Longitudinal predictive modeling of tau progression along the structural connectome
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Jorge Sepulcre | Joyita Dutta | Samadrita Roy Chowdhury | Keith A. Johnson | Van J. Wedeen | Fan Yang | Heidi I.L. Jacobs | Fan Yang | V. Wedeen | J. Sepulcre | J. Dutta | H. Jacobs | S. Chowdhury
[1] T. Hedden,et al. Meta-analysis of amyloid-cognition relations in cognitively normal older adults , 2013, Neurology.
[2] Pedro D. Maia,et al. A method for inferring regional origins of neurodegeneration , 2018, Brain : a journal of neurology.
[3] Fan Yang,et al. PET Image Deblurring and Super-Resolution With an MR-Based Joint Entropy Prior , 2019, IEEE Transactions on Computational Imaging.
[4] Cristina Lois,et al. PET imaging of tau protein targets: a methodology perspective , 2018, Brain Imaging and Behavior.
[5] Paul M. Thompson,et al. Localizing Sources of Brain Disease Progression with Network Diffusion Model , 2016, IEEE Journal of Selected Topics in Signal Processing.
[6] M. Ewers,et al. Patient-centered connectivity-based prediction of tau pathology spread in Alzheimer’s disease , 2020, Science Advances.
[7] Natalie L. Hauglund,et al. Cleaning the sleeping brain – the potential restorative function of the glymphatic system , 2020 .
[8] Henrik Zetterberg,et al. Earliest accumulation of β-amyloid occurs within the default-mode network and concurrently affects brain connectivity , 2017, Nature Communications.
[9] Shannon L. Risacher,et al. Topographic staging of tau positron emission tomography images , 2018, Alzheimer's & dementia.
[10] Jesse A. Brown,et al. Prospective longitudinal atrophy in Alzheimer’s disease correlates with the intensity and topography of baseline tau-PET , 2020, Science Translational Medicine.
[11] Keith A. Johnson,et al. In Vivo Tau, Amyloid, and Gray Matter Profiles in the Aging Brain , 2016, The Journal of Neuroscience.
[12] Mark W. Woolrich,et al. Bayesian analysis of neuroimaging data in FSL , 2009, NeuroImage.
[13] M. Frosch,et al. [F-18]-AV-1451 binding correlates with postmortem neurofibrillary tangle Braak staging , 2017, Acta Neuropathologica.
[14] S. Liggett,et al. β-Arrestin2 oligomers impair the clearance of pathological tau and increase tau aggregates , 2020, Proceedings of the National Academy of Sciences.
[15] C. Jack,et al. Hypothetical model of dynamic biomarkers of the Alzheimer's pathological cascade , 2010, The Lancet Neurology.
[16] Sang Won Seo,et al. Functional connectivity associated with tau levels in ageing, Alzheimer’s, and small vessel disease , 2019, Brain : a journal of neurology.
[17] H. Braak,et al. Tau seeding activity begins in the transentorhinal/entorhinal regions and anticipates phospho-tau pathology in Alzheimer’s disease and PART , 2018, Acta Neuropathologica.
[18] C. Jack,et al. Cerebral amyloid PET imaging in Alzheimer’s disease , 2013, Acta Neuropathologica.
[19] Reisa A. Sperling,et al. Harvard Aging Brain Study: Dataset and accessibility , 2017, NeuroImage.
[20] Bin Zhang,et al. Amyloid-β plaques enhance Alzheimer's brain tau-seeded pathologies by facilitating neuritic plaque tau aggregation , 2017, Nature Medicine.
[21] Keith A. Johnson,et al. Association of In Vivo [18F]AV-1451 Tau PET Imaging Results With Cortical Atrophy and Symptoms in Typical and Atypical Alzheimer Disease , 2017, JAMA neurology.
[22] A. Joshi,et al. Regional profiles of the candidate tau PET ligand 18F-AV-1451 recapitulate key features of Braak histopathological stages. , 2016, Brain : a journal of neurology.
[23] Mark W. Woolrich,et al. Advances in functional and structural MR image analysis and implementation as FSL , 2004, NeuroImage.
