Frequency Analysis of Brain Signals , 2015, IEEE Journal of Selected Topics in Signal Processing.
[16] Thomas F. Nugent,et al. Dynamic mapping of human cortical development during childhood through early adulthood. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[17] Timothy O. Laumann,et al. Functional Network Organization of the Human Brain , 2011, Neuron.
[18] F. Gilles,et al. Gyral development of the human brain , 1977, Transactions of the American Neurological Association.
[19] Dinggang Shen,et al. Multimodal hyper‐connectivity of functional networks using functionally‐weighted LASSO for MCI classification , 2019, Medical Image Anal..
[20] Anthony R. McIntosh,et al. Age-related Changes in Brain Activity across the Adult Lifespan , 2006 .
[21] Alan L. Yuille,et al. Non-negative matrix factorization of multimodal MRI, fMRI and phenotypic data reveals differential changes in default mode subnetworks in ADHD , 2014, NeuroImage.
[22] G L Shulman,et al. INAUGURAL ARTICLE by a Recently Elected Academy Member:A default mode of brain function , 2001 .
[23] E. Achten,et al. Age-related differences in metabolites in the posterior cingulate cortex and hippocampus of normal ageing brain: a 1H-MRS study. , 2012, European journal of radiology.
[24] Fan Chung,et al. Spectral Graph Theory , 1996 .
[25] Mark A. Elliott,et al. The Philadelphia Neurodevelopmental Cohort: A publicly available resource for the study of normal and abnormal brain development in youth , 2016, NeuroImage.
[26] Duncan J. Watts,et al. Collective dynamics of ‘small-world’ networks , 1998, Nature.
[27] Albert,et al. Emergence of scaling in random networks , 1999, Science.
[28] Olaf Sporns,et al. Complex network measures of brain connectivity: Uses and interpretations , 2010, NeuroImage.
[29] O. Sporns,et al. Complex brain networks: graph theoretical analysis of structural and functional systems , 2009, Nature Reviews Neuroscience.
[30] S. Petersen,et al. Developmental changes in human cerebral functional organization for word generation. , 2005, Cerebral cortex.
[31] Leslie G. Ungerleider,et al. Age-related reductions in human recognition memory due to impaired encoding. , 1995, Science.
[32] Rex E. Jung,et al. A Baseline for the Multivariate Comparison of Resting-State Networks , 2011, Front. Syst. Neurosci..
[33] Mikhail Belkin,et al. Laplacian Eigenmaps for Dimensionality Reduction and Data Representation , 2003, Neural Computation.
[34] Kristina M. Visscher,et al. Functional Neuroanatomical Differences Between Adults and School-Age Children in the Processing of Single Words , 2002, Science.
[35] Rémi Gribonval,et al. Should Penalized Least Squares Regression be Interpreted as Maximum A Posteriori Estimation? , 2011, IEEE Transactions on Signal Processing.
[36] Roman Filipovych,et al. Identifying Sparse Connectivity Patterns in the brain using resting-state fMRI , 2015, NeuroImage.
[37] Vince D. Calhoun,et al. Fused Estimation of Sparse Connectivity Patterns From Rest fMRI—Application to Comparison of Children and Adult Brains , 2018, IEEE Transactions on Medical Imaging.
[38] Pascal Frossard,et al. Learning Laplacian Matrix in Smooth Graph Signal Representations , 2014, IEEE Transactions on Signal Processing.
[39] N. Sadato,et al. Age‐related differences in the medial temporal lobe responses to emotional faces as revealed by fMRI , 2002, Hippocampus.
[40] E. Bullmore,et al. Functional frontalisation with age: mapping neurodevelopmental trajectories with fMRI , 2000, Neuroscience & Biobehavioral Reviews.
[41] D. Schacter,et al. The Brain's Default Network , 2008, Annals of the New York Academy of Sciences.
[42] O. Sporns. Networks of the Brain , 2010 .
[43] F. Craik,et al. The effects of age on the neural correlates of episodic encoding. , 1999, Cerebral cortex.
[44] S. Rombouts,et al. A comprehensive study of whole-brain functional connectivity in children and young adults. , 2011, Cerebral cortex.
[45] C. Grady,et al. The modulation of BOLD variability between cognitive states varies by age and processing speed. , 2013, Cerebral cortex.
[46] Abraham Z. Snyder,et al. Function in the human connectome: Task-fMRI and individual differences in behavior , 2013, NeuroImage.
[47] Christos Davatzikos,et al. Neuroimaging of the Philadelphia Neurodevelopmental Cohort , 2014, NeuroImage.