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首页> 外文期刊>Journal of breath research >Effect of exhalation flow rates and level of nitric oxide output on accuracy of linear approximation of pulmonary nitric oxide dynamics
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Effect of exhalation flow rates and level of nitric oxide output on accuracy of linear approximation of pulmonary nitric oxide dynamics

机译:呼气流速和一氧化氮输出水平对肺肺部动力学线性近似的精度

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摘要

The method of Tsoukias and George (T and G) is a commonly used linear approximation of pulmonary nitric oxide (NO) dynamics that can be used to calculate bronchial NO output (J(aw)NO) and alveolar NO concentration (CANO). We aimed to investigate how flow rate range in exhaled NO measurements and levels of pulmonary NO parameters affect the accuracy of the T and G method. This study has three parts. (a) A theoretical part demonstrating how different exhalation flow rates and NO parameter levels affect the accuracy of the T and G method, (b) testing how exhalation flow rate range affects the method in a sample of asthmatic and healthy subjects, and (c) a meta-analysis of published literature to test whether minimum flow rate has an association with the NO parameter values. We found that both the chosen exhalation flow rates and magnitude of the pulmonary NO parameters affect the accuracy of the T and G method. Underestimation of J awNO increased with lower flow rates and higher bronchial diffusion factor of NO (DawNO), while overestimation of CANO increased with higher DawNO and bronchial wall NO concentration (CawNO) and lower CANO. Of the NO parameters, CANO was the most prone to bias and high DawNO was the most significant factor causing the bias. Furthermore, we found that using 40 ml s(-1) as the lowest flow rate in our sample and 50 ml s(-1) in the meta-analysis compared to 100 ml s(-1) resulted in higher CANO, but J(aw)NO was not statistically significantly affected. We have provided objective evidence that not only the flow rates used but also the magnitude of NO output in the test subjects affect the accuracy of the T and G method. We suggest that flow rates below 100 ml s(-1) should not be used with the T and G method to maintain accuracy.
机译:Tsoukias和George(T和G)的方法是一种常用的肺一氧化氮(NO)动力学线性近似方法,可用于计算支气管NO输出量(J(aw)NO)和肺泡NO浓度(CANO)。我们旨在研究呼出NO测量中的流速范围和肺NO参数水平如何影响T和G方法的准确性。本研究分为三个部分。(a) 理论部分展示了不同的呼气流速和无参数水平如何影响T和G方法的准确性,(b)测试呼气流速范围如何影响哮喘和健康受试者样本中的方法,以及(c)对已发表文献的荟萃分析,以测试最小流速是否与无参数值相关。我们发现,选择的呼气流速和肺部NO参数的大小都会影响T和G方法的准确性。低流速和较高的NO支气管扩散因子(DawNO)会增加对J awNO的低估,而较高的DawNO和支气管壁NO浓度(CawNO)和较低的CANO会增加对CANO的高估。在NO参数中,CANO最容易产生偏差,而高DawNO是导致偏差的最重要因素。此外,我们发现在我们的样本中使用40毫升s(-1)作为最低流速,在荟萃分析中使用50毫升s(-1)与100毫升s(-1)相比,会导致更高的CANO,但J(aw)NO在统计学上没有显著影响。我们提供了客观证据,证明不仅使用的流速,而且受试者的NO输出量也会影响T和G方法的准确性。我们建议,低于100毫升s(-1)的流速不应与T和G法一起使用,以保持准确性。

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