[24] J. Trojanowski,et al. Differential induction and spread of tau pathology in young PS19 tau transgenic mice following intracerebral injections of pathological tau from Alzheimer’s disease or corticobasal degeneration brains , 2015, Acta Neuropathologica.
[25] Anders M. Dale,et al. Cortical Surface-Based Analysis I. Segmentation and Surface Reconstruction , 1999, NeuroImage.
[26] Zeshan Ahmed,et al. A novel in vivo model of tau propagation with rapid and progressive neurofibrillary tangle pathology: the pattern of spread is determined by connectivity, not proximity , 2014, Acta Neuropathologica.
[27] Jorge Sepulcre,et al. Structural tract alterations predict down-stream tau accumulation in amyloid positive older individuals , 2018, Nature Neuroscience.
[28] M. Weiner,et al. Association Between Elevated Brain Amyloid and Subsequent Cognitive Decline Among Cognitively Normal Persons , 2017, JAMA.
[29] Michael Weiner,et al. Network Diffusion Model of Progression Predicts Longitudinal Patterns of Atrophy and Metabolism in Alzheimer's Disease. , 2015, Cell reports.
[30] Brian A. Gordon,et al. Loss of white matter integrity reflects tau accumulation in Alzheimer disease defined regions , 2018, Neurology.
[31] Quanzheng Li,et al. Neurogenetic contributions to amyloid beta and tau spreading in the human cortex , 2018, Nature Medicine.
[32] G. Bloom,et al. Alzheimer disease , 2013, Prion.
[33] Hanna Cho,et al. In vivo cortical spreading pattern of tau and amyloid in the Alzheimer disease spectrum , 2016, Annals of neurology.
[34] Daniel R. Schonhaut,et al. PET Imaging of Tau Deposition in the Aging Human Brain , 2016, Neuron.
[35] Nigel J. Cairns,et al. Proteopathic tau seeding predicts tauopathy in vivo , 2014, Proceedings of the National Academy of Sciences.
[36] Naruhiko Sahara,et al. Propagation of Tau Pathology in a Model of Early Alzheimer's Disease , 2012, Neuron.
[37] Keith A. Johnson,et al. The Evolution of Preclinical Alzheimer’s Disease: Implications for Prevention Trials , 2014, Neuron.
[38] Daniel R. Schonhaut,et al. Tau pathology and neurodegeneration contribute to cognitive impairment in Alzheimer’s disease , 2017, Brain : a journal of neurology.
[39] Theresa M. Harrison,et al. Cortical tau deposition follows patterns of entorhinal functional connectivity in aging , 2019, eLife.
[40] A. Nordberg,et al. Tau PET imaging: present and future directions , 2017, Molecular Neurodegeneration.
[41] Bradford C. Dickerson,et al. Tau PET imaging in aging and early Alzheimer's disease , 2015 .
[42] Derek H. Oakley,et al. Synaptic Tau Seeding Precedes Tau Pathology in Human Alzheimer's Disease Brain , 2018, Front. Neurosci..
[43] Theresa M. Harrison,et al. Longitudinal tau accumulation and atrophy in aging and alzheimer disease , 2019, Annals of neurology.
[44] M. Diamond,et al. Prion-like mechanisms in neurodegenerative diseases , 2010, Nature Reviews Neuroscience.
[45] Justin S. Sanchez,et al. The cortical origin and initial spread of medial temporal tauopathy in Alzheimer’s disease assessed with positron emission tomography , 2021, Science Translational Medicine.
[46] Daniel R. Schonhaut,et al. Tau PET patterns mirror clinical and neuroanatomical variability in Alzheimer's disease. , 2016, Brain : a journal of neurology.
[47] Mark W. Woolrich,et al. FSL , 2012, NeuroImage.
[48] D. Castillo-Carranza,et al. Tau Oligomers: Cytotoxicity, Propagation, and Mitochondrial Damage , 2017, Front. Aging Neurosci..
