Review of 'the potential role of arterial stiffness in the pathogenesis of Alzheimer's disease'.
暂无分享,去创建一个
[1] Julian F. Thayer,et al. Pulse Pressure and Pulse Wave Velocity Are Related to Cognitive Decline in the Baltimore Longitudinal Study of Aging , 2008, Hypertension.
[2] S. Resnick,et al. Atherosclerosis, dementia, and Alzheimer disease in the Baltimore Longitudinal Study of aging cohort , 2010, Annals of neurology.
[3] J. Attems,et al. Interplay between age, cerebral small vessel disease, parenchymal amyloid-β, and tau pathology: longitudinal studies in hypertensive stroke-prone rats. , 2014, Journal of Alzheimer's disease : JAD.
[4] D. Kass,et al. Mechanisms, pathophysiology, and therapy of arterial stiffness. , 2005, Arteriosclerosis, thrombosis, and vascular biology.
[5] Aad van der Lugt,et al. Prevalence and Risk Factors of Cerebral Microbleeds: An Update of the Rotterdam Scan Study , 2010, Stroke.
[6] Eric Vicaut,et al. Carotid Intima-Media Thickness, Plaques, and Framingham Risk Score as Independent Determinants of Stroke Risk , 2005, Stroke.
[7] Michael F O'Rourke,et al. Relationship between aortic stiffening and microvascular disease in brain and kidney: cause and logic of therapy. , 2005, Hypertension.
[8] R. Sacco,et al. Prevalence and determinants of subclinical brain infarction , 2008, Neurology.
[9] S. Rabkin. Arterial stiffness: detection and consequences in cognitive impairment and dementia of the elderly. , 2012, Journal of Alzheimer's disease : JAD.
[10] Thomas G. Beach,et al. Circle of Willis Atherosclerosis Is a Risk Factor for Sporadic Alzheimer’s Disease , 2003, Arteriosclerosis, thrombosis, and vascular biology.
[11] K. Blennow,et al. Blood pressure decrease correlates with tau pathology and memory decline in hypertensive elderly , 2014, Neurobiology of Aging.
[12] D. Sparks,et al. Increased incidence of neurofibrillary tangles (NFT) in non-demented individuals with hypertension , 1995, Journal of the Neurological Sciences.
[13] J. Shi,et al. Hypoperfusion induces overexpression of β-amyloid precursor protein mRNA in a focal ischemic rodent model , 2000, Brain Research.
[14] Haibin Shi,et al. Hypertension increases the risk of cerebral microbleed in the territory of posterior cerebral artery: a study of the association of microbleeds categorized on a basis of vascular territories and cardiovascular risk factors. , 2014, Journal of stroke and cerebrovascular diseases : the official journal of National Stroke Association.
[15] H. Chabriat,et al. Cerebral microhemorrhage. , 2006, Stroke.
[16] D. Connor,et al. Circle of Willis atherosclerosis: association with Alzheimer’s disease, neuritic plaques and neurofibrillary tangles , 2006, Acta Neuropathologica.
[17] Vijay K. Venkatraman,et al. Aortic Pulse Wave Velocity Predicts Focal White Matter Hyperintensities in a Biracial Cohort of Older Adults , 2013, Hypertension.
[18] Michael W. Weiner,et al. Associations between White Matter Hyperintensities and β Amyloid on Integrity of Projection, Association, and Limbic Fiber Tracts Measured with Diffusion Tensor MRI , 2013, PloS one.
[19] Matthijs Oudkerk,et al. Incidence and Risk Factors of Silent Brain Infarcts in the Population-Based Rotterdam Scan Study , 2003, Stroke.
[20] K. Kantarci. Molecular Imaging of Alzheimer Disease Pathology , 2014, American Journal of Neuroradiology.
[21] Aad van der Lugt,et al. O3-04-07 Prevalence and risk factors of cerebral microbleeds in the Rotterdam scan study , 2006, Alzheimer's & Dementia.
