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气道形态测量的异质性变化与肺阻力和弹性之间的关系。

Relationship between heterogeneous changes in airway morphometry and lung resistance and elastance.

作者信息

Lutchen K R, Gillis H

机构信息

Department of Biomedical Engineering, Boston University, Boston, Massachusetts 02215, USA.

出版信息

J Appl Physiol (1985). 1997 Oct;83(4):1192-201. doi: 10.1152/jappl.1997.83.4.1192.

Abstract

We present a dog lung model to predict the relation between inhomogeneous changes in airway morphometry and lung resistance (RL) and elastance (EL) for frequencies surrounding typical breathing rates. The RL and EL were sensitive in distinct ways to two forms of peripheral constriction. First, when there is a large and homogeneous constriction, the RL increases uniformly over the frequency range. The EL is rather unaffected below 1 Hz but then increases with frequencies up to 5 Hz. This increase is caused by central airway wall shunting. Second, the RL and EL are extremely sensitive to mild inhomogeneous constriction in which a few highly constricted or nearly closed airways occur randomly throughout the periphery. This results in extreme increases in the levels and frequency dependence of RL and EL but predominantly at typical breathing rates (<1 Hz). Conversely, the RL and EL are insensitive to highly inhomogeneous airway constriction that does not produce any nearly closed airways. Similarly, alterations in the RL and EL due to central airway wall shunting are not likely until the preponderance of the periphery constricts substantially. The RL and EL spectra are far more sensitive to these two forms of peripheral constriction than to constriction conditions known to occur in the central airways. On the basis of these simulations, we derived a set of qualitative criteria to infer airway constriction conditions from RL and EL spectra.

摘要

我们提出了一种犬肺模型,用于预测典型呼吸频率附近气道形态测量的不均匀变化与肺阻力(RL)和弹性(EL)之间的关系。RL和EL对两种形式的外周收缩有不同的敏感性。首先,当存在大的且均匀的收缩时,RL在整个频率范围内均匀增加。EL在1Hz以下基本不受影响,但在高达5Hz的频率下会增加。这种增加是由中央气道壁分流引起的。其次,RL和EL对轻度不均匀收缩极为敏感,即在外周随机出现一些高度收缩或几乎闭合的气道。这导致RL和EL的水平及频率依赖性极度增加,但主要发生在典型呼吸频率(<1Hz)时。相反,RL和EL对不会产生任何近乎闭合气道的高度不均匀气道收缩不敏感。同样,直到外周大部分区域大幅收缩,中央气道壁分流导致的RL和EL变化才可能出现。RL和EL频谱对这两种外周收缩形式的敏感性远高于对已知发生在中央气道的收缩条件的敏感性。基于这些模拟,我们推导了一组定性标准,用于从RL和EL频谱推断气道收缩情况。

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