Cargando…

The Relationship between Corvis ST Tonometry Measured Corneal Parameters and Intraocular Pressure, Corneal Thickness and Corneal Curvature

The purpose of the study was to investigate the correlation between Corneal Visualization Scheimpflug Technology (Corvis ST tonometry: CST) parameters and various other ocular parameters, including intraocular pressure (IOP) with Goldmann applanation tonometry. IOP with Goldmann applanation tonometr...

Descripción completa

Detalles Bibliográficos
Autores principales: Asaoka, Ryo, Nakakura, Shunsuke, Tabuchi, Hitoshi, Murata, Hiroshi, Nakao, Yoshitaka, Ihara, Noriko, Rimayanti, Ulfah, Aihara, Makoto, Kiuchi, Yoshiaki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4618943/
https://www.ncbi.nlm.nih.gov/pubmed/26485129
http://dx.doi.org/10.1371/journal.pone.0140385
_version_ 1782397005522272256
author Asaoka, Ryo
Nakakura, Shunsuke
Tabuchi, Hitoshi
Murata, Hiroshi
Nakao, Yoshitaka
Ihara, Noriko
Rimayanti, Ulfah
Aihara, Makoto
Kiuchi, Yoshiaki
author_facet Asaoka, Ryo
Nakakura, Shunsuke
Tabuchi, Hitoshi
Murata, Hiroshi
Nakao, Yoshitaka
Ihara, Noriko
Rimayanti, Ulfah
Aihara, Makoto
Kiuchi, Yoshiaki
author_sort Asaoka, Ryo
collection PubMed
description The purpose of the study was to investigate the correlation between Corneal Visualization Scheimpflug Technology (Corvis ST tonometry: CST) parameters and various other ocular parameters, including intraocular pressure (IOP) with Goldmann applanation tonometry. IOP with Goldmann applanation tonometry (IOP-G), central corneal thickness (CCT), axial length (AL), corneal curvature, and CST parameters were measured in 94 eyes of 94 normal subjects. The relationship between ten CST parameters against age, gender, IOP-G, AL, CST-determined CCT and average corneal curvature was investigated using linear modeling. In addition, the relationship between IOP-G versus CST-determined CCT, AL, and other CST parameters was also investigated using linear modeling. Linear modeling showed that the CST measurement ‘A time-1’ is dependent on IOP-G, age, AL, and average corneal curvature; ‘A length-1’ depends on age and average corneal curvature; ‘A velocity-1’ depends on IOP-G and AL; ‘A time-2’ depends on IOP-G, age, and AL; ‘A length-2’ depends on CCT; ‘A velocity-2’ depends on IOP-G, age, AL, CCT, and average corneal curvature; ‘peak distance’ depends on gender; ‘maximum deformation amplitude’ depends on IOP-G, age, and AL. In the optimal model for IOP-G, A time-1, A velocity-1, and highest concavity curvature, but not CCT, were selected as the most important explanatory variables. In conclusion, many CST parameters were not significantly related to CCT, but IOP usually was a significant predictor, suggesting that an adjustment should be made to improve their usefulness for clinical investigations. It was also suggested CST parameters were more influential for IOP-G than CCT and average corneal curvature.
format Online
Article
Text
id pubmed-4618943
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-46189432015-10-29 The Relationship between Corvis ST Tonometry Measured Corneal Parameters and Intraocular Pressure, Corneal Thickness and Corneal Curvature Asaoka, Ryo Nakakura, Shunsuke Tabuchi, Hitoshi Murata, Hiroshi Nakao, Yoshitaka Ihara, Noriko Rimayanti, Ulfah Aihara, Makoto Kiuchi, Yoshiaki PLoS One Research Article The purpose of the study was to investigate the correlation between Corneal Visualization Scheimpflug Technology (Corvis ST tonometry: CST) parameters and various other ocular parameters, including intraocular pressure (IOP) with Goldmann applanation tonometry. IOP with Goldmann applanation tonometry (IOP-G), central corneal thickness (CCT), axial length (AL), corneal curvature, and CST parameters were measured in 94 eyes of 94 normal subjects. The relationship between ten CST parameters against age, gender, IOP-G, AL, CST-determined CCT and average corneal curvature was investigated using linear modeling. In addition, the relationship between IOP-G versus CST-determined CCT, AL, and other CST parameters was also investigated using linear modeling. Linear modeling showed that the CST measurement ‘A time-1’ is dependent on IOP-G, age, AL, and average corneal curvature; ‘A length-1’ depends on age and average corneal curvature; ‘A velocity-1’ depends on IOP-G and AL; ‘A time-2’ depends on IOP-G, age, and AL; ‘A length-2’ depends on CCT; ‘A velocity-2’ depends on IOP-G, age, AL, CCT, and average corneal curvature; ‘peak distance’ depends on gender; ‘maximum deformation amplitude’ depends on IOP-G, age, and AL. In the optimal model for IOP-G, A time-1, A velocity-1, and highest concavity curvature, but not CCT, were selected as the most important explanatory variables. In conclusion, many CST parameters were not significantly related to CCT, but IOP usually was a significant predictor, suggesting that an adjustment should be made to improve their usefulness for clinical investigations. It was also suggested CST parameters were more influential for IOP-G than CCT and average corneal curvature. Public Library of Science 2015-10-20 /pmc/articles/PMC4618943/ /pubmed/26485129 http://dx.doi.org/10.1371/journal.pone.0140385 Text en © 2015 Asaoka et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Asaoka, Ryo
Nakakura, Shunsuke
Tabuchi, Hitoshi
Murata, Hiroshi
Nakao, Yoshitaka
Ihara, Noriko
Rimayanti, Ulfah
Aihara, Makoto
Kiuchi, Yoshiaki
The Relationship between Corvis ST Tonometry Measured Corneal Parameters and Intraocular Pressure, Corneal Thickness and Corneal Curvature
title The Relationship between Corvis ST Tonometry Measured Corneal Parameters and Intraocular Pressure, Corneal Thickness and Corneal Curvature
title_full The Relationship between Corvis ST Tonometry Measured Corneal Parameters and Intraocular Pressure, Corneal Thickness and Corneal Curvature
title_fullStr The Relationship between Corvis ST Tonometry Measured Corneal Parameters and Intraocular Pressure, Corneal Thickness and Corneal Curvature
title_full_unstemmed The Relationship between Corvis ST Tonometry Measured Corneal Parameters and Intraocular Pressure, Corneal Thickness and Corneal Curvature
title_short The Relationship between Corvis ST Tonometry Measured Corneal Parameters and Intraocular Pressure, Corneal Thickness and Corneal Curvature
title_sort relationship between corvis st tonometry measured corneal parameters and intraocular pressure, corneal thickness and corneal curvature
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4618943/
https://www.ncbi.nlm.nih.gov/pubmed/26485129
http://dx.doi.org/10.1371/journal.pone.0140385
work_keys_str_mv AT asaokaryo therelationshipbetweencorvissttonometrymeasuredcornealparametersandintraocularpressurecornealthicknessandcornealcurvature
AT nakakurashunsuke therelationshipbetweencorvissttonometrymeasuredcornealparametersandintraocularpressurecornealthicknessandcornealcurvature
AT tabuchihitoshi therelationshipbetweencorvissttonometrymeasuredcornealparametersandintraocularpressurecornealthicknessandcornealcurvature
AT muratahiroshi therelationshipbetweencorvissttonometrymeasuredcornealparametersandintraocularpressurecornealthicknessandcornealcurvature
AT nakaoyoshitaka therelationshipbetweencorvissttonometrymeasuredcornealparametersandintraocularpressurecornealthicknessandcornealcurvature
AT iharanoriko therelationshipbetweencorvissttonometrymeasuredcornealparametersandintraocularpressurecornealthicknessandcornealcurvature
AT rimayantiulfah therelationshipbetweencorvissttonometrymeasuredcornealparametersandintraocularpressurecornealthicknessandcornealcurvature
AT aiharamakoto therelationshipbetweencorvissttonometrymeasuredcornealparametersandintraocularpressurecornealthicknessandcornealcurvature
AT kiuchiyoshiaki therelationshipbetweencorvissttonometrymeasuredcornealparametersandintraocularpressurecornealthicknessandcornealcurvature
AT asaokaryo relationshipbetweencorvissttonometrymeasuredcornealparametersandintraocularpressurecornealthicknessandcornealcurvature
AT nakakurashunsuke relationshipbetweencorvissttonometrymeasuredcornealparametersandintraocularpressurecornealthicknessandcornealcurvature
AT tabuchihitoshi relationshipbetweencorvissttonometrymeasuredcornealparametersandintraocularpressurecornealthicknessandcornealcurvature
AT muratahiroshi relationshipbetweencorvissttonometrymeasuredcornealparametersandintraocularpressurecornealthicknessandcornealcurvature
AT nakaoyoshitaka relationshipbetweencorvissttonometrymeasuredcornealparametersandintraocularpressurecornealthicknessandcornealcurvature
AT iharanoriko relationshipbetweencorvissttonometrymeasuredcornealparametersandintraocularpressurecornealthicknessandcornealcurvature
AT rimayantiulfah relationshipbetweencorvissttonometrymeasuredcornealparametersandintraocularpressurecornealthicknessandcornealcurvature
AT aiharamakoto relationshipbetweencorvissttonometrymeasuredcornealparametersandintraocularpressurecornealthicknessandcornealcurvature
AT kiuchiyoshiaki relationshipbetweencorvissttonometrymeasuredcornealparametersandintraocularpressurecornealthicknessandcornealcurvature