Abstract

Aims

Machine learning (ML) is widely believed to be able to learn complex hidden interactions from the data and has the potential in predicting events such as heart failure (HF) readmission and death. Recent studies have revealed conflicting results likely due to failure to take into account the class imbalance problem commonly seen with medical data. We developed a new ML approach to predict 30 day HF readmission or death and compared the performance of this model with other commonly used prediction models.

Methods and results

We identified all Western Australian patients aged above 65 years admitted for HF between 2003 and 2008 in the linked Hospital Morbidity Data Collection. Taking into consideration the class imbalance problem, we developed a multi‐layer perceptron (MLP)‐based approach to predict 30 day HF readmission or death and compared the predictive performances using the performance metrics, that is, area under the receiver operating characteristic curve (AUC), area under the precision–recall curve (AUPRC), sensitivity and specificity with other ML and regression models. Out of the 10 757 patients with HF, 23.6% were readmitted or died within 30 days of hospital discharge. We observed an AUC of 0.55, 0.53, 0.58, and 0.54 while an AUPRC of 0.39, 0.38, 0.46, and 0.38 for weighted random forest, weighted decision trees, logistic regression, and weighted support vector machines models, respectively. The MLP‐based approach produced the highest AUC (0.62) and AUPRC (0.46) with 48% sensitivity and 70% specificity.

Conclusions

We show that for the medical data with class imbalance, the proposed MLP‐based approach is superior to other ML and regression techniques for the prediction of 30 day HF readmission or death.

Details

Title
Machine learning‐based prediction of heart failure readmission or death: implications of choosing the right model and the right metrics
Author
Awan, Saqib Ejaz 1 ; Bennamoun, Mohammed 1 ; Ferdous Sohel 2 ; Sanfilippo, Frank Mario 3 ; Dwivedi, Girish 4 

 Department of Computer Science and Software Engineering, The University of Western Australia, Perth, Australia 
 School of Engineering and Information Technology, Murdoch University, Perth, Australia 
 School of Population and Global Health, The University of Western Australia, Perth, Australia 
 Harry Perkins Institute of Medical Research, Fiona Stanley Hospital, The University of Western Australia, Perth, Australia 
Pages
428-435
Section
Original Research Articles
Publication year
2019
Publication date
Apr 2019
Publisher
Oxford University Press
e-ISSN
20555822
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
2328382745
Copyright
© 2019. This work is published under http://creativecommons.org/licenses/by-nc/4.0/ (the “License”). Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License.