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New principle for measuring arterial blood oxygenation enabling motion-robust remote monitoring

机译:测量动脉血氧合的新原理可实现运动鲁棒的远程监控

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摘要

Finger-oximeters are ubiquitously used for patient monitoring in hospitals worldwide. Recently, remote measurement of arterial blood oxygenation (SpO2) with a camera has been demonstrated. Both contact and remote measurements, however, require the subject to remain static for accurate SpO2 values. This is due to the use of the common ratio-of-ratios measurement principle that measures the relative pulsatility at different wavelengths. Since the amplitudes are small, they are easily corrupted by motion-induced variations. We introduce a new principle that allows accurate remote measurements even during significant subject motion. We demonstrate the main advantage of the principle, i.e. that the optimal signature remains the same even when the SNR of the PPG signal drops significantly due to motion or limited measurement area. The evaluation uses recordings with breath-holding events, which induce hypoxemia in healthy moving subjects. The events lead to clinically relevant SpO2 levels in the range 80–100%. The new principle is shown to greatly outperform current remote ratio-of-ratios based methods. The mean-absolute SpO2-error (MAE) is about 2 percentage-points during head movements, where the benchmark method shows a MAE of 24 percentage-points. Consequently, we claim ours to be the first method to reliably measure SpO2 remotely during significant subject motion.
机译:手指血氧仪在全世界的医院中普遍用于患者监测。近来,已经证明了利用照相机远程测量动脉血氧合(SpO 2)。但是,无论是接触式测量还是远程测量,都要求受试者保持静态才能获得准确的SpO2值。这是由于使用了常见的比率比测量原理,该原理可测量不同波长下的相对脉动。由于振幅较小,因此容易因运动引起的变化而破坏。我们引入了一种新原理,即使在主体运动剧烈的情况下也可以进行精确的远程测量。我们证明了该原理的主要优点,即即使PPG信号的SNR由于运动或有限的测量区域而显着下降时,最佳签名也保持不变。评估使用屏气事件记录,这些记录会在健康的运动受试者中诱发低氧血症。这些事件导致SpO2的临床相关水平在80-100%的范围内。事实证明,新原理大大优于当前的基于远程比率的方法。在头部运动期间,平均绝对SpO2误差(MAE)约为2个百分点,其中基准方法显示的MAE为24个百分点。因此,我们声称我们是在重大对象运动期间可靠地远程测量SpO2的第一种方法。

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