[22] Peter W de Leeuw,et al. Increased Aortic Pulse Wave Velocity Is Associated With Silent Cerebral Small-Vessel Disease in Hypertensive Patients , 2008, Hypertension.
[23] S. D. Preston,et al. Cerebrovascular disease is a major factor in the failure of elimination of Abeta from the aging human brain: implications for therapy of Alzheimer's disease. , 2002, Annals of the New York Academy of Sciences.
[24] Peter R Luijten,et al. In Vivo Detection of Cerebral Cortical Microinfarcts with High-Resolution 7T MRI , 2013, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.
[25] Cindee M. Madison,et al. Associations between Alzheimer disease biomarkers, neurodegeneration, and cognition in cognitively normal older people. , 2013, JAMA neurology.
[26] W. Markesbery,et al. AD lesions and infarcts in demented and non‐demented Japanese‐American men , 2005, Annals of neurology.
[27] Qian-Li Xue,et al. Change in Blood Pressure and Incident Dementia: A 32-Year Prospective Study , 2009, Hypertension.
[28] V. Gudnason,et al. Coronary Artery Calcium, Brain Function and Structure: The AGES-Reykjavik Study , 2010, Stroke.
[29] Timo Erkinjuntti,et al. The concept of vascular cognitive impairment. , 2009, Frontiers of neurology and neuroscience.
[30] S. Strickland,et al. Fibrinogen and altered hemostasis in Alzheimer's disease. , 2012, Journal of Alzheimer's disease : JAD.
[31] T. Manolio,et al. Lacunar infarcts defined by magnetic resonance imaging of 3660 elderly people: the Cardiovascular Health Study. , 1998, Archives of neurology.
[32] M. Safar,et al. Pulse pressure and antihypertensive agents. , 2005, Hypertension.
[33] C. Rowe,et al. Longitudinal assessment of Aβ and cognition in aging and Alzheimer disease , 2011, Annals of neurology.
[34] Daniel J. R. Christensen,et al. Sleep Drives Metabolite Clearance from the Adult Brain , 2013, Science.
[35] Deborah Blacker,et al. The Association Between Blood Pressure and Incident Alzheimer Disease: A Systematic Review and Meta-analysis , 2011, Epidemiology.
[36] V. Haroutunian,et al. Less Alzheimer disease neuropathology in medicated hypertensive than nonhypertensive persons , 2009, Neurology.
[37] Cindee M. Madison,et al. The aging brain and cognition: contribution of vascular injury and aβ to mild cognitive dysfunction. , 2013, JAMA neurology.
[38] G. Mitchell. Effects of central arterial aging on the structure and function of the peripheral vasculature: implications for end-organ damage. , 2008, Journal of applied physiology.
[39] M. Arfan Ikram,et al. Arterial Stiffness and Cerebral Small Vessel Disease: The Rotterdam Scan Study , 2012 .
[40] Wei Zhang,et al. Apo E4 and lipoprotein-associated phospholipase A2 synergistically increase cardiovascular risk. , 2012, Atherosclerosis.
[41] J. Lodder,et al. Brain Microbleeds Are Associated With Ambulatory Blood Pressure Levels in a Hypertensive Population , 2008, Hypertension.
[42] Jae Seung Kim,et al. Synergistic effects of ischemia and β-amyloid burden on cognitive decline in patients with subcortical vascular mild cognitive impairment. , 2014, JAMA psychiatry.
[43] Geert Jan Biessels,et al. Cerebral Microinfarcts: A Systematic Review of Neuropathological Studies , 2012, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.
[44] Lewis H Kuller,et al. In vivo assessment of amyloid‐β deposition in nondemented very elderly subjects , 2013, Annals of neurology.
[45] Evan Fletcher,et al. Coevolution of white matter hyperintensities and cognition in the elderly , 2012, Neurology.
