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Variation in airways resistance when defined over different ranges of airflows.在不同气流范围内定义时气道阻力的变化。
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引用本文的文献

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Assessing change in airway calibre--measurement of airway resistance.评估气道口径变化——气道阻力的测量
Br J Clin Pharmacol. 1979 Oct;8(4):307-19. doi: 10.1111/j.1365-2125.1979.tb04711.x.

本文引用的文献

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Variation in respiratory function in selected patients and its relation to air pollution.
Am Rev Respir Dis. 1962 Nov;86:705-12. doi: 10.1164/arrd.1962.86.5.705.
2
Evaluation of methods used in detecting changes of airway resistance in man.人体气道阻力变化检测方法的评估。
Am Rev Respir Dis. 1963 Apr;87:529-37. doi: 10.1164/arrd.1963.87.4.529.
3
Physiological factors affecting airway resistance in normal subjects and in patients with obstructive respiratory disease.影响正常受试者和阻塞性呼吸道疾病患者气道阻力的生理因素。
J Clin Invest. 1960 Apr;39(4):584-91. doi: 10.1172/JCI104071.
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Design of a body plethysmograph for studying cardiopulmonary physiology.用于研究心肺生理学的人体体积描记器的设计。
J Appl Physiol. 1959 May;14(3):439-44. doi: 10.1152/jappl.1959.14.3.439.
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A new method for measuring airway resistance in man using a body plethysmograph: values in normal subjects and in patients with respiratory disease.一种使用体容积描记器测量人体气道阻力的新方法:正常受试者和呼吸系统疾病患者的测量值。
J Clin Invest. 1956 Mar;35(3):327-35. doi: 10.1172/JCI103282.
6
A rapid plethysmographic method for measuring thoracic gas volume: a comparison with a nitrogen washout method for measuring functional residual capacity in normal subjects.一种测量胸内气体容积的快速体积描记法:与氮洗出法测量正常受试者功能残气量的比较
J Clin Invest. 1956 Mar;35(3):322-6. doi: 10.1172/JCI103281.
7
Bullous disease of the lung: with relatively unimpaired ventilatory function and minimal or absent hyperinflation.肺大疱病:通气功能相对未受损害,过度充气轻微或无。
Bull Physiopathol Respir (Nancy). 1973 Jul-Aug;9(4):945-60.
8
Diurnal variation of respiratory function independent of air quality: experience with an environmentally controlled exposure chamber for human subjects.与空气质量无关的呼吸功能昼夜变化:人体受试者在环境控制暴露舱中的实验经验。
Arch Environ Health. 1973 Mar;26(3):144-52. doi: 10.1080/00039896.1973.10666242.
9
Variability of routine pulmonary function tests.常规肺功能测试的变异性
Thorax. 1975 Oct;30(5):548-53. doi: 10.1136/thx.30.5.548.
10
Effect of aerosolized isoproterenol on resting myogenic tone in normals.雾化异丙肾上腺素对正常人静息肌源性张力的影响。
J Appl Physiol. 1976 Apr;40(4):525-32. doi: 10.1152/jappl.1976.40.4.525.

在不同气流范围内定义时气道阻力的变化。

Variation in airways resistance when defined over different ranges of airflows.

作者信息

Lord P W, Edwards J M

出版信息

Thorax. 1978 Jun;33(3):401-5. doi: 10.1136/thx.33.3.401.

DOI:10.1136/thx.33.3.401
PMID:684679
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC470903/
Abstract

In eight normal subjects airways resistance (Raw) was assessed over six ranges of airflow (about zero flow at both minimum and maximum lung volumes) using an automated whole body plethysmograph. The intervals of flow used were 21s-1 and 11s-1 spanning zero flow, and 11s-1 and 0.51s-1 measured up to and from zero flow. The wider intervals gave less variable results, the coefficients of variation being of the order 11%, 15%, and 22% for the 2, 1, and 0.51s-1 intervals respectively. In all subjects, at minimum volume Raw was some 1.5 times greater when measured over the ranges at end-expiration than at start-expiration; at maximum volume Raw was some 1.3 times greater when measured over the ranges at end-inspiration than at start-expiration. A slight increase in the slopes of the oscilloscope traces used to determine Raw was observed at minimum volume compared with those at maximum volume. In view of the substantial differences reported it is essential that the exact range of flow, and the respiratory phase used, is described when reporting measurements of Raw. Least variability is obtained by estimating slopes over a wide interval of flow, such as 1 or 21s-1.

摘要

在8名正常受试者中,使用自动全身体积描记器在六个气流范围内(在肺最小和最大容积时气流均约为零)评估气道阻力(Raw)。所使用的气流间隔为跨越零气流的2L/s和1L/s,以及从零气流向上和向下测量的1L/s和0.5L/s。较宽的间隔产生的结果变异性较小,对于2L/s、1L/s和0.5L/s的间隔,变异系数分别约为11%、15%和22%。在所有受试者中,在最小容积时,在呼气末范围内测量的Raw比呼气开始时大约大1.5倍;在最大容积时,在吸气末范围内测量的Raw比吸气开始时大约大1.3倍。与最大容积时相比,在最小容积时观察到用于确定Raw的示波器轨迹斜率略有增加。鉴于所报道的显著差异,在报告Raw测量值时,必须描述确切的气流范围和所使用的呼吸阶段。通过在较宽的气流间隔(如1或2L/s)上估计斜率可获得最小的变异性。