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ORIGINAL RESEARCH

Distal Nasal Part of the Visual Field and RNFL in Primary Open-Angle Glaucoma

ORCID Icon, ORCID Icon &
Pages 1-7 | Received 01 Nov 2023, Accepted 14 Dec 2023, Published online: 02 Jan 2024

References

  • Burgoyne CF, Downs JC, Bellezza AJ, Suh JK, Hart RT. The optic nerve head as a biomechanical structure: a new paradigm for understanding the role of IOP-related stress and strain in the pathophysiology of glaucomatous optic nerve head damage. Prog Retin Eye Res. 2005;24:39–73. doi:10.1016/j.preteyeres.2004.06.001
  • Weinreb RN, Aung T, Medeiros FA. The pathophysiology and treatment of glaucoma: a review. JAMA. 2014;311(18):1901–1911. doi:10.1001/jama.2014.3192
  • Glovinsky Y, Quigley HA, Dunkelberger GR. Retinal ganglion cell loss is size dependent in experimental glaucoma. Invest Ophthalmol Vis Sci. 1991;32:484–491.
  • Morgan JE, Uchida H, Caprioli J. Retinal ganglion cell death in experimental glaucoma. Br J Ophthalmol. 2000;84:303–310. doi:10.1136/bjo.84.3.303
  • Naskar R, Wissing M, Thanos S. Detection of Early Neuron Degeneration and Accompanying Microglial Responses in the Retina of a Rat Model of Glaucoma. Invest Ophthalmol Vis Sci. 2002;43:2962–2968.
  • Shou T, Liu J, Wang W, Zhou Y, Zhao K. Differential dendritic shrinkage of alpha and beta retinal ganglion cells in cats with chronic glaucoma. Invest Ophthalmol Vis Sci. 2003;44:3005–3010. doi:10.1167/iovs.02-0620
  • Mukai R, Park DH, Okunuki Y, et al. Mouse model of ocular hypertension with retinal ganglion cell degeneration. PLoS One. 2019;14(1):e0208713. doi:10.1371/journal.pone.0208713
  • Quigley HA, Dunkelberger GR, Green WR. Chronic human glaucoma causing selectively greater loss of large optic nerve fibers. Ophthalmology. 1988;95(3):357–363. doi:10.1016/S0161-6420(88)33176-3
  • Soto I, Oglesby E, Buckingham BP, et al. Retinal ganglion cells downregulate gene expression and lose their axons within the optic nerve head in a mouse glaucoma model. J Neurosci. 2008;28(2):548–561. doi:10.1523/JNEUROSCI.3714-07.2008
  • Dawson WW, Hawthorne MN, Parmer R, Hope GM, Hueter R. Very large neurons of the inner retina of humans and other mammals. Retina. 1989;9(1):69–74. doi:10.1097/00006982-198909010-00009
  • Dacey DM. Physiology, morphology and spatial densities of identified ganglion cell types in primate retina. Ciba Found Symp. 1994;184:12–28. doi:10.1002/9780470514610.ch2
  • Skalicky SE. Ocular and Visual Physiology Clinical Application. Springer; 2015.
  • Lestak J, Fus M. Visual Field Assessment in Hypertension Glaucoma. Cesk Slov Oftalmol. 2021;77(1):22–26. doi:10.31348/2021/2
  • Lestak J, Fus M, Lestak T, Pitrova S. The far nasal part of the visual field – part II – contribution to the early diagnosis of glaucoma. Cesk Slov Oftalmol. 2023;79:312–316. doi:10.31348/2023/37
  • Lešták J, Fůs M, Král J. The Relationship Between the Thickness of cpRNFL in Segments and Intraocular Pressure. Clin Ophthalmol. 2022;16:3673–3679. doi:10.2147/OPTH.S388936
  • Lešták J, Fůs M, Král J. retinal ganglion cells on the optic nerve disc following vessel density correction at different IOP values. Exp Ther Med. 2023;25(6):261. doi:10.3892/etm.2023.11960
  • Lešták J, Fůs M, Pitrová Š. Peripapillary retinal nerve fiber layer following vessel density correction at different IOP values. Biomed Pap Med Fac Univ Palacky Olomouc Czech Repub. 2024;168:56.
  • Weber AJ, Kaufman PL, Hubbard WC. Morphology of single ganglion cells in the glaucomatous primate retina. Invest Ophthalmol Vis Sci. 1998;39(12):2304–2320.
  • Curcio CA, Allen KA. Topography of ganglion cells in human retina. J Comp Neurol. 1990;300(1):5–25. doi:10.1002/cne.903000103
  • Perry VH, Oehler R, Cowey A. Retinal ganglion cells that project to the dorsal lateral geniculate nucleus in the macaque monkey. Neurosci. 1984;12(4):1101–1123. doi:10.1016/0306-4522(84)90006-X
  • Rodieck RW, Binmoeller KF, Dineen J. Parasol and midget ganglion cells of the human retina. J Comp Neurol. 1985;233(1):115–132. doi:10.1002/cne.902330107
  • Quigley HA, Addicks EM. Regional differences in the structure of the lamina cribrosa and their relation to glaucomatous optic nerve damage. Arch Ophthalmol. 1981;99(1):137–143. doi:10.1001/archopht.1981.03930010139020
  • Quigley HA, Addicks EM, Green WR. Optic nerve damage in human glaucoma: 111. Quantitative correlation of nerve fiber loss and visual field defect in glaucoma, ischemic neuropathy, papilledema, and toxic neuropathy. Arch Ophthalmol. 1982;100:135–146. doi:10.1001/archopht.1982.01030030137016
  • Tu S, Li K, Ding X, Hu D, Li K, Ge J. Relationship between intraocular pressure and retinal nerve fibre thickness loss in a monkey model of chronic ocular hypertension. Eye (Lond). 2019;33(12):1833–1841. doi:10.1038/s41433-019-0484-1