Development of machine learning models to predict posterior capsule rupture based on the EUREQUO registry
Triepels, Ron J. M. A. and Segers, Maartje H. M. and Rosen, Paul and Nuijts, Rudy M. M. A. and van den Biggelaar, Frank J. H. M. and Henry, Ype P. and Stenevi, Ulf and Tassignon, Marie‐José and Young, David and Behndig, Anders and Lundström, Mats and Dickman, Mor M. (2023) Development of machine learning models to predict posterior capsule rupture based on the EUREQUO registry. Acta Ophthalmologica, 101 (6). pp. 644-650. ISSN 1755-375X (https://doi.org/10.1111/aos.15648)
Preview |
Text.
Filename: Triepels_etal_AO_2023_Development_of_machine_learning_models_to_predict_posterior_capsule_rupture.pdf
Final Published Version License: Download (394kB)| Preview |
Abstract
Purpose: To evaluate the performance of different probabilistic classifiers to predict posterior capsule rupture (PCR) prior to cataract surgery. Methods: Three probabilistic classifiers were constructed to estimate the probability of PCR: a Bayesian network (BN), logistic regression (LR) model, and multi‐layer perceptron (MLP) network. The classifiers were trained on a sample of 2 853 376 surgeries reported to the European Registry of Quality Outcomes for Cataract and Refractive Surgery (EUREQUO) between 2008 and 2018. The performance of the classifiers was evaluated based on the area under the precision‐recall curve (AUPRC) and compared to existing scoring models in the literature. Furthermore, direct risk factors for PCR were identified by analysing the independence structure of the BN. Results: The MLP network predicted PCR overall the best (AUPRC 13.1 ± 0.41%), followed by the BN (AUPRC 8.05 ± 0.39%) and the LR model (AUPRC 7.31 ± 0.15%). Direct risk factors for PCR include preoperative best‐corrected visual acuity (BCVA), year of surgery, operation type, anaesthesia, target refraction, other ocular comorbidities, white cataract, and corneal opacities. Conclusions: Our results suggest that the MLP network performs better than existing scoring models in the literature, despite a relatively low precision at high recall. Consequently, implementing the MLP network in clinical practice can potentially decrease the PCR rate.
ORCID iDs
Triepels, Ron J. M. A., Segers, Maartje H. M., Rosen, Paul, Nuijts, Rudy M. M. A., van den Biggelaar, Frank J. H. M., Henry, Ype P., Stenevi, Ulf, Tassignon, Marie‐José, Young, David ORCID: https://orcid.org/0000-0002-3652-0513, Behndig, Anders, Lundström, Mats and Dickman, Mor M.;-
-
Item type: Article ID code: 84228 Dates: DateEventSeptember 2023Published15 February 2023Published Online31 January 2023Accepted5 December 2022SubmittedSubjects: Medicine > Ophthalmology
Science > Mathematics > Electronic computers. Computer scienceDepartment: Faculty of Science > Mathematics and Statistics Depositing user: Pure Administrator Date deposited: 16 Feb 2023 11:43 Last modified: 11 Nov 2024 13:48 URI: https://strathprints.strath.ac.uk/id/eprint/84228