A1 Refereed original research article in a scientific journal
Machine Learning Improves Upon Clinicians' Prediction of End Stage Kidney Disease
Authors: Chuah Aaron, Walters Giles, Christiadi Daniel, Karpe Krishna, Kennard Alice, Singer Richard, Talaulikar Girish, Ge Wenbo, Suominen Hanna, Andrews T Daniel, Jiang Simon
Publisher: FRONTIERS MEDIA SA
Publication year: 2022
Journal: Frontiers in Medicine
Journal name in source: FRONTIERS IN MEDICINE
Journal acronym: FRONT MED-LAUSANNE
Article number: 837232
Volume: 9
Number of pages: 9
DOI: https://doi.org/10.3389/fmed.2022.837232
Web address : https://doi.org/10.3389/fmed.2022.837232
Self-archived copy’s web address: https://research.utu.fi/converis/portal/detail/Publication/175327468
Background and Objectives
Chronic kidney disease progression to ESKD is associated with a marked increase in mortality and morbidity. Its progression is highly variable and difficult to predict.
Methods
This is an observational, retrospective, single-centre study. The cohort was patients attending hospital and nephrology clinic at The Canberra Hospital from September 1996 to March 2018. Demographic data, vital signs, kidney function test, proteinuria, and serum glucose were extracted. The model was trained on the featurised time series data with XGBoost. Its performance was compared against six nephrologists and the Kidney Failure Risk Equation (KFRE).
Results
A total of 12,371 patients were included, with 2,388 were found to have an adequate density (three eGFR data points in the first 2 years) for subsequent analysis. Patients were divided into 80%/20% ratio for training and testing datasets.ML model had superior performance than nephrologist in predicting ESKD within 2 years with 93.9% accuracy, 60% sensitivity, 97.7% specificity, 75% positive predictive value. The ML model was superior in all performance metrics to the KFRE 4- and 8-variable models.eGFR and glucose were found to be highly contributing to the ESKD prediction performance.
Conclusions
The computational predictions had higher accuracy, specificity and positive predictive value, which indicates the potential integration into clinical workflows for decision support.
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