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气道闭合在限制正常人最大呼气中的重要性。

Importance of airway closure in limiting maximal expiration in normal man.

作者信息

Davis C, Campbell E J, Openshaw P, Pride N B, Woodroof G

出版信息

J Appl Physiol Respir Environ Exerc Physiol. 1980 Apr;48(4):695-701. doi: 10.1152/jappl.1980.48.4.695.

Abstract

To elucidate the importance of airway closure in limiting maximum expiration, two complementary plethysmographic techniques have been used to estimate the volume of and pressure within the trapped thoracic gas. Three young (19-23 yr) and three older (43-66 yr) subjects were studied. The first study defined the curve of possible pressure-volume relationships for the trapped gas; the second study attempted to estimate the volume of trapped gas. In the first study the subject in a Mead plethysmograph expired through a pneumotachograph and back into the box. A reduction in box volume greater than that caused by drying and cooling of expired gas implies gas compression due mainly to airway closure. In the second study a known volume of air was withdrawn from the mouth at full expiration and changes in box volume and mouth pressure were recorded. The apparent volume in pressure communication with the mouth (Vpc) was calculated using Boyle's law. In the young subjects we did not detect thoracic gas compression although there was evidence of trapped gas (RV-Vpc greater than 0). In the older subjects there was a larger volume of trapped gas that was compressed to pressures of more than 22 cmH2O. Airway closure appears to limit maximal expiration in older subjects.

摘要

为了阐明气道关闭在限制最大呼气中的重要性,已使用两种互补的体积描记技术来估计被困胸腔气体的体积和压力。研究了三名年轻(19 - 23岁)和三名年长(43 - 66岁)的受试者。第一项研究确定了被困气体可能的压力 - 体积关系曲线;第二项研究试图估计被困气体的体积。在第一项研究中,受试者在米德体积描记器中通过呼吸速度描记器呼气并回到箱内。箱体积的减小大于呼出气体干燥和冷却所导致的减小,这意味着气体压缩主要是由于气道关闭。在第二项研究中,在完全呼气时从口腔抽出已知体积的空气,并记录箱体积和口腔压力的变化。使用玻意耳定律计算与口腔压力相通的表观体积(Vpc)。在年轻受试者中,尽管有被困气体的证据(残气量 - Vpc大于0),但我们未检测到胸腔气体压缩。在年长受试者中,有更大体积的被困气体被压缩至超过22 cmH₂O的压力。气道关闭似乎限制了年长受试者的最大呼气。

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