首页> 外文期刊>Journal of applied physiology >Calculating alveolar capillary conductance and pulmonary capillary blood volume: comparing the multiple- and single-inspired oxygen tension methods.
【24h】

Calculating alveolar capillary conductance and pulmonary capillary blood volume: comparing the multiple- and single-inspired oxygen tension methods.

机译:计算肺泡毛细血管电导和肺毛细血管血容量:比较多次和单次吸氧张力方法。

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Key elements for determining alveolar-capillary membrane conductance (Dm) and pulmonary capillary blood volume (Vc) from the lung diffusing capacity (Dl) for carbon monoxide (DlCO) or for nitric oxide (DlNO) are the reaction rate of carbon monoxide with hemoglobin (thetaCO) and the DmCO/DlNO relationship (alpha-ratio). Although a range of values have been reported, currently there is no consensus regarding these parameters. The study purpose was to define optimal parameters (thetaCO, alpha-ratio) that would experimentally substantiate calculations of Dm and Vc from the single-inspired O2 tension [inspired fraction of O2 (FiO2)] method relative to the multiple-FiO2 method. Eight healthy men were studied at rest and during moderate exercise (80-W cycle). Dm and Vc were determined by the multiple-FiO2 and single-FiO2 methods (rebreathe technique) and were tabulated by applying previously reported thetaCO equations (both methods) and by varying the alpha-ratio (single-FiO2 method) from 1.90 to 2.50. Values were then compared between methods throughout the examined alpha-ratios. Dm and Vc were critically dependent on the applied thetaCO equation. For the multiple-FiO2 method, Dm was highly variable between thetaCO equations (rest and exercise); the range of Vc was less widespread. For the single-FiO2 method, the thetaCO equation by Reeves and Park (1992) combined with an alpha-ratio between 2.08 and 2.26 gave values for Dm and Vc that most closely matched those from the multiple-FiO2 method and were also physiologically plausible compared with predicted values. We conclude that the parameters used to calculate Dm and Vc values from the single-FiO2 method (using DlCO and DlNO) can significantly influence results and should be evaluated within individual laboratories to obtain optimal values.
机译:根据肺对一氧化碳(DlCO)或一氧化氮(DlNO)的扩散能力(Dl)确定肺泡毛细血管膜电导(Dm)和肺毛细血管血容量(Vc)的关键要素是一氧化碳与血红蛋白的反应速率(thetaCO)和DmCO / DlNO关系(alpha-比率)。尽管已报告了一系列值,但目前在这些参数上尚无共识。该研究的目的是定义最佳参数(thetaCO,α比率),以相对于多重FiO2方法通过实验来验证单吸O2张力[O2的吸气分数(FiO2)]方法对Dm和Vc的计算。研究了八名健康男性在休息和中等强度运动(80 W循环)期间的状况。 Dm和Vc通过多种FiO2和单一FiO2方法(再合成技术)确定,并通过应用先前报道的thetaCO方程(两种方法)并通过将alpha比率(单一FiO2方法)从1.90更改为2.50制成表格。然后在整个检查的α-比值之间比较方法之间的值。 Dm和Vc严格取决于所应用的thetaCO方程。对于multi-FiO2方法,Dm在thetaCO方程(休息和运动)之间变化很大。 Vc的范围不太广泛。对于单FiO2方法,Reeves和Park(1992)的thetaCO方程与2.08至2.26之间的α比值相结合,得出的Dm和Vc值与多FiO2方法最接近,并且在生理上也可以比较具有预测值。我们得出的结论是,用于通过单FiO2方法(使用DlCO和DlNO)计算Dm和Vc值的参数会显着影响结果,应该在各个实验室进行评估以获得最佳值。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号