[46] J. Sacre,et al. Exercise and Dietary Influences on Arterial Stiffness in Cardiometabolic Disease , 2014, Hypertension.
[47] W. Abhayaratna,et al. Arterial Pulse Wave Velocity and Cognition With Advancing Age , 2009, Hypertension.
[48] Jonathan Stone,et al. Microvascular pathology in the aging human brain: Evidence that senile plaques are sites of microhaemorrhages , 2006, Neurobiology of Aging.
[49] Paul Maruff,et al. Aβ and cognitive change: Examining the preclinical and prodromal stages of Alzheimer's disease , 2013, Alzheimer's & Dementia.
[50] P. Martínez-Martín,et al. Role of Hypertension in Aggravating Aβ Neuropathology of AD Type and Tau-Mediated Motor Impairment , 2009, Cardiovascular psychiatry and neurology.
[51] J. Claassen,et al. Vascular Aspects of Cognitive Impairment and Dementia , 2013, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.
[52] Denise C. Park,et al. Risk factors for β-amyloid deposition in healthy aging: vascular and genetic effects. , 2013, JAMA neurology.
[53] I. Skoog,et al. Blood Pressure Trajectories From Midlife to Late Life in Relation to Dementia in Women Followed for 37 Years , 2012, Hypertension.
[54] Y. Ihara,et al. Spatial resolution of the primary beta-amyloidogenic process induced in postischemic hippocampus. , 1994, The Journal of biological chemistry.
[55] C. Iadecola,et al. Converging Pathogenic Mechanisms in Vascular and Neurodegenerative Dementia , 2003, Stroke.
[56] A. Hofman,et al. Prevalence and Risk Factors of Silent Brain Infarcts in the Population-Based Rotterdam Scan Study , 2002, Stroke.
[57] H. Chabriat,et al. Cortical Neuronal Apoptosis in CADASIL , 2006, Stroke.
[58] D. Norris,et al. Hypertension and Cerebral Diffusion Tensor Imaging in Small Vessel Disease , 2010, Stroke.
[59] K. Jin,et al. Microarray analysis of hippocampal gene expression in global cerebral ischemia , 2001, Annals of neurology.
[60] C. Jack,et al. Biomarker Modeling of Alzheimer’s Disease , 2013, Neuron.
[61] J. Francis,et al. The Effect of Obesity and Weight Loss on Aortic Pulse Wave Velocity as Assessed by Magnetic Resonance Imaging , 2010, Obesity.
[62] Daniel Levy,et al. Arterial and cardiac aging: major shareholders in cardiovascular disease enterprises: Part I: aging arteries: a "set up" for vascular disease. , 2003, Circulation.
[63] L A Hansen,et al. The importance of neuritic plaques and tangles to the development and evolution of AD , 2004, Neurology.
[64] A Hofman,et al. Hypertension and cerebral white matter lesions in a prospective cohort study. , 2002, Brain : a journal of neurology.
[65] L. Kuller,et al. Coronary Artery Calcium: Associations with Brain Magnetic Resonance Imaging Abnormalities and Cognitive Status , 2005, Journal of the American Geriatrics Society.
[66] S. Black,et al. Vascular Contributions to Cognitive Impairment and Dementia: A Statement for Healthcare Professionals From the American Heart Association/American Stroke Association , 2011, Stroke.
[67] K. Sutton-Tyrrell,et al. Effects of weight loss and insulin reduction on arterial stiffness in the SAVE trial , 2012, Cardiovascular Diabetology.
[68] Karen Bandeen-Roche,et al. Midlife hypertension and 20-year cognitive change: the atherosclerosis risk in communities neurocognitive study. , 2014, JAMA neurology.
[69] E. Lakatta,et al. Proinflammation: the key to arterial aging , 2014, Trends in Endocrinology & Metabolism.
