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Comparison of Machine Learning Techniques for Mortality Prediction in a Prospective Cohort of Older Adults

As global demographics change, ageing is a global phenomenon which is increasingly of interest in our modern and rapidly changing society. Thus, the application of proper prognostic indices in clinical decisions regarding mortality prediction has assumed a significant importance for personalized ris...

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Autores principales: Tedesco, Salvatore, Andrulli, Martina, Larsson, Markus Åkerlund, Kelly, Daniel, Alamäki, Antti, Timmons, Suzanne, Barton, John, Condell, Joan, O’Flynn, Brendan, Nordström, Anna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8657506/
https://www.ncbi.nlm.nih.gov/pubmed/34886532
http://dx.doi.org/10.3390/ijerph182312806
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author Tedesco, Salvatore
Andrulli, Martina
Larsson, Markus Åkerlund
Kelly, Daniel
Alamäki, Antti
Timmons, Suzanne
Barton, John
Condell, Joan
O’Flynn, Brendan
Nordström, Anna
author_facet Tedesco, Salvatore
Andrulli, Martina
Larsson, Markus Åkerlund
Kelly, Daniel
Alamäki, Antti
Timmons, Suzanne
Barton, John
Condell, Joan
O’Flynn, Brendan
Nordström, Anna
author_sort Tedesco, Salvatore
collection PubMed
description As global demographics change, ageing is a global phenomenon which is increasingly of interest in our modern and rapidly changing society. Thus, the application of proper prognostic indices in clinical decisions regarding mortality prediction has assumed a significant importance for personalized risk management (i.e., identifying patients who are at high or low risk of death) and to help ensure effective healthcare services to patients. Consequently, prognostic modelling expressed as all-cause mortality prediction is an important step for effective patient management. Machine learning has the potential to transform prognostic modelling. In this paper, results on the development of machine learning models for all-cause mortality prediction in a cohort of healthy older adults are reported. The models are based on features covering anthropometric variables, physical and lab examinations, questionnaires, and lifestyles, as well as wearable data collected in free-living settings, obtained for the “Healthy Ageing Initiative” study conducted on 2291 recruited participants. Several machine learning techniques including feature engineering, feature selection, data augmentation and resampling were investigated for this purpose. A detailed empirical comparison of the impact of the different techniques is presented and discussed. The achieved performances were also compared with a standard epidemiological model. This investigation showed that, for the dataset under consideration, the best results were achieved with Random UnderSampling in conjunction with Random Forest (either with or without probability calibration). However, while including probability calibration slightly reduced the average performance, it increased the model robustness, as indicated by the lower 95% confidence intervals. The analysis showed that machine learning models could provide comparable results to standard epidemiological models while being completely data-driven and disease-agnostic, thus demonstrating the opportunity for building machine learning models on health records data for research and clinical practice. However, further testing is required to significantly improve the model performance and its robustness.
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spelling pubmed-86575062021-12-10 Comparison of Machine Learning Techniques for Mortality Prediction in a Prospective Cohort of Older Adults Tedesco, Salvatore Andrulli, Martina Larsson, Markus Åkerlund Kelly, Daniel Alamäki, Antti Timmons, Suzanne Barton, John Condell, Joan O’Flynn, Brendan Nordström, Anna Int J Environ Res Public Health Article As global demographics change, ageing is a global phenomenon which is increasingly of interest in our modern and rapidly changing society. Thus, the application of proper prognostic indices in clinical decisions regarding mortality prediction has assumed a significant importance for personalized risk management (i.e., identifying patients who are at high or low risk of death) and to help ensure effective healthcare services to patients. Consequently, prognostic modelling expressed as all-cause mortality prediction is an important step for effective patient management. Machine learning has the potential to transform prognostic modelling. In this paper, results on the development of machine learning models for all-cause mortality prediction in a cohort of healthy older adults are reported. The models are based on features covering anthropometric variables, physical and lab examinations, questionnaires, and lifestyles, as well as wearable data collected in free-living settings, obtained for the “Healthy Ageing Initiative” study conducted on 2291 recruited participants. Several machine learning techniques including feature engineering, feature selection, data augmentation and resampling were investigated for this purpose. A detailed empirical comparison of the impact of the different techniques is presented and discussed. The achieved performances were also compared with a standard epidemiological model. This investigation showed that, for the dataset under consideration, the best results were achieved with Random UnderSampling in conjunction with Random Forest (either with or without probability calibration). However, while including probability calibration slightly reduced the average performance, it increased the model robustness, as indicated by the lower 95% confidence intervals. The analysis showed that machine learning models could provide comparable results to standard epidemiological models while being completely data-driven and disease-agnostic, thus demonstrating the opportunity for building machine learning models on health records data for research and clinical practice. However, further testing is required to significantly improve the model performance and its robustness. MDPI 2021-12-04 /pmc/articles/PMC8657506/ /pubmed/34886532 http://dx.doi.org/10.3390/ijerph182312806 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Tedesco, Salvatore
Andrulli, Martina
Larsson, Markus Åkerlund
Kelly, Daniel
Alamäki, Antti
Timmons, Suzanne
Barton, John
Condell, Joan
O’Flynn, Brendan
Nordström, Anna
Comparison of Machine Learning Techniques for Mortality Prediction in a Prospective Cohort of Older Adults
title Comparison of Machine Learning Techniques for Mortality Prediction in a Prospective Cohort of Older Adults
title_full Comparison of Machine Learning Techniques for Mortality Prediction in a Prospective Cohort of Older Adults
title_fullStr Comparison of Machine Learning Techniques for Mortality Prediction in a Prospective Cohort of Older Adults
title_full_unstemmed Comparison of Machine Learning Techniques for Mortality Prediction in a Prospective Cohort of Older Adults
title_short Comparison of Machine Learning Techniques for Mortality Prediction in a Prospective Cohort of Older Adults
title_sort comparison of machine learning techniques for mortality prediction in a prospective cohort of older adults
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8657506/
https://www.ncbi.nlm.nih.gov/pubmed/34886532
http://dx.doi.org/10.3390/ijerph182312806
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