Topographic, tomographic, and corneal wavefront asymmetry in keratoconus: towards an eye asymmetry index EASIX

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Topographic, tomographic, and corneal wavefront asymmetry in keratoconus: towards an eye asymmetry index EASIX. / Mehlan, Juliane; Steinberg, Johannes; Druchkiv, Vasyl; Katz, Toam; Linke, Stephan Johannes.

In: GRAEF ARCH CLIN EXP, Vol. 260, No. 9, 09.2022, p. 2949-2958.

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@article{2188bff69cdf4d0193459db04aee7aed,
title = "Topographic, tomographic, and corneal wavefront asymmetry in keratoconus: towards an eye asymmetry index EASIX",
abstract = "PURPOSE: The study aims to explore the intereye asymmetry in normal and keratoconic individuals and to evaluate the discriminant power of single and combined asymmetry parameters.METHODS: This is a retrospective designed study including 414 patients who had Pentacam Scheimpflug topographic and tomographic imaging in both eyes: 124 subjects with bilateral normal corneas evaluated for refractive surgery and 290 with keratoconus. All elevation-, pachymetric-, and volumetric-based data (56 parameters) were electronically retrieved and analyzed. Intereye asymmetry was determined by subtracting the lowest value from the highest value for each variable. The degree of asymmetry between each subject's eyes was calculated with intraclass correlation coefficients for all the parameters. Receiver operating characteristic curve was used to determine predictive accuracy and to identify optimal cutoffs of these values and combinations thereof.RESULTS: In the normal/keratoconus subjects the median intereye asymmetries were 0.30/3.45 for K2 (flat) meridian, 0.03/0.25 for BFS front, 1.00/15.00 for elevation back BFS apex, and 7.00/29.00 for pachy min.CONCLUSIONS: In addition to Rabinowitz's Kmax intereye asymmetry we propose pachymetric, elevation-based, and high-order corneal wavefront intereye asymmetry parameters to improve the diagnostic armamentarium of keratoconus.",
keywords = "Cornea, Corneal Pachymetry, Corneal Topography, Humans, Keratoconus, ROC Curve, Retrospective Studies, Tomography",
author = "Juliane Mehlan and Johannes Steinberg and Vasyl Druchkiv and Toam Katz and Linke, {Stephan Johannes}",
note = "{\textcopyright} 2022. The Author(s).",
year = "2022",
month = sep,
doi = "10.1007/s00417-022-05642-5",
language = "English",
volume = "260",
pages = "2949--2958",
journal = "GRAEF ARCH CLIN EXP",
issn = "0721-832X",
publisher = "Springer",
number = "9",

}

RIS

TY - JOUR

T1 - Topographic, tomographic, and corneal wavefront asymmetry in keratoconus: towards an eye asymmetry index EASIX

AU - Mehlan, Juliane

AU - Steinberg, Johannes

AU - Druchkiv, Vasyl

AU - Katz, Toam

AU - Linke, Stephan Johannes

N1 - © 2022. The Author(s).

PY - 2022/9

Y1 - 2022/9

N2 - PURPOSE: The study aims to explore the intereye asymmetry in normal and keratoconic individuals and to evaluate the discriminant power of single and combined asymmetry parameters.METHODS: This is a retrospective designed study including 414 patients who had Pentacam Scheimpflug topographic and tomographic imaging in both eyes: 124 subjects with bilateral normal corneas evaluated for refractive surgery and 290 with keratoconus. All elevation-, pachymetric-, and volumetric-based data (56 parameters) were electronically retrieved and analyzed. Intereye asymmetry was determined by subtracting the lowest value from the highest value for each variable. The degree of asymmetry between each subject's eyes was calculated with intraclass correlation coefficients for all the parameters. Receiver operating characteristic curve was used to determine predictive accuracy and to identify optimal cutoffs of these values and combinations thereof.RESULTS: In the normal/keratoconus subjects the median intereye asymmetries were 0.30/3.45 for K2 (flat) meridian, 0.03/0.25 for BFS front, 1.00/15.00 for elevation back BFS apex, and 7.00/29.00 for pachy min.CONCLUSIONS: In addition to Rabinowitz's Kmax intereye asymmetry we propose pachymetric, elevation-based, and high-order corneal wavefront intereye asymmetry parameters to improve the diagnostic armamentarium of keratoconus.

AB - PURPOSE: The study aims to explore the intereye asymmetry in normal and keratoconic individuals and to evaluate the discriminant power of single and combined asymmetry parameters.METHODS: This is a retrospective designed study including 414 patients who had Pentacam Scheimpflug topographic and tomographic imaging in both eyes: 124 subjects with bilateral normal corneas evaluated for refractive surgery and 290 with keratoconus. All elevation-, pachymetric-, and volumetric-based data (56 parameters) were electronically retrieved and analyzed. Intereye asymmetry was determined by subtracting the lowest value from the highest value for each variable. The degree of asymmetry between each subject's eyes was calculated with intraclass correlation coefficients for all the parameters. Receiver operating characteristic curve was used to determine predictive accuracy and to identify optimal cutoffs of these values and combinations thereof.RESULTS: In the normal/keratoconus subjects the median intereye asymmetries were 0.30/3.45 for K2 (flat) meridian, 0.03/0.25 for BFS front, 1.00/15.00 for elevation back BFS apex, and 7.00/29.00 for pachy min.CONCLUSIONS: In addition to Rabinowitz's Kmax intereye asymmetry we propose pachymetric, elevation-based, and high-order corneal wavefront intereye asymmetry parameters to improve the diagnostic armamentarium of keratoconus.

KW - Cornea

KW - Corneal Pachymetry

KW - Corneal Topography

KW - Humans

KW - Keratoconus

KW - ROC Curve

KW - Retrospective Studies

KW - Tomography

U2 - 10.1007/s00417-022-05642-5

DO - 10.1007/s00417-022-05642-5

M3 - SCORING: Journal article

C2 - 35396961

VL - 260

SP - 2949

EP - 2958

JO - GRAEF ARCH CLIN EXP

JF - GRAEF ARCH CLIN EXP

SN - 0721-832X

IS - 9

ER -