Holden BA, Fricke TR, Wilson DA, Jong M, Naidoo KS, Sankaridurg P, et al. Global prevalence of myopia and high myopia and temporal trends from 2000 through 2050. Ophthalmology. 2016;123:1036–42.
Ohno-Matsui K, Lai TY, Lai CC, Cheung CM. Updates of pathologic myopia. Prog Retin Eye Res. 2016;52:156–87.
Wong TY, Ferreira A, Hughes R, Carter G, Mitchell P. Epidemiology and disease burden of pathologic myopia and myopic choroidal neovascularization: an evidence-based systematic review. Am J Ophthalmol. 2014;157:9–25.
Iwase A, Araie M, Tomidokoro A, Yamamoto T, Shimizu H, Kitazawa Y. Prevalence and causes of low vision and blindness in a Japanese adult population: the Tajimi Study. Ophthalmology. 2006;113:1354–62.
Xu L, Wang Y, Li Y, Cui T, Li J, Jonas JB. Causes of blindness and visual impairment in urban and rural areas in Beijing: the Beijing Eye Study. Ophthalmology. 2006;113(1134):e1-11.
Jonas JB, Jonas RA, Bikbov MM, Wang YX, Panda-Jonas S. Myopia: Histology, clinical features, and potential implications for the etiology of axial elongation. Prog Retin Eye Res. 2022;96:101156.
Jonas JB, Panda-Jonas S, Wang YX. Glaucoma neurodegeneration and myopia. Prog Brain Res. 2020;257:1–17.
Jonas JB, Weber P, Nagaoka N, Ohno-Matsui K. Glaucoma in high myopia and parapapillary delta zone. PLoS ONE. 2017;12: e0175120.
Article PubMed PubMed Central Google Scholar
Jonas JB, Wang YX, Dong L, Panda-Jonas S. High myopia and glaucoma-like optic neuropathy. Asia Pac J Ophthalmol (Phila). 2020;9:234–8.
Xu L, Wang Y, Wang S, Wang Y, Jonas JB. High myopia and glaucoma susceptibility the Beijing Eye Study. Ophthalmology. 2007;114:216–20.
Wang YX, Panda-Jonas S, Jonas JB. Optic nerve head anatomy in myopia and glaucoma, including parapapillary zones alpha, beta, gamma and delta: histology and clinical features. Prog Retin Eye Res. 2021;83: 100933.
Ohno-Matsui K, Shimada N, Yasuzumi K, Hayashi K, Yoshida T, Kojima A, et al. Long-term development of significant visual field defects in highly myopic eyes. Am J Ophthalmol. 2011;152:256–65.
Nagaoka N, Jonas JB, Morohoshi K, Moriyama M, Shimada N, Yoshida T, et al. Glaucomatous-type optic discs in high myopia. PLoS ONE. 2015;10: e0138825.
Article PubMed PubMed Central Google Scholar
Nagaoka N, Yoshida T. Optic disc changes in pathologic myopia. In: Ohno-Matsui K, editor. Atlas of Pathologic Myopia. Singapore: Springer; 2020. p. 143–58.
Mainster MA, Desmettre T, Querques G, Turner PL, Ledesma-Gil G. Scanning laser ophthalmoscopy retroillumination: applications and illusions. Int J Retina Vitreous. 2022;8: 71.
Article PubMed PubMed Central Google Scholar
Corradetti G, Byon I, Corvi F, Cozzi M, Staurenghi G, Sadda SR. Retro mode illumination for detecting and quantifying the area of geographic atrophy in non-neovascular age-related macular degeneration. Eye (Lond). 2022;36:1560–6.
Pilotto E, Sportiello P, Alemany-Rubio E, Vujosevic S, Segalina S, Fregona I, et al. Confocal scanning laser ophthalmoscope in the retromode imaging modality in exudative age-related macular degeneration. Graefes Arch Clin Exp Ophthalmol. 2013;251:27–34.
Vujosevic S, Trento B, Bottega E, Urban F, Pilotto E, Midena E. Scanning laser ophthalmoscopy in the retromode in diabetic macular oedema. Acta Ophthalmol. 2012;90:e374–80.
Tanaka Y, Shimada N, Ohno-Matsui K, Hayashi W, Hayashi K, Moriyama M, et al. Retromode retinal imaging of macular retinoschisis in highly myopic eyes. Am J Ophthalmol. 2010;149(635–40): e1.
