Effect of changes in the “corneal rigidity / intraocular pressure” balance on corneal topography in keratoconus
https://doi.org/10.33791/2222-4408-2025-4-297-305
Abstract
Background. Corneal refractogenesis is influenced by intraocular pressure (IOP), which helps shape the anterior segment profile. Reduced corneal structural strength in corneal ectatic disorders and after laser refractive procedures diminishes resistance to IOP, disrupting the corneal rigidity/IOP balance and promoting the development or progression of corneal ectasia.
Purpose: To assess patterns of local corneal topography associated with changes in the corneal rigidity/IOP balance in keratoconus.
Materials and methods. A total of 96 patients were allocated to four groups. Group 1 (31 patients; 62 eyes without ophthalmic pathology) served to define the reference range of corneal topographic parameters. Group 2 (23 patients; 46 eyes without corneal pathology) constituted the comparison cohort. Group 3 (21 patients; 42 eyes) had confirmed keratoconus (stages I–III). Group 4 (21 patients; 40 eyes) was examined 1 month after laser refractive surgery (LASIK or SMILE). All participants underwent a vacuum-compression test (VCT); corneal topographic indices were recorded before and during transient, vacuum-induced IOP elevation.
Results. With IOP elevation, Group 2 exhibited localized peripheral corneal protrusion. During the vacuum-compression test (VCT) in Group 3 (keratoconus), the corneal apex flattened, while the periphery consistently bulged. IOP increased significantly in Groups 2 and 3 (both p < 0.05). In Group 3, an IOP rise of 13.2 ± 0.9 mmHg (vacuum level 80 mmHg) was accompanied by a decrease in corneal hysteresis (CH) of 4.1 ± 0.8 mmHg; in the control group, CH decreased by 2.4 ± 1.5 mmHg. In Group 4, the corneal rigidity–IOP balance was disrupted due to a localized, clinically insignificant ectasia along the flap margin.
Conclusion. Transient IOP elevation caused corneal deformation characterized by apical flattening and mid-peripheral steepening, indicating areas of reduced corneal rigidity. Structural alterations after laser refractive surgery weaken the cornea between the optical zone and the limbus, leading to predominantly peripheral deformation that may contribute to the development or progression of corneal ectasia.
About the Authors
S. I. AnisimovRussian Federation
Sergey I. Anisimov, Dr. Sci. (Med.), Professor, Department of Eye Diseases, Russian University of Medicine, Ministry of Health of the Russian Federation; Scientific Director, Vostok-Prozrenie Eye Center LLC
4 Dolgorukovskaya Str., Moscow, 127006,
10 Poliny Osipenko Str., bld. 1, Moscow, 123007
O. B. Kochmala
Russian Federation
Oleg B. Kochmala, Dr. Sci. (Med.), Assistant Professor, Department of Ophthalmology
29 Nakhichevansky Lane, Rostov-on-Don, 344022
K. P. Piskunov
Russian Federation
Kirill P. Piskunov, PhD Student, Department of Ophthalmology
29 Nakhichevansky Lane, Rostov-on-Don, 344022
A. A. Bratchuk
Russian Federation
Anna A. Bratchuk, Ophthalmologist, Vostok-Prozrenie Eye Center LLC; External PhD Candidate, Department of Ophthalmology
10 Poliny Osipenko Str., bld. 1, Moscow, 123007,
2/1 Barrikadnaya Str., Moscow, 125993
L. L. Аrutyunyan
Russian Federation
Lusine L. Arutyunyan, Dr. Sci. (Med.), Professor, Department of Ophthalmology, Russian Medical Academy of Continuous Professional Education, Ministry of Health of the Russian Federation; Head of the Diagnostic Department, Vostok-Prozrenie Eye Center LLC
10 Poliny Osipenko Str., bld. 1, Moscow, 123007,
2/1 Barrikadnaya Str., Moscow, 125993
S. Y. Mammadova
Russian Federation
Sabina Yu. Mammadova, Ophthalmologist, VostokProzrenie Eye Center LLC; PhD Student, Department of Ophthalmology, Russian Medical Academy of Continuous Professional Education, Ministry of Health of the Russian Federation
10 Poliny Osipenko Str., bld. 1, Moscow, 123007,
2/1 Barrikadnaya Str., Moscow, 125993
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Review
For citations:
Anisimov S.I., Kochmala O.B., Piskunov K.P., Bratchuk A.A., Аrutyunyan L.L., Mammadova S.Y. Effect of changes in the “corneal rigidity / intraocular pressure” balance on corneal topography in keratoconus. The EYE GLAZ. 2025;27(4):297-305. (In Russ.) https://doi.org/10.33791/2222-4408-2025-4-297-305






















