[Purpose]: To validate a recently developed program for automatic and objective keratoconus detection (Keratoconus Assistant [KA]) by applying it to a new population and comparing it with other methods described in the literature.[Methods]: KA uses machine learning and 25 Pentacam-derived parameters to classify eyes into subgroups, such as keratoconus, keratoconus suspect, postrefractive surgery, and normal eyes. To validate this program, it was applied to 131 eyes diagnosed separately by experienced corneal specialists from 2 different centers (Fondation Rothschild, Paris, and Antwerp University Hospital [UZA]). The agreement of the KA classification with 7 other indices from the literature was assessed using interrater reliability and con...
Purpose: To enhance the current standards of subclinical keratoconus screening based on the statisti...
PurposeTo develop an application for the Pentacam HR for the purpose of optimising the accuracy of t...
[Purpose]: To present and validate a stochastic eye model for developing keratoconus to e.g. improve...
PURPOSE: To describe the topographic and tomographic characteristics of normal fellow eyes of unilat...
Objectives: This is a protocol for a Cochrane Review (diagnostic). The objectives are as follows:. T...
(1) Background: The objective of this review was to synthesize available data on the use of machine ...
PURPOSE: To evaluate the performance of support vector machine, multi-layer perceptron and radial ba...
Purpose: Keratoconus (KC) represents one of the leading causes of corneal transplantation worldwide....
The accurate diagnosis of keratoconus, especially in its early stages of development, allows one to ...
Objectives:This study aims to determine the diagnostic ability of Pentacam indices for keratoconus a...
Purpose:To determine the reproducibility of indices for diagnosis and follow-up of keratoconus measu...
Purpose: To develop an objective severity scoring system for keratoconus for the use in clinical pra...
Purpose: To evaluate the utility of topographic and pachymetric parameters of Scheimpflug system in ...
Background: Corneal topography is a clinically validated examination method for keratoconus. However...
Purpose: Placido disk-based corneal topography is still most commonly used in daily practice. This s...
Purpose: To enhance the current standards of subclinical keratoconus screening based on the statisti...
PurposeTo develop an application for the Pentacam HR for the purpose of optimising the accuracy of t...
[Purpose]: To present and validate a stochastic eye model for developing keratoconus to e.g. improve...
PURPOSE: To describe the topographic and tomographic characteristics of normal fellow eyes of unilat...
Objectives: This is a protocol for a Cochrane Review (diagnostic). The objectives are as follows:. T...
(1) Background: The objective of this review was to synthesize available data on the use of machine ...
PURPOSE: To evaluate the performance of support vector machine, multi-layer perceptron and radial ba...
Purpose: Keratoconus (KC) represents one of the leading causes of corneal transplantation worldwide....
The accurate diagnosis of keratoconus, especially in its early stages of development, allows one to ...
Objectives:This study aims to determine the diagnostic ability of Pentacam indices for keratoconus a...
Purpose:To determine the reproducibility of indices for diagnosis and follow-up of keratoconus measu...
Purpose: To develop an objective severity scoring system for keratoconus for the use in clinical pra...
Purpose: To evaluate the utility of topographic and pachymetric parameters of Scheimpflug system in ...
Background: Corneal topography is a clinically validated examination method for keratoconus. However...
Purpose: Placido disk-based corneal topography is still most commonly used in daily practice. This s...
Purpose: To enhance the current standards of subclinical keratoconus screening based on the statisti...
PurposeTo develop an application for the Pentacam HR for the purpose of optimising the accuracy of t...
[Purpose]: To present and validate a stochastic eye model for developing keratoconus to e.g. improve...