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Wireless physiological parameters monitoring system with treatment feedback function during neonatal phototherapy.
Physiological Measurement 2023 August 26
OBJECTIVE: Neonatal jaundice is one of the common symptoms in the early stage of newborns, and phototherapy is a fast, safe and effective method to treat neonatal jaundice. However, recent studies have shown that phototherapy may elicit side effects on infants such as hypothermia, hyperthermia and dehydration. In order to improve the quality of phototherapy and the prognosis of patients, the changes of neonatal physiological parameters during phototherapy should be monitored to give better feed back to pediatricians or phototherapy system. But current standard clinical care during neonatal phototherapy with hard-wired devices limits this realization.
APPROACH: Here, we developed a prototype of neonatal wearable device which can wirelessly potentially monitoring the jaundice value, transepidermal water loss (TEWL), skin wettedness factor(SWF) and body orientation during phototherapy and conducted prototype validation experiments. We also set up user-friendly interfaces and analysis system on custom software, all designed to make easy the future addition of data interfaces for treatment feedback functions.
MAIN RESULTS: The preliminary in vitro experiment demonstrated the effectiveness of simultaneous monitoring of required physiological parameters. And further suggestions and specific operations are discussed in terms of optimizing the treatment of neonatal jaundice.
SIGNIFICANCE: It is believed that the established system has the potential to provide a basis for future phototherapy nursing guidelines and physiological monitoring standards.
APPROACH: Here, we developed a prototype of neonatal wearable device which can wirelessly potentially monitoring the jaundice value, transepidermal water loss (TEWL), skin wettedness factor(SWF) and body orientation during phototherapy and conducted prototype validation experiments. We also set up user-friendly interfaces and analysis system on custom software, all designed to make easy the future addition of data interfaces for treatment feedback functions.
MAIN RESULTS: The preliminary in vitro experiment demonstrated the effectiveness of simultaneous monitoring of required physiological parameters. And further suggestions and specific operations are discussed in terms of optimizing the treatment of neonatal jaundice.
SIGNIFICANCE: It is believed that the established system has the potential to provide a basis for future phototherapy nursing guidelines and physiological monitoring standards.
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