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Machine Learning for Postoperative Continuous Recovery Scores of Oncology Patients in Perioperative Care with Data from Wearables

Authors :
van den Eijnden, Meike A.C.
van der Stam, Jonna A.
Bouwman, R. Arthur
Mestrom, Eveline H.J.
Verhaegh, Wim F.J.
van Riel, Natal A.W.
Cox, Lieke G.E.
van den Eijnden, Meike A.C.
van der Stam, Jonna A.
Bouwman, R. Arthur
Mestrom, Eveline H.J.
Verhaegh, Wim F.J.
van Riel, Natal A.W.
Cox, Lieke G.E.
Source :
Sensors vol.23 (2023) date: 2023-05-02 nr.9 [ISSN 1424-8220]
Publication Year :
2023

Abstract

Assessing post-operative recovery is a significant component of perioperative care, since this assessment might facilitate detecting complications and determining an appropriate discharge date. However, recovery is difficult to assess and challenging to predict, as no universally accepted definition exists. Current solutions often contain a high level of subjectivity, measure recovery only at one moment in time, and only investigate recovery until the discharge moment. For these reasons, this research aims to create a model that predicts continuous recovery scores in perioperative care in the hospital and at home for objective decision making. This regression model utilized vital signs and activity metrics measured using wearable sensors and the XGBoost algorithm for training. The proposed model described continuous recovery profiles, obtained a high predictive performance, and provided outcomes that are interpretable due to the low number of features in the final model. Moreover, activity features, the circadian rhythm of the heart, and heart rate recovery showed the highest feature importance in the recovery model. Patients could be identified with fast and slow recovery trajectories by comparing patient-specific predicted profiles to the average fast- and slow-recovering populations. This identification may facilitate determining appropriate discharge dates, detecting complications, preventing readmission, and planning physical therapy. Hence, the model can provide an automatic and objective decision support tool.

Details

Database :
OAIster
Journal :
Sensors vol.23 (2023) date: 2023-05-02 nr.9 [ISSN 1424-8220]
Notes :
van den Eijnden, Meike A.C.
Publication Type :
Electronic Resource
Accession number :
edsoai.on1383748342
Document Type :
Electronic Resource