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  3. Patient-specific finite element analysis of human corneal lenticules: An experimental and numerical study.
 

Patient-specific finite element analysis of human corneal lenticules: An experimental and numerical study.

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BORIS DOI
10.48350/186603
Publisher DOI
10.1016/j.jmbbm.2023.106141
PubMed ID
37748318
Description
The number of elective refractive surgeries is constantly increasing due to the drastic increase in myopia prevalence. Since corneal biomechanics are critical to human vision, accurate modeling is essential to improve surgical planning and optimize the results of laser vision correction. In this study, we present a numerical model of the anterior cornea of young patients who are candidates for laser vision correction. Model parameters were determined from uniaxial tests performed on lenticules of patients undergoing refractive surgery by means of lenticule extraction, using patient-specific models of the lenticules. The models also took into account the known orientation of collagen fibers in the tissue, which have an isotropic distribution in the corneal plane, while they are aligned along the corneal curvature and have a low dispersion outside the corneal plane. The model was able to reproduce the experimental data well with only three parameters. These parameters, determined using a realistic fiber distribution, yielded lower values than those reported in the literature. Accurate characterization and modeling of the cornea of young patients is essential to study better refractive surgery for the population undergoing these treatments, to develop in silico models that take corneal biomechanics into account when planning refractive surgery, and to provide a basis for improving visual outcomes in the rapidly growing population undergoing these treatments.
Date of Publication
2023-11
Publication Type
Article
Subject(s)
500 Science > 570 Life sciences; biology
600 Technology > 610 Medicine & health
Language(s)
en
Contributor(s)
Nambiar, Malavika Harikrishnan
ARTORG Center for Biomedical Engineering Research - Musculoskeletal Biomechanics
ARTORG Center for Biomedical Engineering Research - Computational Bioengineering
Liechti, Layko
ARTORG Center for Biomedical Engineering Research
Studer, Harald
Roy, Abhijit S
Seiler, Günter Theodor Michael
Universitätsklinik für Augenheilkunde
Büchler, Philippeorcid-logo
ARTORG Center for Biomedical Engineering Research - Computational Bioengineering
ARTORG Center for Biomedical Engineering Research
Additional Credits
ARTORG Center for Biomedical Engineering Research - Computational Bioengineering
ARTORG Center for Biomedical Engineering Research - Musculoskeletal Biomechanics
ARTORG Center for Biomedical Engineering Research
Universitätsklinik für Augenheilkunde
Series
Journal of the mechanical behavior of biomedical materials
Publisher
Elsevier
ISSN
1878-0180
Access(Rights)
open.access
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