Rafl Jakub, Bachman Thomas E, Rafl-Huttova Veronika, Walzel Simon, Rozanek Martin
Department of Biomedical Technology, Faculty of Biomedical Engineering, Czech Technical University in Prague, Kladno, Czech Republic.
Digit Health. 2022 Oct 11;8:20552076221132127. doi: 10.1177/20552076221132127. eCollection 2022 Jan-Dec.
We investigated how a commercially available smartwatch that measures peripheral blood oxygen saturation (SpO) can detect hypoxemia compared to a medical-grade pulse oximeter.
We recruited 24 healthy participants. Each participant wore a smartwatch (Apple Watch Series 6) on the left wrist and a pulse oximeter sensor (Masimo Radical-7) on the left middle finger. The participants breathed via a breathing circuit with a three-way non-rebreathing valve in three phases. First, in the 2-minute initial stabilization phase, the participants inhaled the ambient air. Then in the 5-minute desaturation phase, the participants breathed the oxygen-reduced gas mixture (12% O), which temporarily reduced their blood oxygen saturation. In the final stabilization phase, the participants inhaled the ambient air again until SpO returned to normal values. Measurements of SpO were taken from the smartwatch and the pulse oximeter simultaneously in 30-s intervals.
There were 642 individual pairs of SpO measurements. The bias in SpO between the smartwatch and the oximeter was 0.0% for all the data points. The bias for SpO less than 90% was 1.2%. The differences in individual measurements between the smartwatch and oximeter within 6% SpO can be expected for SpO readings 90%-100% and up to 8% for SpO readings less than 90%.
Apple Watch Series 6 can reliably detect states of reduced blood oxygen saturation with SpO below 90% when compared to a medical-grade pulse oximeter. The technology used in this smartwatch is sufficiently advanced for the indicative measurement of SpO outside the clinic.
ClinicalTrials.gov NCT04780724.
我们研究了一款可测量外周血氧饱和度(SpO)的商用智能手表与医用级脉搏血氧仪相比,如何检测低氧血症。
我们招募了24名健康参与者。每位参与者左手腕佩戴智能手表(Apple Watch Series 6),左手中指佩戴脉搏血氧仪传感器(Masimo Radical-7)。参与者通过带有三通非重复呼吸阀的呼吸回路分三个阶段呼吸。首先,在2分钟的初始稳定阶段,参与者吸入环境空气。然后在5分钟的去饱和阶段,参与者呼吸低氧混合气体(12% O),这会暂时降低他们的血氧饱和度。在最后的稳定阶段,参与者再次吸入环境空气,直到SpO恢复到正常水平。每隔30秒同时从智能手表和脉搏血氧仪获取SpO测量值。
共有642对SpO测量值。智能手表和血氧仪之间SpO的偏差在所有数据点上为0.0%。SpO低于90%时的偏差为1.2%。对于90%-100%的SpO读数,智能手表和血氧仪之间个体测量值的差异在SpO的6%以内,对于低于90%的SpO读数,差异可达8%。
与医用级脉搏血氧仪相比,Apple Watch Series 6能够可靠地检测出血氧饱和度低于90%的低血氧状态。这款智能手表所使用的技术足够先进,可用于临床外SpO的指示性测量。
ClinicalTrials.gov NCT04780724。