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In-airway molecular flow sensing: A new technology for continuous, noninvasive monitoring of oxygen consumption in critical care

机译:气道内分子流量感测:一种用于重症监护中连续无创监测氧气消耗的新技术

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There are no satisfactory methods for monitoring oxygen consumption in critical care. To address this, we adapted laser absorption spectroscopy to provide measurements of O2, CO2, and water vapor within the airway every 10 ms. The analyzer is integrated within a novel respiratory flow meter that is an order of magnitude more precise than other flow meters. Such precision, coupled with the accurate alignment of gas concentrations with respiratory flow, makes possible the determination of O2 consumption by direct integration over time of the product of O2 concentration and flow. The precision is illustrated by integrating the balance gas (N2 plus Ar) flow and showing that this exchange was near zero. Measured O2 consumption changed by 2 breathing. Clinical capability was illustrated by recording O2 consumption during an aortic aneurysm repair. This device now makes easy, accurate, and noninvasive measurement of O2 consumption for intubated patients in critical care possible.
机译:在重症监护中尚没有令人满意的监测氧气消耗的方法。为了解决这个问题,我们采用了激光吸收光谱法,每10毫秒对气道内的O 2 ,CO 2 和水蒸气进行测量。该分析仪集成在新型呼吸流量计中,其精度比其他流量计高一个数量级。这样的精确度,再加上气体浓度与呼吸流量的精确对准,使得O 2 浓度的乘积与时间的直接积分可以确定O 2 的消耗量。流。通过对平衡气体(N 2 加Ar)的流量进行积分并显示这种交换接近于零来说明精度。测得的O 2 消耗量因2呼吸而改变。通过记录主动脉瘤修复过程中O 2 的消耗来说明临床能力。现在,该设备可为重症监护中的插管患者提供简便,准确且无创的O 2 消耗量测量方法。

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