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Applying machine learning to consumer wearable data for the early detection of complications after pediatric
Hassan M K Ghomrawi1,2,3,4,5, Megan K O'Brien6, Michela Carter1,7
1Department of Surgery, Northwestern University Feinberg School of Medicine, Chicago, IL, USA.
Insights
Consumer wearable devices like Fitbit can help detect abnormal recovery in children after surgery. Machine learning models using Fitbit data accurately identified early signs of complications in pediatric appendectomy patients.
Area of Science:
- Pediatric Surgery
- Digital Health
- Machine Learning in Healthcare
Background:
- Postoperative monitoring for children often relies on subjective caregiver assessments.
- Lack of objective tools at home can lead to delayed care or unnecessary emergency visits.
- Consumer wearables offer a potential solution for objective, continuous monitoring.
Purpose of the Study:
- To evaluate Fitbit's ability to detect abnormal recovery in children post-appendectomy.
- To assess the utility of wearable device data for early identification of complications.
- To develop machine learning models for predicting adverse postoperative events.
Main Methods:
- 162 children (ages 3-17) wore Fitbit devices for 21 days post-appendectomy.
- Data included physical activity, heart rate, and sleep patterns.
- Machine learning models were trained to detect abnormal recovery using Fitbit data and clinical characteristics.
Main Results:
- Models accurately detected 83% of abnormal recovery days in complicated appendicitis.
- Models detected 70% of abnormal recovery days in simple appendicitis.
- Early detection of abnormal recovery was achieved up to two days before reported symptoms/complications.
Conclusions:
- Consumer wearables and machine learning show promise for monitoring pediatric surgical recovery.
- This approach can facilitate early detection of complications, improving patient outcomes.
- Further development could enhance postoperative care for pediatric surgical patients.
Abstract:
When children are discharged from the hospital after surgery, their caregivers often rely on subjective assessments (e.g., appetite, fatigue) to monitor postoperative recovery as objective assessment tools are scarce at home. Such imprecise and one-dimensional evaluations can result in unwarranted emergency department visits or delayed care. To address this gap in postoperative monitoring, we evaluated the ability of a consumer-grade wearable device, Fitbit, which records multimodal data about daily physical activity, heart rate, and sleep, in detecting abnormal recovery early in children recovering after appendectomy. One hundred and sixty-two children, ages 3-17 years old, who underwent an appendectomy (86 complicated and 76 simple cases of appendicitis) wore a Fitbit device on their wrist for 21 days postoperatively. Abnormal recovery events (i.e., abnormal symptoms or confirmed postoperative complications) that arose during this period were gathered from medical records and patient reports. Fitbit-derived measures, as well as demographic and clinical characteristics, were used to train machine learning models to retrospectively detect abnormal recovery in the two days leading up to the event for patients with complicated and simple appendicitis. A balanced random forest classifier accurately detected 83% of these abnormal recovery days in complicated appendicitis and 70% of abnormal recovery days in simple appendicitis prior to the true report of a symptom/complication. These results support the development of machine learning algorithms to predict onset of abnormal symptoms and complications in children undergoing surgery, and the use of consumer wearables as monitoring tools for early detection of postoperative events.
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