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用于经皮氧无创监测的原型可穿戴设备。

A Prototype Wearable Device for Noninvasive Monitoring of Transcutaneous Oxygen.

出版信息

IEEE Trans Biomed Circuits Syst. 2023 Apr;17(2):323-335. doi: 10.1109/TBCAS.2023.3251321. Epub 2023 May 10.

Abstract

Transcutaneous oxygen monitoring is a noninvasive method for measuring the partial pressure of oxygen diffusing through the skin, which strongly correlates with changes in dissolved oxygen in the arteries. Luminescent oxygen sensing is one of the techniques for assessing transcutaneous oxygen. Intensity- and lifetime-based measurements are two well-known methods used in this technique. The latter is more immune to optical path changes and reflections, making the measurements less vulnerable to motion artifacts and skin color changes. Although the lifetime-based method is promising, the acquisition of high-resolution lifetime data is crucial for accurate transcutaneous oxygen measurements from the human body when skin is not heated. We have built a compact prototype along with its custom firmware for the lifetime estimation of transcutaneous oxygen with a provision of a wearable device. Furthermore, we performed a small experiment study on three healthy human volunteers to prove the concept of measuring oxygen diffusing from the skin without heating. Lastly, the prototype successfully detected changes in lifetime values driven by the changes in transcutaneous oxygen partial pressure due to pressure-induced arterial occlusion and hypoxic gas delivery. The prototype resolved a minimum change of 1.34 ns in a lifetime that corresponds to 0.031 mmHg in response to slow changes in the oxygen pressure in the volunteer's body caused by hypoxic gas delivery. The prototype is believed to be the first in the literature to successfully conduct measurements in human subjects using the lifetime-based technique.

摘要

经皮氧监测是一种无创测量方法,用于测量通过皮肤扩散的氧分压,该值与动脉中溶解氧的变化密切相关。荧光氧传感是评估经皮氧的技术之一。强度和寿命测量是该技术中两种常用的方法。后一种方法对光路变化和反射的影响更小,使测量结果不易受到运动伪影和皮肤颜色变化的影响。尽管基于寿命的方法很有前景,但在人体皮肤不加热的情况下,要从人体获得准确的经皮氧测量值,获取高分辨率的寿命数据至关重要。我们已经构建了一个紧凑的原型及其定制固件,用于通过可穿戴设备对经皮氧的寿命进行估计。此外,我们在三名健康的人类志愿者身上进行了一项小型实验研究,以证明无需加热即可从皮肤测量氧气扩散的概念。最后,原型成功地检测到由于压力诱导的动脉闭塞和低氧气体输送引起的经皮氧分压变化导致的寿命值的变化。该原型能够分辨出 1.34 纳秒的最小寿命变化,这对应于志愿者体内由于低氧气体输送引起的氧压力缓慢变化时的 0.031 毫米汞柱。该原型被认为是文献中首次成功在人体受试者中使用基于寿命的技术进行测量的原型。

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