Predictive Monitoring of Critical Cardiorespiratory Alarms in Neonates Under Intensive Care

Rohan Joshi1,2,3, Zheng Peng4, Xi Long4,1

  • 12Department of Family Care SolutionsPhilips Research5656AZEindhovenThe Netherlands.

Insights

Machine learning predicts critical cardiorespiratory alarms in neonatal intensive care units, reducing alarm fatigue. This model offers nurses earlier warnings for preemptive action, improving infant care.

Area of Science:

  • Biomedical Engineering
  • Clinical Informatics
  • Neonatology

Background:

  • Alarm fatigue in neonatal intensive care units (NICUs) is a significant issue.
  • Critical cardiorespiratory alarms frequently occur, leading to desensitization of clinical staff.
  • Early prediction of critical alarms is needed to improve patient outcomes and reduce staff burden.

Purpose of the Study:

  • To develop and evaluate a machine learning model for early prediction of critical cardiorespiratory alarms in NICUs.
  • To reduce alarm fatigue by providing clinicians with advance warning of potential critical events.
  • To enhance preemptive clinical action through predictive monitoring.

Main Methods:

  • Utilized over 34,000 hours of patient monitoring data from 55 infants.
  • Extracted vital signs (heart rate, breathing rate, oxygen saturation) and heart rate variability from ECG.
  • Developed decision tree classifiers trained on a case-cohort of yellow alarms followed by red alarms.

Main Results:

  • The best model predicted 26% of critical red alarms with a median advance warning of 18.4 seconds.
  • This prediction came at the cost of a 7% increase in additional red alarms.
  • The model utilized a 2-minute window of data preceding the initial yellow alarm.

Conclusions:

  • Machine learning-based predictive monitoring can provide a crucial window for preemptive clinical action in NICUs.
  • The proposed algorithm can be safely integrated into existing alarm systems.
  • Early prediction of critical alarms holds potential for improving patient safety and reducing alarm fatigue.

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