GLAUCOMA

123 Glaucoma - Tips, consejos y experiencias BIBLIOGRAFÍA 1. Millá E, Larena C. Tomografía de coherencia óptica en glaucoma. Annals de’Oftalmología 2006; 14 (2), 86-96. 2. Nouri-Mahdavi K, Nassiri N, Giangiacomo A, Caprioli J. Detection of visual field progression in glaucoma with standard achromatic perimetry: A review and practical implications. Graefes Arch Clin Exp Ophthalmol (2011) 249:1593–1616. 3. Folio LS, Wollstein G, Ishikawa H, Bilonick RA, Ling Y, Kagemann L, Noecker RJ, Fujimoto JG, Schuman J. Variation in optical coherence tomography signal quality as an indicator of retinal nerve fibre layer segmentation error. Br J Ophthalmol. 2012 Apr; 96(4): 514–518. 4. Paczka JA, Cuadros M. Evaluación estructural de la cabeza del nervio óptico, capa de fibras nerviosa y células ganglionares. Los Glaucomas de la A a la Z. 2018; 76-91. 5. Sayed MS, Margolis M, Lee RK. Green disease in optical coherence tomography diagnosis of glaucoma. Curr Opin Ophthalmol. 2017; 28: 139-153. 6. Chong GT, Lee RK. Glaucoma versus red disease: imaging and glaucoma diagnosis. Curr Opin Ophthalmol. 2012; 23:79-88. 7. Bowd C, Zangwill LM, Weinreb RN, Medeiros FA, Belghith A. Estimating Optical Coherence Tomography Structural Measurement Floors to Improve Detection of Progression in Advanced Glaucoma. Am J Ophthalmol. 2017;175:37‐44. 8. Almasieh M, Wilson AM, Morquette B, Cueva Vargas JL, Di Polo A. The molecular basis of retinal ganglion cell death in glaucoma. Prog Retin Eye Res 2012;31:152-181. 9. Curcio CA, Allen KA. Topography of ganglion cells in human retina. J Comp Neurol. 1990; 300: 5-25. 10. Nguyen-Ba-Charvet KT, Chédotal A. Development of retinal layers. C R Biol 2014;337:153-159. 11. Glovinsky Y, Quigley HA, Pease ME. Foveal ganglion cell loss is size dependent in experimental glaucoma. Invest Ophthalmol Vis Sci 1993;34:395-400. 12. Medeiros FA, Lisboa R, Weinreb RN, Liebmann JM, Girkin C, Zangwill LM. Retinal ganglion cell count estimates associated with early development of visual field defects in glaucoma. Ophthalmology. 2013; 120(4): 736–744. 13. Oli A, Joshi D. Can ganglion cell complex assessment on cirrus HD OCT aid in detection of early glaucoma?. Saudi J Ophthalmol 2015;29:201-204. 14. Zhang X, Dastiridou A, Francis BA, Tan O, Varma R, Greenfield DS, Schuman JS, Huang D. Comparison of Glaucoma Progression Detection by Optical Coherence Tomography and Visual Field. Am J Ophthalmol. 2017 December ; 184: 63–74. 15. Mwanza JC, Chang RT, Budenz DL, Durbin MK. Reproducibility of peripapillary retinal nerve fiber layer thickness and optic nerve head parameters measured with cirrus HD-OCT in glaucomatous eyes. Invest Ophthalmol Vis Sci 2010; 51:11:5724-30. 16. Cong Ye C, Lam DS, Leung CK. Investigation of Floor Effect for OCT RNFL Measurement. Investigative Ophthalmology & Visual Science April 2011, Vol.52, 176. 17. Nguyen AT, Greenfield DS, Bhakta AS, Lee J, Feuer WJ. Detecting Glaucoma Progression Using Guided Progression Analysis with OCT and Visual field Assessment in Eyes classified by International Classification of Disease Severity Codes. Ophthalmology Glaucoma. January 2019. Vol 2, 1: 36-46.

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