Key result
An affordable, automated wearable system for continuous monitoring of neonates demonstrated maximum measurement errors of 0.1 °C for temperature, 0.6% for oxygen saturation, and 0.8 BPM for pulse rate.
Population
Ill and/or premature newborn infants in under-resourced clinical settings
Comparison
Affordable and automated wearable system for… vs Manual monitoring practices
Authors
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May support low-cost neonatal monitoring in under-resourced settings; leaves open need for prospective validation before clinical use.
A low-cost, wearable IoT system was developed for continuous and accurate monitoring of vital signs in neonates to address challenges in under-resourced clinical settings.
babar et al. (2021) studied Ill and/or premature new-born infants. Automated wearable system for continuous vital signs monitoring was evaluated on Measurement error of vital signs. An affordable, automated wearable system for continuous monitoring of neonates demonstrated maximum measurement errors of 0.1 °C for temperature, 0.6% for oxygen saturation, and 0.8 BPM for pulse rate.
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