[49] Karl Herholz,et al. Clinical amyloid imaging in Alzheimer's disease , 2011, The Lancet Neurology.
[50] Alan C. Evans,et al. Spread of pathological tau proteins through communicating neurons in human Alzheimer’s disease , 2019, bioRxiv.
[51] A. Dale,et al. Cortical Surface-Based Analysis II: Inflation, Flattening, and a Surface-Based Coordinate System , 1999, NeuroImage.
[52] A. Salminen,et al. Clearance of misfolded and aggregated proteins by aggrephagy and implications for aggregation diseases , 2014, Ageing Research Reviews.
[53] Fan Yang,et al. A Longitudinal Model for Tau Aggregation in Alzheimer's Disease Based on Structural Connectivity , 2019, IPMI.
[54] Jungsu S. Oh,et al. Comparison of Amyloid β and Tau Spread Models in Alzheimer's Disease. , 2018, Cerebral cortex.
[55] Alan C. Evans,et al. Epidemic Spreading Model to Characterize Misfolded Proteins Propagation in Aging and Associated Neurodegenerative Disorders , 2014, PLoS Comput. Biol..
[56] Keith A. Johnson,et al. Association of Amyloid and Tau With Cognition in Preclinical Alzheimer Disease , 2019, JAMA neurology.
[57] Brian A. Gordon,et al. Cross-sectional and longitudinal atrophy is preferentially associated with tau rather than amyloid β positron emission tomography pathology , 2018, Alzheimer's & dementia.
[58] Marco Lorenzi,et al. Modeling and Inference of Spatio-Temporal Protein Dynamics Across Brain Networks , 2019, IPMI.
[59] Maxime Descoteaux,et al. On the cortical connectivity in the macaque brain: A comparison of diffusion tractography and histological tracing data , 2020, NeuroImage.
[60] Hans-Ulrich Demuth,et al. Prion-Like Behavior and Tau-dependent Cytotoxicity of Pyroglutamylated β-Amyloid , 2012, Nature.
[61] Igor Tsigelny,et al. Cell-to-cell transmission of non-prion protein aggregates , 2010, Nature Reviews Neurology.
[62] J. Weuve,et al. Alzheimer disease in the United States (2010–2050) estimated using the 2010 census , 2013, Neurology.
[63] J. Trojanowski,et al. Amyloid-Beta (Aβ) Plaques Promote Seeding and Spreading of Alpha-Synuclein and Tau in a Mouse Model of Lewy Body Disorders with Aβ Pathology , 2019, Neuron.
[64] Christopher G Schwarz,et al. Longitudinal tau PET in ageing and Alzheimer’s disease , 2018, Brain : a journal of neurology.
[65] M. Weiner,et al. A Network Diffusion Model of Disease Progression in Dementia , 2012, Neuron.
[66] C. Jack,et al. Preclinical Alzheimer's disease: Definition, natural history, and diagnostic criteria , 2016, Alzheimer's & Dementia.
[67] C. Jack,et al. NIA-AA Research Framework: Toward a biological definition of Alzheimer’s disease , 2018, Alzheimer's & Dementia.
[68] Min Jae Lee,et al. Tau degradation: The ubiquitin–proteasome system versus the autophagy-lysosome system , 2013, Progress in Neurobiology.
[69] Denise C. Park,et al. Toward defining the preclinical stages of Alzheimer’s disease: Recommendations from the National Institute on Aging-Alzheimer's Association workgroups on diagnostic guidelines for Alzheimer's disease , 2011, Alzheimer's & Dementia.
[70] Keith A. Johnson,et al. Hierarchical Organization of Tau and Amyloid Deposits in the Cerebral Cortex , 2017, JAMA neurology.
[71] H. Braak,et al. Neuropathological stageing of Alzheimer-related changes , 2004, Acta Neuropathologica.
[72] K. Blennow,et al. Therapeutic potential for peripheral clearance of misfolded brain proteins , 2018, Nature Reviews Neurology.
[73] Jorge Sepulcre,et al. Tau positron emission tomographic imaging in aging and early Alzheimer disease , 2016, Annals of neurology.