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用于逐次呼吸分析的呼吸阶段检测与延迟确定

Respiratory phase detection and delay determination for breath-by-breath analysis.

作者信息

Boutellier U, Kündig T, Gomez U, Pietsch P, Koller E A

出版信息

J Appl Physiol (1985). 1987 Feb;62(2):837-43. doi: 10.1152/jappl.1987.62.2.837.

Abstract

The delay between air flow and gas concentration signals is generally assumed to be constant within a breath as well as from breath to breath, but it was not possible to examine the constancy of the delay with the delay determination techniques so far available. Thus we developed new methods for respiratory phase detection and delay determination. The presented algorithm for the detection of the start of inspiration and expiration (phase detection) replaces the generally used valve assembly with two pneumotachographs. Now, the pneumotachograph is used in a bidirectional mode, but with a volume criterion for phase detection replacing the less reliable threshold criterion. To measure the delay between flow and gas concentration signals, a test gas is periodically injected as a marker. This test gas contains less N2 than ambient air. Therefore, the delay is determined as time between the moment of injection and the drop of N2. These two methods rendered it possible to examine delay variations and their consequences. The investigation of various breathing patterns demonstrated that the usually assumed errors caused by delay uncertainty are underestimated. We suggest reliance on a breath-by-breath delay determination to account for delay variations.

摘要

气流与气体浓度信号之间的延迟通常被认为在一次呼吸内以及不同呼吸之间是恒定的,但使用目前可用的延迟测定技术无法检验延迟的恒定性。因此,我们开发了用于呼吸相位检测和延迟测定的新方法。所提出的用于检测吸气和呼气开始的算法(相位检测)用两个呼吸流速计取代了通常使用的阀门组件。现在,呼吸流速计以双向模式使用,但采用体积标准进行相位检测,取代了不太可靠的阈值标准。为了测量流量与气体浓度信号之间的延迟,定期注入一种测试气体作为标记物。这种测试气体中的氮气含量低于环境空气。因此,延迟被确定为注入时刻与氮气下降之间的时间。这两种方法使得检验延迟变化及其后果成为可能。对各种呼吸模式的研究表明,通常所假设的由延迟不确定性引起的误差被低估了。我们建议依靠逐次呼吸的延迟测定来考虑延迟变化。

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