Literature DB >> 28880338

Comparison of Corneal Deformation Parameters in Keratoconic and Normal Eyes Using a Non-contact Tonometer With a Dynamic Ultra-High-Speed Scheimpflug Camera.

Ryan N Mercer, George O Waring, Cynthia J Roberts, Vishal Jhanji, Yumeng Wang, Joao S Filho, Richard A Hemings, Karolinne M Rocha.   

Abstract

PURPOSE: To evaluate and compare biomechanical properties in normal and keratoconic eyes using a dynamic ultra-high-speed Scheimpflug camera equipped with a non-contact tonometer (Corvis ST; Oculus Optikgeräte GmbH, Wetzlar, Germany).
METHODS: This retrospective study evaluated 89 eyes (47 normal, 42 keratoconic) and a validation arm of 72 eyes (33 normal, 39 keratoconic) using the Corvis ST. A diagnosis of keratoconus was established by clinical findings confirmed by topography and tomography. Dynamic corneal response parameters collected by the Corvis ST (A1 velocity, deformation amplitude [DA], DA Ratio Max 1mm, and Max Inverse Radius) and a stiffness parameter at first applanation (SP-A1) were incorporated into a novel logistic regression equation (DCR index). Area under the receiver operating curve (AUC) was used to assess the sensitivity and specificity of the DCR index.
RESULTS: DA, DA Ratio Max 1mm, Max Inverse Radius, and SP-A1 were each found to be statistically significantly different between normal and keratoconic eyes (Mann-Whitney test [independent samples]; P = .0077, < .0001, < .0001, and < .0001, respectively; significance level: P < .05). DCR index demonstrated high sensitivity, specificity, and overall correct detection rate (92.9%, 95.7%, and 94.4%, respectively; AUC = 98.5). The sensitivity and overall correct detection rate improved when eyes with Topographical Keratoconus Classification grades (TKC) greater than 0 were reevaluated (from 92.9% to 96.6% and from 94.4% to 96.1%, respectively).
CONCLUSIONS: Combining multiple biomechanical parameters (A1 velocity, DA, DA Ratio Max 1mm, Max Inverse Radius, and SP-A1) into a logistic regression equation allows for high sensitivity and specificity for distinguishing keratoconic from normal eyes. [J Refract Surg. 2017;33(9):625-631.]. Copyright 2017, SLACK Incorporated.

Entities:  

Mesh:

Year:  2017        PMID: 28880338     DOI: 10.3928/1081597X-20170621-03

Source DB:  PubMed          Journal:  J Refract Surg        ISSN: 1081-597X            Impact factor:   3.573


  12 in total

1.  Short and long term corneal biomechanical analysis after overnight orthokeratology.

Authors:  Amelia Nieto-Bona; Paloma Porras-Ángel; Adela Elena Ayllón-Gordillo; Gonzalo Carracedo; David P Piñero
Journal:  Int J Ophthalmol       Date:  2022-07-18       Impact factor: 1.645

2.  Correlation between corneal dynamic responses and keratoconus topographic parameters.

Authors:  Hsi-Yun Tai; Jun-Ji Lin; Yi-Hung Huang; Po-Jen Shih; I-Jong Wang; Jia-Yush Yen
Journal:  J Int Med Res       Date:  2022-06       Impact factor: 1.573

3.  Correlation Between the Myopic Retinal Deformation and Corneal Biomechanical Characteristics Measured With the Corvis ST Tonometry.

Authors:  Shotaro Asano; Ryo Asaoka; Takehiro Yamashita; Shuichiro Aoki; Masato Matsuura; Yuri Fujino; Hiroshi Murata; Shunsuke Nakakura; Yoshitaka Nakao; Yoshiaki Kiuchi
Journal:  Transl Vis Sci Technol       Date:  2019-08-19       Impact factor: 3.283

4.  Characteristic of entire corneal topography and tomography for the detection of sub-clinical keratoconus with Zernike polynomials using Pentacam.

Authors:  Zhe Xu; Weibo Li; Jun Jiang; Xiran Zhuang; Wei Chen; Mei Peng; Jianhua Wang; Fan Lu; Meixiao Shen; Yuanyuan Wang
Journal:  Sci Rep       Date:  2017-11-28       Impact factor: 4.379

5.  Corneal biomechanical properties are associated with the activity and prognosis of Angioid Streaks.

Authors:  Shotaro Asano; Kosuke Nakajima; Kana Kure; Keiko Azuma; Kimiko Shimizu; Hiroshi Murata; Tatsuya Inoue; Ryo Obata; Ryo Asaoka
Journal:  Sci Rep       Date:  2018-05-25       Impact factor: 4.379

6.  Association between Corneal Stiffness Parameter at the First Applanation and Keratoconus Severity.

Authors:  Kaili Yang; Liyan Xu; Qi Fan; Shengwei Ren
Journal:  J Ophthalmol       Date:  2020-12-02       Impact factor: 1.909

7.  One-Year Follow-Up of Corneal Biomechanical Changes After Accelerated Transepithelial Corneal Cross-Linking in Pediatric Patients With Progressive Keratoconus.

Authors:  Weijun Jian; Mi Tian; Xiaoyu Zhang; Ling Sun; Yang Shen; Meiyan Li; Xingtao Zhou
Journal:  Front Med (Lausanne)       Date:  2021-07-07

Review 8.  Corneal Vibrations during Intraocular Pressure Measurement with an Air-Puff Method.

Authors:  Robert Koprowski; Sławomir Wilczyński
Journal:  J Healthc Eng       Date:  2018-02-11       Impact factor: 2.682

9.  Repeatability and comparison of new Corvis ST parameters in normal and keratoconus eyes.

Authors:  Kaili Yang; Liyan Xu; Qi Fan; Dongqing Zhao; Shengwei Ren
Journal:  Sci Rep       Date:  2019-10-25       Impact factor: 4.379

Review 10.  Biomechanical diagnostics of the cornea.

Authors:  Louise Pellegrino Gomes Esporcatte; Marcella Q Salomão; Bernardo T Lopes; Paolo Vinciguerra; Riccardo Vinciguerra; Cynthia Roberts; Ahmed Elsheikh; Daniel G Dawson; Renato Ambrósio
Journal:  Eye Vis (Lond)       Date:  2020-02-05
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