2019
DOI: 10.3389/fbioe.2019.00105
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Determination of Corneal Biomechanical Behavior in-vivo for Healthy Eyes Using CorVis ST Tonometry: Stress-Strain Index

Abstract: Purpose: This study aims to introduce and clinically validate a new algorithm that can determine the biomechanical properties of the human cornea in vivo . Methods: A parametric study was conducted involving representative finite element models of human ocular globes with wide ranges of geometries and material biomechanical behavior. The models were subjected to different levels of intraocular pressure (IOP) and the action of external air puff produced … Show more

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Cited by 145 publications
(143 citation statements)
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References 35 publications
(52 reference statements)
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“…It was shown as an ideal method to estimate the mechanical properties of corneal tissue material. The distribution of SSI in Italian and Brazilian populations has been reported by previous studies and SSI was found to be signi cantly affected by age 8 . Chua observed that a lower corneal hysteresis (CH) in Chinese than Indians, suggesting that corneal biomechanics may be varies among different populations 11 .…”
Section: Introductionsupporting
confidence: 70%
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“…It was shown as an ideal method to estimate the mechanical properties of corneal tissue material. The distribution of SSI in Italian and Brazilian populations has been reported by previous studies and SSI was found to be signi cantly affected by age 8 . Chua observed that a lower corneal hysteresis (CH) in Chinese than Indians, suggesting that corneal biomechanics may be varies among different populations 11 .…”
Section: Introductionsupporting
confidence: 70%
“…Besides IOP, previous studies have shown that, parameters of corneal biomechanics in vivo were mostly affected by bIOP such as de ection area at the highest concavity and de ection amplitude (HC DefArea and HC DefA), SP -A1 38 CH and CRF 39 . However, SSI based on nite element (FE) numerical modeling simulating the effects of Corvis ST air puff and bIOP to predict of corneal behavior and excluded the in uence of bIOP, indicating that this is an ideal method for in vivo measurement of corneal tissue material stiffness 8 .…”
Section: Resultsmentioning
confidence: 99%
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“…Auch Finite-Elemente-Simulationen wurden durchgeführt, um den Zusammenhang zwischen Augeninnendruck und kornealer Biomechanik zu analysieren [6]. Diese Grundlagenforschung führte zur Entwicklung neuer biomechanischer Parameter, die direkt mit der Hornhautsteifigkeit [7] sowie dem Spannungs-Dehnungs-Verhalten der Hornhaut [8] zusammenhängen. Diese Parameter zeigten alle signifikante Unterschiede zwischen gesunden Augen und Augen mit Keratokonus [9].…”
Section: Introductionunclassified