Blood-Based Biomarker Candidates of Cerebral Amyloid Using PiB PET in Non-Demented Elderly.
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C. T. Hehir | S. Lovestone | S. Kiddle | M. Ward | M. Thambisetty | A. Hye | M. Khondoker | S. Westwood | S. Lynham | J. Graf | C. Bazenet | R. Sáinz-Fuertes | A. Baird | R. Leung | N. Ashton | D. Baker | E. Leoni | Cristina Cereda | R. Sainz-Fuertes | Abdul Hye | Rufina Leung
[1] R. Dobson,et al. Blood Protein Markers of Neocortical Amyloid-β Burden: A Candidate Study Using SOMAscan Technology , 2015, Journal of Alzheimer's disease : JAD.
[2] Lennart Thurfjell,et al. Blood protein predictors of brain amyloid for enrichment in clinical trials? , 2015, Alzheimer's & dementia.
[3] Arthur W. Toga,et al. Blood-Brain Barrier Breakdown in the Aging Human Hippocampus , 2015, Neuron.
[4] Magda Tsolaki,et al. Plasma proteins predict conversion to dementia from prodromal disease , 2014, Alzheimer's & Dementia.
[5] J. Cummings,et al. Alzheimer’s disease drug-development pipeline: few candidates, frequent failures , 2014, Alzheimer's Research & Therapy.
[6] H. Kiiveri,et al. A blood-based predictor for neocortical Aβ burden in Alzheimer’s disease: results from the AIBL study , 2014, Molecular Psychiatry.
[7] J. Karlawish,et al. The A4 Study: Stopping AD Before Symptoms Begin? , 2014, Science Translational Medicine.
[8] Nick C Fox,et al. Two phase 3 trials of bapineuzumab in mild-to-moderate Alzheimer's disease. , 2014, The New England journal of medicine.
[9] E. Siemers,et al. Phase 3 trials of solanezumab for mild-to-moderate Alzheimer's disease. , 2014, The New England journal of medicine.
[10] Magda Tsolaki,et al. Candidate blood proteome markers of Alzheimer's disease onset and progression: a systematic review and replication study. , 2013, Journal of Alzheimer's disease : JAD.
[11] Thomas W. Mühleisen,et al. Genome-wide association study identifies variants at CLU and PICALM associated with Alzheimer's disease , 2013, Nature Genetics.
[12] Justin Bedo,et al. Blood-based protein biomarkers for diagnosis of Alzheimer disease. , 2012, Archives of neurology.
[13] Magda Tsolaki,et al. Plasma Based Markers of [11C] PiB-PET Brain Amyloid Burden , 2012, PloS one.
[14] Markus Rudin,et al. Contrast-Enhanced Magnetic Resonance Microangiography Reveals Remodeling of the Cerebral Microvasculature in Transgenic ArcAβ Mice , 2012, The Journal of Neuroscience.
[15] Yi Zhang,et al. Plasma Biomarkers of Brain Atrophy in Alzheimer's Disease , 2011, PloS one.
[16] F. LaFerla,et al. Blocking IL-1 Signaling Rescues Cognition, Attenuates Tau Pathology, and Restores Neuronal β-Catenin Pathway Function in an Alzheimer’s Disease Model , 2011, The Journal of Immunology.
[17] Guanghua Xiao,et al. A Blood-Based Algorithm for the Detection of Alzheimer’s Disease , 2011, Dementia and Geriatric Cognitive Disorders.
[18] L. Ferrucci,et al. Proteome-based plasma markers of brain amyloid-β deposition in non-demented older individuals. , 2011, Journal of Alzheimer's disease : JAD.
[19] C. Rowe,et al. Amyloid imaging results from the Australian Imaging, Biomarkers and Lifestyle (AIBL) study of aging , 2010, Neurobiology of Aging.
[20] S. Strickland,et al. Fibrinogen and β-Amyloid Association Alters Thrombosis and Fibrinolysis: A Possible Contributing Factor to Alzheimer's Disease , 2010, Neuron.
[21] C. Rowe,et al. The Australian Imaging, Biomarkers and Lifestyle (AIBL) study of aging: methodology and baseline characteristics of 1112 individuals recruited for a longitudinal study of Alzheimer's disease , 2009, International Psychogeriatrics.
[22] Susan M Resnick,et al. Longitudinal Cerebral Blood Flow and Amyloid Deposition: An Emerging Pattern? , 2008, Journal of Nuclear Medicine.
[23] Eileen Daly,et al. Proteome-based identification of plasma proteins associated with hippocampal metabolism in early Alzheimer’s disease , 2008, Journal of Neurology.
[24] J. Ryu,et al. A leaky blood–brain barrier, fibrinogen infiltration and microglial reactivity in inflamed Alzheimer’s disease brain , 2008, Journal of cellular and molecular medicine.
[25] S. Lovestone,et al. Proteome-based plasma biomarkers for Alzheimer's disease. , 2006, Brain : a journal of neurology.
[26] H. Zou,et al. Regularization and variable selection via the elastic net , 2005 .
[27] S. Resnick,et al. Longitudinal Magnetic Resonance Imaging Studies of Older Adults: A Shrinking Brain , 2003, The Journal of Neuroscience.
[28] David Arenberg,et al. Normal Human Aging: The Baltimore Longitudinal Study on Aging , 1984 .
[29] A. H. Norris,et al. Age-related differences in lactate distribution kinetics following maximal exercise , 1979, European Journal of Applied Physiology and Occupational Physiology.
[30] E. Schneider. Cell replication and aging: in vitro and in vivo studies. , 1979, Federation proceedings.
[31] A. H. Norris,et al. The effect of age on creatinine clearance in men: a cross-sectional and longitudinal study. , 1976, Journal of gerontology.
[32] A. H. Norris,et al. Activities and attitudes of participants in the Baltimore longitudinal study. , 1966, Journal of gerontology.
[33] S. Strickland,et al. Fibrinogen and altered hemostasis in Alzheimer's disease. , 2012, Journal of Alzheimer's disease : JAD.
[34] Susan M. Resnick,et al. APOE ε 4 GENOTYPE AND LONGITUDINAL CHANGES IN CEREBRAL BLOOD FLOW IN NORMAL AGING , 2010 .
[35] S. Resnick,et al. APOE epsilon4 genotype and longitudinal changes in cerebral blood flow in normal aging. , 2010, Archives of neurology.
[36] Nick C Fox,et al. Letter abstract - Genome-wide association study identifies variants at CLU and PICALM associated with Alzheimer's Disease , 2009 .
[37] C. Jack,et al. Alzheimer's Disease Neuroimaging Initiative , 2008 .