[70] Edward G Lakatta,et al. Arterial and Cardiac Aging: Major Shareholders in Cardiovascular Disease Enterprises: Part III: Cellular and Molecular Clues to Heart and Arterial Aging , 2003, Circulation.
[71] J Bohl,et al. Staging of Alzheimer-Related Cortical Destruction , 1997, International Psychogeriatrics.
[72] T. Nihashi,et al. Expression and Distribution of Beta Amyloid Precursor Protein and Beta Amyloid Peptide in Reactive Astrocytes After Transient Middle Cerebral Artery Occlusion , 2001, Acta Neurochirurgica.
[73] Jordan Muraskin,et al. White matter hyperintensities and cerebral amyloidosis: necessary and sufficient for clinical expression of Alzheimer disease? , 2013, JAMA neurology.
[74] I. Kullo,et al. Aortic pulse wave velocity is associated with measures of subclinical target organ damage. , 2011, JACC. Cardiovascular imaging.
[75] L. Kuller,et al. Pulse wave velocity is associated with β-amyloid deposition in the brains of very elderly adults , 2013, Neurology.
[76] PatrickLacolley,et al. Vascular Structure and Function Is Correlated to Cognitive Performance and White Matter Hyperintensities in Older Hypertensive Patients With Subjective Memory Complaints , 2009 .
[77] W. Markesbery,et al. Brain infarction and the clinical expression of Alzheimer disease. The Nun Study. , 1997, JAMA.
[78] D. Selkoe. Alzheimer's disease: genes, proteins, and therapy. , 2001, Physiological reviews.
[79] V. Hachinski,et al. Changing perspectives regarding late-life dementia , 2009, Nature Reviews Neurology.
[80] T. Beach,et al. Cortical and Leptomeningeal Cerebrovascular Amyloid and White Matter Pathology in Alzheimer’s Disease , 2003, Molecular medicine.
[81] Geert Jan Biessels,et al. Diabetes and other vascular risk factors for dementia: which factor matters most? A systematic review. , 2008, European journal of pharmacology.
[82] G. Donnan,et al. Risk factors for lacunar stroke: A case-control transesophageal echocardiographic study , 2000, Neurology.
[83] C. Jack,et al. Cardiovascular risk factors, cortisol, and amyloid-β deposition in Alzheimer's Disease Neuroimaging Initiative , 2012, Alzheimer's & Dementia.
[84] Wiro J. Niessen,et al. Atherosclerotic calcification relates to cognitive function and to brain changes on magnetic resonance imaging , 2012, Alzheimer's & Dementia.
[85] J. Zwanenburg,et al. High resolution imaging of cerebral small vessel disease with 7 T MRI. , 2014, Acta neurochirurgica. Supplement.
[86] P. Scheltens,et al. Progression of cerebral white matter hyperintensities on MRI is related to diastolic blood pressure , 1998, Neurology.
[87] L. Kuller,et al. Arterial stiffness and β-amyloid progression in nondemented elderly adults. , 2014, JAMA neurology.
[88] J. Westerbacka,et al. Insulin resistance, arterial stiffness and wave reflection. , 2007, Advances in cardiology.
[89] P. Passmore,et al. Blood pressure lowering in patients without prior cerebrovascular disease for prevention of cognitive impairment and dementia. , 2009, The Cochrane database of systematic reviews.
[90] D. Levy,et al. Relations of arterial stiffness and endothelial function to brain aging in the community , 2013, Neurology.
[91] A. Bachoud-Lévi,et al. Antihypertensive classes, cognitive decline and incidence of dementia: a network meta-analysis , 2013, Journal of hypertension.
[92] David A Wolk,et al. Cerebrovascular atherosclerosis correlates with Alzheimer pathology in neurodegenerative dementias. , 2012, Brain : a journal of neurology.
[93] B. Balkau,et al. Hypertension and vascular dynamics in men and women with metabolic syndrome. , 2013, Journal of the American College of Cardiology.
