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April 18, 2026Lasers in Medical Science0 citationsOpen Access

Assessment of corneal biomechanical properties using Corvis ST following LASIK, PRK, and CXL

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PSPassant Sayed SaifMSMohamed Yasser Sayed SaifHDHisham Mohamed Khairy Abdel Dayem

Key Points

  • This research aims to assess corneal biomechanical changes following LASIK, PRK, and CXL, considering different baseline conditions.
  • Prospective comparative study design
  • Included 150 eyes from 150 patients undergoing LASIK, PRK, or CXL
  • Corneal biomechanical parameters measured preoperatively and at 6 months postoperatively using Corvis ST
  • Between-group comparisons made using ANCOVA and linear mixed-effects models adjusted for baseline values
  • LASIK and PRK showed significant increases in deformation amplitude, DA ratio at 2 mm, corneal biomechanical index, and tomographic biomechanical index postoperatively
  • Significant reductions in stiffness parameter at first applanation and Ambrósio relational thickness were observed in LASIK and PRK
  • CXL in keratoconic eyes resulted in decreased deformation amplitude, DA ratio, biomechanical index, and tomographic index, with an increase in stiffness parameter at first applanation

Abstract

To evaluate within-group corneal biomechanical changes induced by LASIK, photorefractive keratectomy (PRK), and corneal cross-linking (CXL) using Corvis ST, while accounting for differences in baseline corneal status between refractive surgery candidates and keratoconic eyes. This prospective comparative study included 150 eyes of 150 patients undergoing LASIK (n = 50), PRK (n = 50), or epithelium-off CXL for keratoconus (n = 50). Corneal biomechanical parameters were assessed preoperatively and at 6 months postoperatively using Corvis ST, including deformation amplitude (DA), stiffness parameter at first applanation (SP-A1), DA ratio at 2 mm, Ambrósio relational thickness horizontal (ARTh), corneal biomechanical index (CBI), and tomographic biomechanical index (TBI), the latter derived from combined Pentacam tomography and Corvis ST measurements. Within-group changes were analyzed using paired parametric or non-parametric tests as appropriate. Between-group comparisons were performed using ANCOVA or linear mixed-effects models adjusted for baseline values, age, central corneal thickness, and biomechanically corrected intraocular pressure. LASIK and PRK eyes demonstrated significant postoperative increases in DA, DA ratio at 2 mm, CBI, and TBI, along with significant reductions in SP-A1 and ARTh (all p < 0.001), indicating biomechanical weakening relative to their preoperative state. The magnitude of weakening was greater following LASIK than PRK after baseline adjustment. In contrast, keratoconic eyes treated with CXL showed significant reductions in DA, DA ratio, CBI, and TBI, and a significant increase in SP-A1 (p < 0.001), consistent with biomechanical stiffening. These changes occurred despite differing baseline biomechanical profiles between groups. LASIK and PRK are associated with measurable corneal biomechanical weakening, whereas CXL induces biomechanical stiffening in keratoconic corneas. These findings should be interpreted within the context of distinct baseline corneal conditions rather than as direct comparisons of procedural efficacy. Corvis ST provides a robust framework for quantifying procedure-specific biomechanical directionality within different clinical settings.

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Cite This Study

Saif et al. (2026) studied this question.

synapsesocial.com/papers/69e31f1a40886becb653e867https://doi.org/10.1007/s10103-026-04858-9
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Corneal biomechanics with CORVIS-ST in post-keratoplasty corneas2026
  2. 2In Vivo Corneal Biomechanical Response to Three Different Laser Corneal Refractive Surgeries2024 · 10 citations
  3. 3Biomechanical changes following corneal crosslinking in keratoconus patients2024 · 6 citations
  4. 4Effect of corneal cross-linking on biomechanical changes following transepithelial photorefractive keratectomy and femtosecond laser-assisted LASIK2024 · 1 citations
  5. 5Biomechanical changes after keratorefractive lenticule extraction with CLEAR and after femtosecond LASIK, correlated with optical coherence tomography findings2024 · 1 citations