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Determine Corneal Biomechanical Parameters by Finite Element Simulation and Parametric Analysis Based on ORA Measurements. | LitMetric

Determine Corneal Biomechanical Parameters by Finite Element Simulation and Parametric Analysis Based on ORA Measurements.

Front Bioeng Biotechnol

Beijing Key Laboratory of Fundamental Research on Biomechanics in Clinical Application, School of Biomedical Engineering, Capital Medical University, Beijing, China.

Published: April 2022

AI Article Synopsis

  • The Ocular Response Analyzer (ORA) is widely used for measuring corneal biomechanics, but the relationship between its output parameters and traditional biomechanical metrics was previously unclear.
  • This study aimed to establish a method for determining corneal biomechanical parameters through ORA measurements using finite element simulation and parametric analysis.
  • Results showed a quantitative relationship between ORA output and corneal biomechanical parameters, with normal subjects showing an elastic modulus of 0.65 ± 0.07 MPa and a relaxation limit of 0.26 ± 0.15, validating the proposed method.

Article Abstract

The Ocular Response Analyzer (ORA) is one of the most commonly used devices to measure corneal biomechanics . Until now, the relationship between the output parameters and corneal typical biomechanical parameters was not clear. Hence, we defined the output parameters of ORA as ORA output parameters. This study aims to propose a method to determine corneal biomechanical parameters based on ORA measurements by finite element simulation and parametric analysis. Finite element analysis was used to simulate the mechanics process of ORA measurements with different intraocular pressure (IOP), corneal geometrical parameters and corneal biomechanical parameters. A simplified geometrical optics model was built to simulate the optical process of the measurements to extract ORA output parameters. After that, 70% of the simulated data was used to establish the quantitative relationship between corneal biomechanical parameters and ORA output parameters by parametric analysis and 30% of the simulated data was used to validate the established model. Besides, ten normal subjects were included to evaluate the normal range of corneal biomechanical parameters calculated from ORA. The quantitative relationship between corneal biomechanical parameters and ORA output parameters is established by combining parametric analysis with finite element simulation. The elastic modulus () and relaxation limit ( ) of the ten normal subjects were 0.65 ± 0.07 MPa and 0.26 ± 0.15, respectively. A method was proposed to determine corneal biomechanical parameters based on the results of ORA measurements. The magnitude of the corneal biomechanical parameters calculated according to our method was reasonable.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9043460PMC
http://dx.doi.org/10.3389/fbioe.2022.862947DOI Listing

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