Visualization of the Lamina Cribrosa of Sclera Using Optical Coherence Tomography. The Opportunities and Prospects for Diagnostics (Review)
https://doi.org/10.18008/1816-5095-2019-2-159-162
Abstract
About the Authors
V. V. KurenkovRussian Federation
МD, рrofessor,
Rublevskoe highway, 48, Moscow, 121609
V. S. Klyuganov
Russian Federation
Ophthalmologist,
Rublevskoe highway, 48, Moscow, 121609
N. V. Kuznetsova
Russian Federation
Ophthalmologist,
Rublevskoe highway, 48, Moscow, 121609
K. V. Chinenova
Russian Federation
Ophthalmologist,
Rublevskoe highway, 48, Moscow, 121609
M. E. Konovalov
Russian Federation
MD, professor, Head of Konovalov eye center,
Tverskaya-Yamskaya str., 56/6, Moscow, 125047
M. D. Pozharitsky
Russian Federation
MD, professor,
Volokolamskoye highway, 91, Moscow, 125371
References
1. Tham Y.C., Li X., Wong T.Y., Quigley H.A., Aung T., Cheng C.Y. Global prevalence of glaucoma and projections of glaucoma burden through 2040: a systematic review and meta-analysis. J Ophthalmology. 2014 Nov; 121(11):2081–2090. DOI: 10.1016/j.ophtha.2014.05.013
2. Heijl А., Aspberg J., Bengtsson B. The effect of different criteria on the number of patients blind from open-angle glaucoma. BMC Ophthalmol. 2011;11:31. DOI: 10.1186/1471-2415-11-31
3. Resnikoff S., Pascolini D., Etya’ale D., Kocur I., Pararajasegaram R., Pokharel G.P., Mariotti S.P. Global data on visual impairment in the year 2002. Bull World Health Organ. 2004 Nov; 82(11):844–851. DOI: /S0042-96862004001100009
4. Ermolaev V.G., Ermolaev A.V. Ermolaev S.V. Social parameters of disability in patients with glaucoma. Modern high technologies = Sovremennye naukoemkie tekhnologii. 2010;2:90–91 (In Russ.).
5. Alexeev V.N., Gazizova I.R. Neurodegenerative changes in patient with primary open-angle glaucoma. Practical medicine = Prakticheskaya meditsina. 2012;4:154–156 (In Russ.).
6. Волков В.В. Глаукома при псевдонормальном давлении. М.: Медицина; 2001:352. [Volkov V.V. Glaucoma with pseudonormal pressure. Moscow: Medit sina; 2001:352 (In Russ.)].
7. Nesterov A.P. Glaucoma. Moscow: Meditsina; 2008:360 (In Russ.).
8. Roberts M.D., Sigal I.A., Liang Y., Burgoyne C.F., Downs J.C. Changes in the bio mechanical response of the optic nerve head in early experimental glaucoma. Invest Ophthalmol Vis Sci. 2010;51(11):5675–5684. DOI: 10.1167/iovs.10-5411
9. Quigley H.A., Addicks E.M., Green W.R., Maumenee A.E. Optic nerve damage in human glaucoma. II. The site of injury and susceptibility to damage. Arch Ophthalmol. 1981;99(4):635–649.
10. Quigley H.A., Addicks E.M. Regional differences in the structure of the lamina cribrosa and their relation to glaucomatous optic nerve damage. Arch Ophthalmol. 1981;99(1):137–143.
11. Quigley H.A. Glaucoma: Macrocosm to microcosm. The Friedenwald Lecture. investigative Ophthalmology and visual Science. 2005;2663–2670. DOI: 10.1167/ iovs.04-1070
12. Morgan J.E. Circulation and axonal transport in the optic nerve. Eye (Lond). 2004;18:1089–1095. DOI: 10.1038/sj.eye.6701574
13. Hayreh S.S. Pathogenesis of cupping of the optic disc. Br J Ophthalmol. 1974;58:863–876.
14. Burgoyne C.F., Downs J.C., Bellezza A.J., Suh J.K., Hart R.T. The optic nevre head as a biomechanical structure: a new paradigm for understanding the role of IOPrelated 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
15. Hernandez M.R., Pena J.D., Selvidge J.A. Salvador-Silva M., Yang P. Hydrostatic pressure stimulates synthesis of elastin in cultured optic nerve head astrocytes. Glia. 2000;32(2):122–136.
