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A rate-based transcutaneous CO2 sensor for noninvasive respiration monitoring

机译:基于比率的经皮CO2传感器,用于无创呼吸监测

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The pain and risk of infection associated with invasive blood sampling for blood gas measurements necessitate the search for reliable noninvasive techniques. In this work we developed a novel rate-based noninvasive method for a safe and fast assessment of respiratory status. A small sampler was built to collect the gases diffusing out of the skin. It was connected to a CO2 sensor through gas-impermeable tubing. During a measurement, the CO2 initially present in the sampler was first removed by purging it with nitrogen. The gases in the system were then recirculated between the sampler and the CO2 sensor, and the CO2 diffusion rate into the sampler was measured. Because the measurement is based on the initial transcutaneous diffusion rate, reaching mass transfer equilibrium and heating the skin is no longer required, thus, making it much faster and safer than traditional method. A series of designed experiments were performed to analyze the effect of the measurement parameters such as sampler size, measurement location, subject positions, and movement. After the factor analysis tests, the prototype was sent to a level IV NICU for clinical trial. The results show that the measured initial rate of increase in CO2 partial pressure is linearly correlated with the corresponding arterial blood gas measurements. The new approach can be used as a trending tool, making frequent blood sampling unnecessary for respiratory status monitoring.
机译:与用于血液气体测量的侵入式血液采样相关的疼痛和感染风险需要寻找可靠的非侵入性技术。在这项工作中,我们开发了一种新颖的基于比率的无创方法,用于安全,快速地评估呼吸状态。建立了一个小型采样器来收集从皮肤扩散出来的气体。它通过不透气的管道连接到CO2传感器。在测量期间,首先通过用氮气吹扫除去最初存在于采样器中的CO2。然后,系统中的气体在采样器和CO2传感器之间再循环,并测量进入采样器的CO2扩散速率。由于该测量基于初始的经皮扩散速率,因此不再需要达到传质平衡和加热皮肤,因此比传统方法更快,更安全。进行了一系列设计的实验,以分析测量参数的影响,例如采样器大小,测量位置,对象位置和移动。经过因素分析测试后,将原型发送到IV级NICU进行临床试验。结果表明,测得的CO2分压的初始增加速率与相应的动脉血气测量值线性相关。这种新方法可以用作趋势工具,从而无需为监测呼吸状态而频繁采样血液。

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