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开发基于气道激光吸收光谱法的呼吸心输出量测量技术。

Development of in-airway laser absorption spectroscopy for respiratory based measurements of cardiac output.

机构信息

Department of Chemistry, Physical and Theoretical Chemistry Laboratory, University of Oxford, Oxford, OX1 3QZ, UK.

Department of Physiology, Anatomy and Genetics, University of Oxford, Oxford, UK.

出版信息

Sci Rep. 2021 Mar 4;11(1):5252. doi: 10.1038/s41598-021-84649-0.

Abstract

Respiratory approaches to determining cardiac output in humans are securely rooted in mass balance and therefore potentially highly accurate. To address existing limitations in the gas analysis, we developed an in-airway analyser based on laser absorption spectroscopy to provide analyses every 10 ms. The technique for estimating cardiac output requires both a relatively soluble and insoluble tracer gas, and we employed acetylene and methane for these, respectively. A multipass cell was used to provide sufficient measurement sensitivity to enable analysis directly within the main gas stream, thus avoiding errors introduced by sidestream gas analysis. To assess performance, measurements of cardiac output were made during both rest and exercise on five successive days in each of six volunteers. The measurements were extremely repeatable (coefficient of variation ~ 7%). This new measurement technology provides a stable foundation against which the algorithm to calculate cardiac output can be further developed.

摘要

在人体中,通过呼吸来确定心输出量的方法在质量平衡方面有着坚实的基础,因此具有很高的准确性。为了解决气体分析中现有的局限性,我们开发了一种基于激光吸收光谱的气道内分析器,能够每 10 毫秒进行一次分析。估计心输出量的技术需要一种相对可溶和不可溶的示踪气体,我们分别使用乙炔和甲烷来实现这一点。多通池用于提供足够的测量灵敏度,以便能够直接在主流体中进行分析,从而避免了由旁流气体分析引入的误差。为了评估性能,在六名志愿者的每五天中,在休息和运动期间分别进行了五次心输出量测量。测量结果非常可重复(变异系数约为 7%)。这项新的测量技术为计算心输出量的算法提供了一个稳定的基础,可以进一步开发该算法。

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