Performance validation of a new finger-root-adapted ring-shaped oximeter sensor during stepwise steady-state inspired
Yihan Zhang1, Lan Gao2, Wenxiu Zhu1
1Department of Anesthesiology, The Third Affiliated Hospital of Sun Yat-sen University, Guangzhou, Guangdong, China.
Abstract:
Peripheral pulse oxygen saturation (SpO2) is a widely applied substitute parameter to arterial oxygen saturation (SaO2). Optimized morphological design and geometrical arrangement of the light-source and photodetector without compromising their precision, can maximize the clinical utility of the SpO2 sensors. We analyzed data of 36 participants collected from two multicenter trials that examined the performances of 3 transmittance oximeter sensors. A finger-root-adapted ring-shaped sensor with light-source and detector located on the sides of the finger, was compared with 2 fingertip-adapted designs (finger-clip and finger-case), whose light-sources and detectors were located on the antero-posterior axis of the finger. A stepwise steady-state inspired hypoxia protocol according to ISO 80,601 2-61: 2017 were adopted to examine the SpO2 measurements of all the sensors obtained at 5 different SaO2 levels (100%-97%, 92% - 96%, 85% ~ 91%, 78% ~ 84%, 70% ~ 77) under either quiescent or motion condition as well as in darkly or lightly pigmented populations. Under each tested condition, all the sensors presented an accuracy root mean square (Arms) within 2%. Bland-Altman analysis of all the sensors demonstrated narrow limits of agreement. Paired SaO₂ and SpO₂ values were fitted to linear regression lines and yielded high coefficients of determination (R² > 0.97) for all sensors, indicating excellent distribution matches. The finger-ring sensor was rated by the participants to offer higher finger-movement flexibility, attachment stability and more comfortable experiences to users. The finger-root-adapted ring-shaped oximetry sensor demonstrated high precision and is more user-friendly for SpO2 monitoring.
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