Evaluation of Intraocular Pressure and Other Biomechanical Parameters to Distinguish between Subclinical Keratoconus and Healthy Corneas

(1) Purpose: To assess the main corneal response differences between normal and subclinical keratoconus (SCKC) with a Corvis ST device. (2) Material and Methods: We selected 183 eyes of normal patients, of a mean age of 33 ± 9 years and 16 eyes of patients with SCKC of a similar mean age. We measure...

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Veröffentlicht in:Journal of clinical medicine 2021-04, Vol.10 (9), p.1905
Hauptverfasser: Peris-Martínez, Cristina, Díez-Ajenjo, María Amparo, García-Domene, María Carmen, Pinazo-Durán, María Dolores, Luque-Cobija, María José, Del Buey-Sayas, María Ángeles, Ortí-Navarro, Susana
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Sprache:eng
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Zusammenfassung:(1) Purpose: To assess the main corneal response differences between normal and subclinical keratoconus (SCKC) with a Corvis ST device. (2) Material and Methods: We selected 183 eyes of normal patients, of a mean age of 33 ± 9 years and 16 eyes of patients with SCKC of a similar mean age. We measured best corrected visual acuity (BCVA) and corneal topography with a Pentacam HD device to select the SCKC group. Biomechanical measurements were performed using the Corvis ST device. We carried out a non-parametric analysis of the data with SPSS software (Wilcoxon signed rank-test). (3) Results: We found statistically significant differences between the control and SCKC groups in some corneal biomechanical parameters: first and second applanation time ( = 0.05 and = 0.02), maximum deformation amplitude ( = 0.016), highest concavity radius ( = 0.007), and second applanation length and corneal velocity (( = 0.039 and = 0.016). (4) Conclusions: Our results show that the use of normalised biomechanical parameters provided by noncontact tonometry, combined with a discriminant function theory, is a useful tool for detecting subclinical keratoconus.
ISSN:2077-0383
2077-0383
DOI:10.3390/jcm10091905