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兔肺中乙酰甲胆碱诱导的最大收缩:气道与组织之间的相互作用?

Maximal methacholine-induced constriction in rabbit lung: interactions between airways and tissue?

作者信息

Romero P V, Ludwig M S

机构信息

Meakins-Christie Laboratories, Royal Victoria Hospital, McGill University, Montreal, Quebec, Canada.

出版信息

J Appl Physiol (1985). 1991 Mar;70(3):1044-50. doi: 10.1152/jappl.1991.70.3.1044.

DOI:10.1152/jappl.1991.70.3.1044
PMID:2032969
Abstract

Six anesthetized paralyzed open-chest New Zealand White male rabbits were studied to obtain the maximal or plateau response to the inhalation of methacholine. Tracheal flow, tracheal pressure, and, by use of alveolar capsules, alveolar pressure were measured during tidal mechanical ventilation. We calculated total lung resistance (RL), tissue viscance (Vti), and lung elastance by digital fitting of the equation of motion to changes in tracheal and alveolar pressure. Airways resistance (Raw) was calculated as RL-Vti. Measurements were made under control conditions and after delivery of increasing concentrations of methacholine aerosol (0.5-128 mg/ml). We found that Vti accounted for the major proportion of RL both under control conditions (64.5 +/- 15.9%) and after methacholine-induced constriction (83.6 +/- 11.8%). There was a significant negative correlation between logarithmic percent change in Raw and Vti at the onset of the plateau response (r = 0.973). Furthermore, the slope of the relationship between log change in Vti and log change in Raw during the plateau response was strongly correlated with the degree of tissue response at the onset of the plateau (r = 0.957). Vti was positively correlated with lung elastance both before and during the plateau response (r = 0.946). We propose that the negative correlation between tissue resistance and Raw at the level of the plateau is consistent with a model of a mechanically interdependent lung, where decreases in airway caliber are limited by the constriction of the surrounding parenchyma.

摘要

对6只麻醉、麻痹且开胸的新西兰白兔进行了研究,以获得对吸入乙酰甲胆碱的最大或平台期反应。在潮气量机械通气期间,测量气管流量、气管压力,并使用肺泡囊测量肺泡压力。通过将运动方程数字拟合到气管和肺泡压力变化来计算总肺阻力(RL)、组织黏性(Vti)和肺弹性。气道阻力(Raw)计算为RL-Vti。在对照条件下以及给予递增浓度的乙酰甲胆碱气雾剂(0.5-128mg/ml)后进行测量。我们发现,在对照条件下(64.5±15.9%)和乙酰甲胆碱诱导的收缩后(83.6±11.8%),Vti均占RL的主要比例。在平台期反应开始时,Raw的对数百分比变化与Vti之间存在显著负相关(r = 0.973)。此外,在平台期反应期间,Vti的对数变化与Raw的对数变化之间关系的斜率与平台期开始时的组织反应程度密切相关(r = 0.957)。在平台期反应之前和期间,Vti与肺弹性均呈正相关(r = 0.946)。我们提出,在平台期水平,组织阻力与Raw之间的负相关与机械相互依存肺模型一致,即气道管径的减小受到周围实质收缩的限制。

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