16. Morgan J., Waldock A. Retinal nerve fiber layer polarymetry histological and clini cal comparison. Br. J. Ophthalmol. 1998;82:684–690.
17. Pena J.D., Netland P.A., Vidal I. Elastosis of the lamina cribrosa in glaucomatous optic neuropathy. Exp. Eye Res.1998;67(5):517–524.
18. Pena J.D., Agapova O., Gabelt B.T., Levin L.A., Lucarelli M.J., Kaufman P.L., Hernan dez M.R. Increased elastin expression in astrocytes of the lamina cribrosa in response to elevated intraocular pressure. Invest. Ophthalmol. 2001;42(10):2302–2314.
19. Spoerl E., Goehm A., Pillunat L. The influence of various substances on the biome chanical behavior of lamina cribrosa and peripapillary sclera. Invest. Ophthalmol. 2005;46:1286–1290.
20. Wax M., Barett D., Pestronk A. Increased incidence of paraproteinemia and outoan tibodies in patients with glaucoma. Invest. Ophthalmol. 1994;117:561–568.
21. Naranjo-Bonilla P., Giménez-Gómez R., Ríos-Jiménez D., Varas-Fabra M.L., MuñozVillanueva M.D., García-Catalán R., Font-Ugalde P., Poblador-Fernández M.S., LanchoAlonso J.L., Gallardo-Galera J.M. Enhanced depth OCT imaging of the lamina cribrosa for 24 hours. J Ophthalmol. 2017;18.10(2):306–309 DOI: 10.18240 /ijo.2017.02.20
22. Gizzi С., Cellini М., Campos E.C. In vivo assessment of changes in corneal hyster esis and lamina cribrosa position during acute intraocular pressure elevation in eyes with markedly asymmetrical glaucoma. Clin Ophthalmol. 2018;12:481–492. DOI: 10.2147/OPTH.S151532
23. Shoji T., Kuroda H., Suzuki M., Ibuki H., Araie M., Yoneya S. Vertical asymmetry of lamina cribrosa tilt angles using wide bandwidth, femtosecond mode-locked laser OCT; effect of myopia and glaucoma. Graefes Arch Clin Exp Ophthalmol. 2017 Jan; 255(1):197–205. DOI: 10.1007/s00417-016-3524-6
24. Kim Y.W., Jeoung J.W., Girard M.J., Mari J.M., Park K.H. Positional and Curvature Dif ference of Lamina Cribrosa According to the Baseline Intraocular Pressure in Primary Open-Angle Glaucoma: A Swept-Source Optical Coherence Tomography (SS-OCT) Study. Send to PLoS One. 2016 Sep;11(9):e0162182. DOI: 10.1371/journal.pone.0162182
25. Park H.L., Kim S.I., Park C.K. Influence of the lamina cribrosa on the rate of global and localized retinal nerve fiber layer thinning in open-angle glaucoma. Medicine (Baltimore). 2017 Apr;96(14):e6295. DOI: 10.1097/MD.0000000000006295
26. Krzyżanowska-Berkowska P., Melińska A., Helemejko I, Iskander R. Evaluating dis placement of lamina cribrosa following glaucoma surgery. Graefes Arch Clin Exp Ophthalmol. 2018;256(4):791–800. DOI: 10.1007/s00417-018-3920-1
Review
For citations:
Kurenkov V.V., Klyuganov V.S., Kuznetsova N.V., Chinenova K.V., Konovalov M.E., Pozharitsky M.D. Visualization of the Lamina Cribrosa of Sclera Using Optical Coherence Tomography. The Opportunities and Prospects for Diagnostics (Review). Ophthalmology in Russia. 2019;16(2):159-162. (In Russ.) https://doi.org/10.18008/1816-5095-2019-2-159-162