Yamamoto M, Mizukami S, Tsujikawa A, Miyoshi N, Yoshimura N. Visualization of cystoid macular oedema using a scanning laser ophthalmoscope in the retro-mode. Clin Exp Ophthalmol. 2010;38:27–36.
Su Y, Zhang X, Wu K, Ji Y, Zuo C, Li M, et al. The noninvasive retro-mode imaging of confocal scanning laser ophthalmoscopy in myopic maculopathy: a prospective observational study. Eye (Lond). 2014;28:998–1003.
Article CAS PubMed Google Scholar
Vujosevic S, Pucci P, Daniele AR, Convento E, Pilotto E, Parrozzani R, et al. Extent of diabetic macular edema by scanning laser ophthalmoscope in the retromode and its functional correlations. Retina. 2014;34:2416–22.
Maltsev DS, Kulikov AN, Burnasheva MA, Chhablani J. Retro-mode scanning laser ophthalmoscopy in evaluation of peripheral retinal lesions. Graefes Arch Clin Exp Ophthalmol. 2021;259:301–6.
Savastano MC, Kilian RA, Savastano A, Caporossi T, Molle A, Ripa M, et al. Morphological features of full-thickness macular holes using retromode scanning laser ophthalmoscopy. Ophthalmic Surg Lasers Imaging Retina. 2022;53:368–73.
Jonas JB, Mardin CY, Schlotzer-Schrehardt U, Naumann GO. Morphometry of the human lamina cribrosa surface. Invest Ophthalmol Vis Sci. 1991;32:401–5.
Han JC, Cho SH, Sohn DY, Kee C. The characteristics of lamina cribrosa defects in myopic eyes with and without open-angle glaucoma. Invest Ophthalmol Vis Sci. 2016;57:486–94.
Article CAS PubMed Google Scholar
Sawada Y, Araie M, Ishikawa M, Yoshitomi T. Multiple temporal lamina cribrosa defects in myopic eyes with glaucoma and their association with visual field defects. Ophthalmology. 2017;124:1600–11.
Han JC, Choi JH, Park DY, Lee EJ, Kee C. Border tissue morphology is spatially associated with focal lamina cribrosa defect and deep-layer microvasculature dropout in open-angle glaucoma. Am J Ophthalmol. 2019;203:89–102.
Sawada Y, Araie M, Kasuga H, Ishikawa M, Iwata T, Murata K, et al. Focal lamina cribrosa defect in myopic eyes with nonprogressive glaucomatous visual field defect. Am J Ophthalmol. 2018;190:34–49.
Tatham AJ, Miki A, Weinreb RN, Zangwill LM, Medeiros FA. Defects of the lamina cribrosa in eyes with localized retinal nerve fiber layer loss. Ophthalmology. 2014;121:110–8.
Faridi OS, Park SC, Kabadi R, Su D, De Moraes CG, Liebmann JM, et al. Effect of focal lamina cribrosa defect on glaucomatous visual field progression. Ophthalmology. 2014;121:1524–30.
You JY, Park SC, Su D, Teng CC, Liebmann JM, Ritch R. Focal lamina cribrosa defects associated with glaucomatous rim thinning and acquired pits. JAMA Ophthalmol. 2013;131:314–20.
Takayama K, Hangai M, Kimura Y, Morooka S, Nukada M, Akagi T, et al. Three-dimensional imaging of lamina cribrosa defects in glaucoma using swept-source optical coherence tomography. Invest Ophthalmol Vis Sci. 2013;54:4798–807.
Park SC, Hsu AT, Su D, Simonson JL, Al-Jumayli M, Liu Y, et al. Factors associated with focal lamina cribrosa defects in glaucoma. Invest Ophthalmol Vis Sci. 2013;54:8401–7.
Kiumehr S, Park SC, Syril D, Teng CC, Tello C, Liebmann JM, et al. In vivo evaluation of focal lamina cribrosa defects in glaucoma. Arch Ophthalmol. 2012;130:552–9.
Xie S, Kamoi K, Igarashi-Yokoi T, Uramoto K, Takahashi H, Nakao N, et al. Structural abnormalities in the papillary and peripapillary areas and corresponding visual field defects in eyes with pathologic myopia. Invest Ophthalmol Vis Sci. 2022;63:13.
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