Thesis

224 Chapter 8 15. Lammertsma AA. Forward to the past: the case for quantitative PET imaging. J Nuclear Med. 2017;58(7):1019–24. 16. Gunn RN, Lammertsma AA, Hume SP, Cunningham VJ. Parametric imaging of ligand-receptor binding in PET using a simplified reference region model. NeuroImage. 1997;6(4):279– 87. 17. Verfaillie SC, Golla SSV, Timmers T, Tuncel H, van der Weijden CWJ, Schober P, et al. Repeatability of parametric methods for [18F]florbetapir imaging in Alzheimer’s disease and healthy controls: A test-retest study. J Cereb Blood Flow Metab. 2021;41(3):569–78. 18. Joshi AD, Pontecorvo MJ, Clark CM, Carpenter AP, Jennings DL, Sadowsky CH, et al. Performance characteristics of amyloid PET with florbetapir F 18 in patients with alzheimer’s disease and cognitively normal subjects. J Nuclear Med. 2012;53(3):378–84. 19. Bucci M, Savitcheva I, Farrar G, Salvadó G, Collij L, Doré V, et al. A multisite analysis of the concordance between visual image interpretation and quantitative analysis of [(18) F]flutemetamol amyloid PET images. Eur J Nucl Med Mol Imaging. 2021;48(7):2183–99. 20. Shimokawa N, Akamatsu G, Kadosaki M, Sasaki M. Feasibility study of a PET-only amyloid quantification method: a comparison with visual interpretation. Ann Nucl Med. 2020;34(9):629–35. 21. Berron D, Vogel JW, Insel PS, Pereira JB, Xie L, Wisse LEM, et al. Early stages of tau pathology and its associations with functional connectivity, atrophy and memory. Brain J Neurol. 2021;144(9):2771–83. 22. Rhodius-Meester HFM, Benedictus MR, Wattjes MP, Barkhof F, Scheltens P, Muller M, et al. MRI visual ratings of brain atrophy and white matter hyperintensities across the spectrum of cognitive decline are differently affected by age and diagnosis. Front Aging Neurosci. 2017;9:117. 23. Fazekas F, Chawluk JB, Alavi A, Hurtig HI, Zimmerman RA. MR signal abnormalities at 1.5 T in Alzheimer’s dementia and normal aging. AJR Am J Roentgenol. 1987;149(2):351–6. 24. Oh M, Seo M, Oh SY, Kim H, Choi BW, Oh JS, et al. Clinical significance of visually equivocal amyloid PET findings from the Alzheimer’s Disease Neuroimaging Initiative cohort. Neuroreport. 2018;29(7):553–8. 25. Okada Y, Kato T, Iwata K, Kimura Y, Nakamura A, Hattori H, et al. Evaluation of PiB visual interpretation with CSF Aβ and longitudinal SUVR in J-ADNI study. Ann Nucl Med. 2020;34(2):108–18. 26. Bischof GN, Bartenstein P, Barthel H, van Berckel B, Doré V, van Eimeren T, et al. Toward a universal readout for (18)F-labeled amyloid tracers: the CAPTAINs study. J Nucl Med. 2021;62(7):999–1005. 27. Small SA, Duff K. Linking Abeta and tau in late-onset Alzheimer’s disease: a dual pathway hypothesis. Neuron. 2008;60(4):534–42. 28. Burnham SC, Bourgeat P, Doré V, Savage G, Brown B, Laws S, et al. Clinical and cognitive trajectories in cognitively healthy elderly individuals with suspected non-Alzheimer’s disease pathophysiology (SNAP) or Alzheimer’s disease pathology: a longitudinal study. Lancet Neurol. 2016;15(10):1044–53.

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