[94] R. Carare,et al. Lymphatic drainage of the brain and the pathophysiology of neurological disease , 2008, Acta Neuropathologica.
[95] A. Fleisher,et al. Blood pressure is associated with higher brain amyloid burden and lower glucose metabolism in healthy late middle-age persons , 2012, Neurobiology of Aging.
[96] Association between the intima-media thickness of the brachiocephalic trunk and white matter hyperintensity in brain MRI , 2013, Hypertension Research.
[97] M. O'Rourke,et al. Mechanical factors in arterial aging: a clinical perspective. , 2007, Journal of the American College of Cardiology.
[98] Morris J. Brown,et al. Comparison of the Effects of Antihypertensive Agents on Central Blood Pressure and Arterial Stiffness in Isolated Systolic Hypertension , 2009, Hypertension.
[99] J. Baker,et al. Arterial pulse wave velocity, inflammatory markers, pathological GH and IGF states, cardiovascular and cerebrovascular disease , 2008, Vascular health and risk management.
[100] C. Annweiler,et al. Blood pressure levels and brain volume reduction: a systematic review and meta-analysis , 2013, Journal of hypertension.
[101] R. Collins,et al. Blood pressure, stroke, and coronary heart disease Part 1, prolonged differences in blood pressure: prospective observational studies corrected for the regression dilution bias , 1990, The Lancet.
[102] M. Safar,et al. Arterial stiffness in hypertension , 2006 .
[103] S. D. Preston,et al. Cerebrovascular Disease Is a Major Factor in the Failure of Elimination of Aβ from the Aging Human Brain , 2002 .
[104] H. Struijker‐Boudier,et al. Expert consensus document on arterial stiffness: methodological issues and clinical applications. , 2006, European heart journal.
[105] Michael Unser,et al. Effect of Aging on Elastin Functionality in Human Cerebral Arteries , 2008, Stroke.
[106] J. Schneider,et al. Cerebral infarctions and the likelihood of dementia from Alzheimer disease pathology , 2004, Neurology.
[107] B. Mazoyer,et al. Large-vessel correlates of cerebral small-vessel disease , 2013, Neurology.
[108] P. Grammas,et al. A new paradigm for the treatment of Alzheimer's disease: targeting vascular activation. , 2014, Journal of Alzheimer's disease : JAD.
[109] L. Brush,et al. McDonaldʼs Blood Flow in Arteries , 1991 .
[110] H. Chabriat,et al. Cerebral microhemorrhage. Commentary , 2006 .
[111] M. Safar,et al. The Cardiovascular Continuum extended: Aging effects on the aorta and microvasculature , 2010, Vascular medicine.
[112] R O Weller,et al. Solutes, but not cells, drain from the brain parenchyma along basement membranes of capillaries and arteries: significance for cerebral amyloid angiopathy and neuroimmunology , 2008, Neuropathology and applied neurobiology.
[113] Olivier Salvado,et al. Regional dynamics of amyloid-β deposition in healthy elderly, mild cognitive impairment and Alzheimer's disease: a voxelwise PiB-PET longitudinal study. , 2012, Brain : a journal of neurology.
[114] C. Rowe,et al. Amyloid β deposition, neurodegeneration, and cognitive decline in sporadic Alzheimer's disease: a prospective cohort study , 2013, The Lancet Neurology.
[115] K. Jellinger. Neuropathological Aspects of Alzheimer Disease, Parkinson Disease and Frontotemporal Dementia , 2008, Neurodegenerative Diseases.
[116] Maiken Nedergaard,et al. Cerebral Arterial Pulsation Drives Paravascular CSF–Interstitial Fluid Exchange in the Murine Brain , 2013, The Journal of Neuroscience.
[117] G. E. Vates,et al. A Paravascular Pathway Facilitates CSF Flow Through the Brain Parenchyma and the Clearance of Interstitial Solutes, Including Amyloid β , 2012, Science Translational Medicine.