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组胺诱导犬血管收缩后阻断剂阻力的解读

Interpretation of interrupter resistance after histamine-induced constriction in the dog.

作者信息

Ludwig M S, Romero P V, Sly P D, Fredberg J J, Bates J H

机构信息

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

出版信息

J Appl Physiol (1985). 1990 Apr;68(4):1651-6. doi: 10.1152/jappl.1990.68.4.1651.

Abstract

The interrupter method for measuring respiratory system resistance involves interrupting flow at the airway opening and measuring the resultant changes in pressure. We have recently shown (J. Appl. Physiol. 65: 408-414, 1988) that in open-chest mongrel dogs, under control conditions, the initial rapid pressure change (delta Pinit) reflects conducting airway resistance and the subsequent gradual pressure change (delta Pdif) reflects stress recovery of the tissues. We questioned whether the same interpretation would apply after induced constriction. Accordingly, we performed interruption experiments on anesthetized, paralyzed, tracheostomized, open-chest mongrel dogs during passive expiration, measuring pressure at the trachea and in three different alveolar regions with alveolar capsules. We recorded measurements before and after the administration of increasing concentrations of histamine aerosol (0.1-30.0 mg/ml). We found a significant increase in the heterogeneity of alveolar pressures during the relaxed expiration with increasing concentrations of histamine. Despite the introduction of significant mechanical heterogeneities, delta Pinit still reflected the pressure drop as the result of the resistance of the conducting airways. delta Pdif, however, reflected a combination of the stress recovery of the tissues and pendelluft.

摘要

测量呼吸系统阻力的阻断法涉及在气道开口处阻断气流并测量由此产生的压力变化。我们最近发现(《应用生理学杂志》65: 408 - 414, 1988),在开胸杂种犬的对照条件下,最初的快速压力变化(δPinit)反映传导气道阻力,随后的逐渐压力变化(δPdif)反映组织的应力恢复。我们质疑诱导收缩后是否仍适用相同的解释。因此,我们在被动呼气期间对麻醉、麻痹、气管切开、开胸杂种犬进行了阻断实验,使用肺泡囊在气管和三个不同肺泡区域测量压力。我们记录了给予递增浓度组胺气雾剂(0.1 - 30.0毫克/毫升)前后的测量值。我们发现随着组胺浓度增加,在轻松呼气期间肺泡压力的异质性显著增加。尽管引入了显著的机械异质性,但δPinit仍然反映了传导气道阻力导致的压力下降。然而,δPdif反映了组织应力恢复和摆动气的综合作用。

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