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16     CHAPTER 2  Clinical motivation




                             F. Mackinder, S. Bouton, K. Ayoub, R. Chopra, D. King, A. Karthikesalingam, C.O. Hughes,
                             R. Raine, J. Hughes, D.A. Sim, C. Egan, A. Tufail, H. Montgomery, D. Hassabis, G. Rees,
                             T. Back, P.T. Khaw, M. Suleyman, J. Cornebise, P.A. Keane, O. Ronneberger, Clinically ap-
                             plicable deep learning for diagnosis and referralin retinal disease, Nat. Med. 24 (9) (2018)
                             1342–1350.
                          [20]  R. Kawasaki, J.J. Wang, E. Rochtchina, A.J. Lee, T.Y. Wong, P. Mitchell, Retinal vessel
                             caliber is associated with the 10-year incidence of glaucoma: the Blue Mountains Eye
                             Study, Ophthalmology 120 (1) (2013) 84–90.
                          [21]  R. Kawasaki, E. Nagano, M. Uno, M. Okada, Y. Kawasaki, A. Kitamura, Retinal vascu-
                             lar features associated with risk of branch retinal vein occlusion, Curr. Eye Res. 38 (9)
                             (2013) 989–993.
                          [22]  R.M. Gunn, Ophthalmoscopic evidence of (1) arterial changes associated with chronic
                             renal diseases and (2) of increased arterial tension, Trans. Am. Ophthalmol. Soc. 12
                             (1892) 124–125.
                          [23]  N.M. Keith, H.P. Wagener, N.W. Barker, Some different types of essential hypertension:
                             their course and prognosis, Am J Med Sci 197 (1939) 332–343.
                          [24]  L.D. Hubbard, R.J. Brothers, W.N. King, L.X. Clegg, R. Klein, L.S. Cooper, A.R. Sharrett,
                             M.D. Davis, J. Cai, Methods for evaluation of retinal microvascular abnormalities asso-
                             ciated with hypertension/sclerosis in the Atherosclerosis Risk in Communities Study,
                             Ophthalmology 106 (12) (1999) 2269–2280.
                          [25]  M.D. Knudtson, K.E. Lee, L.D. Hubbard, T.Y. Wong, R. Klein, B.E. Klein, Revised for-
                             mulas for summarizing retinal vessel diameters, Curr. Eye Res. 27 (3) (2003) 143–149.
                          [26]  V.  Daien, I.  Carriere, R.  Kawasaki, J.P.  Cristol, M.  Villain, P.  Fesler, K.  Ritchie,
                             C. Delcourt, Retinal vascular caliber is associated with cardiovascular biomarkers of
                             oxidative stress and inflammation: the POLA study, PLoS ONE 8 (7) (2013). e71089.
                          [27]  K. Saito, Y. Tanabe, R. Kawasaki, M. Daimon, T. Oizumi, T. Kato, S. Kawata, T. Kayama,
                             H. Yamashita, Is retinal vasculature change associated with risk of obesity? Longitudinal
                             cohort study in Japanese adults: the Funagata study, J. Diabetes Investig. 2 (3) (2011)
                             225–232.
                          [28]  S.J.  Lupton, C.L.  Chiu, L.A.  Hodgson, J.  Tooher, S.  Lujic, R.  Ogle,  T.Y.  Wong,
                             A. Hennessy, J.M. Lind, Temporal changes in retinal microvascular caliber and blood
                             pressure during pregnancy, Hypertension 61 (4) (2013) 880–885.
                          [29]  S.J. Lupton, C.L. Chiu, L.A. Hodgson, J. Tooher, R. Ogle, T.Y. Wong, A. Hennessy,
                             J.M. Lind, Changes in retinal microvascular caliber precede the clinical onset of pre-
                             eclampsia, Hypertension 62 (5) (2013) 899–904.
                          [30]  M. Yanagi, M. Misumi, R. Kawasaki, I. Takahashi, K. Itakura, S. Fujiwara, M. Akahoshi,
                             K. Neriishi, T.Y. Wong, Y. Kiuchi, Is the association between smoking and the retinal
                             venular diameter reversible following smoking cessation? Invest. Ophthalmol. Vis. Sci.
                             55 (1) (2014) 405–411.
                          [31]  A.D. Hughes, A.V. Stanton, A.S. Jabbar, N. Chapman, M.E. Martinez-Perez, S.A. McG
                             Thom, Effect of antihypertensive treatment on retinal microvascular changes in hyper-
                             tension, J. Hypertens. 26 (8) (2008) 1703–1707.
                          [32]  M. Sasaki, W.L. Gan, R. Kawasaki, L. Hodgson, K.Y. Lee, T.Y. Wong, E. Lamoureux,
                             L. Robman, R. Guymer, Effect of simvastatin on retinal vascular caliber: the Age-Related
                             Maculopathy Statin Study, Acta Ophthalmol. 91 (5) (2013) e418–e419.
                          [33]  K.  McGeechan,  G.  Liew,  P.  Macaskill,  L.  Irwig,  R.  Klein, B.E.  Klein, J.J.  Wang,
                             P.  Mitchell, J.R.  Vingerling, P.T.  de Jong, J.C.  Witteman, M.M.  Breteler, J.  Shaw,
                             P.  Zimmet,  T.Y.  Wong, Prediction of incident stroke events based on retinal vessel
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