Thesis

18 Chapter 1 40. Ottoy J, Verhaeghe J, Niemantsverdriet E, De Roeck E, Wyffels L, Ceyssens S, et al. (18)F-FDG PET, the early phases and the delivery rate of (18)F-AV45 PET as proxies of cerebral blood flow in Alzheimer’s disease: Validation against (15)O-H2O PET. Alzheimer’s & dementia : the journal of the Alzheimer’s Association. 2019. 41. Hays CC, Zlatar ZZ, Wierenga CE. The Utility of Cerebral Blood Flow as a Biomarker of Preclinical Alzheimer’s Disease. Cellular and molecular neurobiology. 2016;36(2):167-79. 42. Zlokovic BV. Neurovascular pathways to neurodegeneration in Alzheimer’s disease and other disorders. Nature reviews Neuroscience. 2011;12(12):723-38. 43. Chen Y, Wolk DA, Reddin JS, Korczykowski M, Martinez PM, Musiek ES, et al. Voxellevel comparison of arterial spin-labeled perfusion MRI and FDG-PET in Alzheimer disease. Neurology. 2011;77(22):1977-85. 44. Musiek ES, Chen Y, Korczykowski M, Saboury B, Martinez PM, Reddin JS, et al. Direct comparison of fluorodeoxyglucose positron emission tomography and arterial spin labeling magnetic resonance imaging in Alzheimer’s disease. Alzheimer’s & dementia : the journal of the Alzheimer’s Association. 2012;8(1):51-9. 45. Fazlollahi A, Calamante F, Liang X, Bourgeat P, Raniga P, Dore V, et al. Increased cerebral blood flow with increased amyloid burden in the preclinical phase of alzheimer’s disease. Journal of magnetic resonance imaging : JMRI. 2020;51(2):505-13. 46. Sojkova J, Beason-Held L, Zhou Y, An Y, Kraut MA, Ye W, et al. Longitudinal cerebral blood flow and amyloid deposition: an emerging pattern? Journal of nuclear medicine : official publication, Society of Nuclear Medicine. 2008;49(9):1465-71. 47. Mattsson N, Tosun D, Insel PS, Simonson A, Jack CR, Jr., Beckett LA, et al. Association of brain amyloid-β with cerebral perfusion and structure in Alzheimer’s disease and mild cognitive impairment. Brain : a journal of neurology. 2014;137(Pt 5):1550-61. 48. Bilgel M, Beason-Held L, An Y, Zhou Y, Wong DF, Resnick SM. Longitudinal evaluation of surrogates of regional cerebral blood flow computed from dynamic amyloid PET imaging. Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism. 2020;40(2):288-97. 49. Albrecht D, Isenberg AL, Stradford J, Monreal T, Sagare A, Pachicano M, et al. Associations between Vascular Function and Tau PET Are Associated with Global Cognition and Amyloid. The Journal of neuroscience : the official journal of the Society for Neuroscience. 2020;40(44):8573-86. 50. Michels L, Warnock G, Buck A, Macauda G, Leh SE, Kaelin AM, et al. Arterial spin labeling imaging reveals widespread and Aβ-independent reductions in cerebral blood flow in elderly apolipoprotein epsilon-4 carriers. Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism. 2016;36(3):581-95. 51. Bangen KJ, Clark AL, Edmonds EC, Evangelista ND, Werhane ML, Thomas KR, et al. Cerebral Blood Flow and Amyloid-β Interact to Affect Memory Performance in Cognitively Normal Older Adults. Front Aging Neurosci. 2017;9:181. 52. Funaki K, Nakajima S, Noda Y, Wake T, Ito D, Yamagata B, et al. Can we predict amyloid deposition by objective cognition and regional cerebral blood flow in patients with subjective cognitive decline? Psychogeriatrics : the official journal of the Japanese Psychogeriatric Society. 2019;19(4):325-32.

RkJQdWJsaXNoZXIy MjY0ODMw