Literature DB >> 20006338

Biomechanical model of human cornea based on stromal microstructure.

H Studer1, X Larrea, H Riedwyl, P Büchler.   

Abstract

The optical characteristics of the human cornea depends on the mechanical balance between the intra-ocular pressure and intrinsic tissue stiffness. A wide range of ophthalmic surgical procedures alter corneal biomechanics to induce local or global curvature changes for the correction of visual acuity. Due to the large number of surgical interventions performed every day, a deeper understanding of corneal biomechanics is needed to improve the safety of these procedures and medical devices. The aim of this study is to propose a biomechanical model of the human cornea, based on stromal microstructure. The constitutive mechanical law includes collagen fiber distribution based on X-ray scattering analysis, collagen cross-linking, and fiber uncrimping. Our results showed that the proposed model reproduced inflation and extensiometry experimental data [Elsheikh et al., Curr. Eye Res., 2007; Elsheikh et al., Exp. Eye Res., 2008] successfully. The mechanical properties obtained for different age groups demonstrated an increase in collagen cross-linking for older specimens. In future work such a model could be used to simulate non-symmetric interventions, and provide better surgical planning. Copyright (c) 2009 Elsevier Ltd. All rights reserved.

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Year:  2009        PMID: 20006338     DOI: 10.1016/j.jbiomech.2009.11.021

Source DB:  PubMed          Journal:  J Biomech        ISSN: 0021-9290            Impact factor:   2.712


  26 in total

1.  Three-dimensional distribution of transverse collagen fibers in the anterior human corneal stroma.

Authors:  Moritz Winkler; Golroxan Shoa; Yilu Xie; Steven J Petsche; Peter M Pinsky; Tibor Juhasz; Donald J Brown; James V Jester
Journal:  Invest Ophthalmol Vis Sci       Date:  2013-11-05       Impact factor: 4.799

2.  Cataract surgery on post radial keratotomy patients.

Authors:  Alessandro Meduri; Mario Urso; Giuseppe A Signorino; Miguel Rechichi; Cosimo Mazzotta; Stephen Kaufman
Journal:  Int J Ophthalmol       Date:  2017-07-18       Impact factor: 1.779

3.  A structural model for the in vivo human cornea including collagen-swelling interaction.

Authors:  Xi Cheng; Steven J Petsche; Peter M Pinsky
Journal:  J R Soc Interface       Date:  2015-08-06       Impact factor: 4.118

4.  Microstructure-based numerical simulation of the mechanical behaviour of ocular tissue.

Authors:  Dong Zhou; Ahmed Abass; Ashkan Eliasy; Harald P Studer; Alexander Movchan; Natalia Movchan; Ahmed Elsheikh
Journal:  J R Soc Interface       Date:  2019-05-31       Impact factor: 4.118

5.  Changing material properties of the tree shrew sclera during minus lens compensation and recovery.

Authors:  Rafael Grytz; John T Siegwart
Journal:  Invest Ophthalmol Vis Sci       Date:  2015-03-03       Impact factor: 4.799

6.  Multiscale Investigation of the Depth-Dependent Mechanical Anisotropy of the Human Corneal Stroma.

Authors:  Cristina Labate; Marco Lombardo; Maria P De Santo; Janice Dias; Noel M Ziebarth; Giuseppe Lombardo
Journal:  Invest Ophthalmol Vis Sci       Date:  2015-06       Impact factor: 4.799

7.  Quantitative assessment of UVA-riboflavin corneal cross-linking using nonlinear optical microscopy.

Authors:  Dongyul Chai; Ronald N Gaster; Roberto Roizenblatt; Tibor Juhasz; Donald J Brown; James V Jester
Journal:  Invest Ophthalmol Vis Sci       Date:  2011-06-16       Impact factor: 4.799

8.  [Influence of corneal biomechanical properties on myopic regression after laser in situ keratomileusis].

Authors:  D Uthoff; K Hebestedt; G I W Duncker; E Spörl
Journal:  Ophthalmologe       Date:  2013-01       Impact factor: 1.059

9.  Nonlinear optical collagen cross-linking and mechanical stiffening: a possible photodynamic therapeutic approach to treating corneal ectasia.

Authors:  Dongyul Chai; Tibor Juhasz; Donald J Brown; James V Jester
Journal:  J Biomed Opt       Date:  2013-03       Impact factor: 3.170

10.  Scleral anisotropy and its effects on the mechanical response of the optic nerve head.

Authors:  Baptiste Coudrillier; Craig Boote; Harry A Quigley; Thao D Nguyen
Journal:  Biomech Model Mechanobiol       Date:  2012-11-28
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