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未成熟肺的功能解剖及容量-压力特征

Functional anatomy and volume-pressure characteristics of immature lungs.

作者信息

Scarpelli E M, Kumar A, Doyle C, Clutario B C

出版信息

Respir Physiol. 1981 Jul;45(1):25-41. doi: 10.1016/0034-5687(81)90047-5.

Abstract

The mechanical behavior of immature rabbit fetal lungs in situ was assessed by air and saline volume-pressure diagrams. All lungs were in their natural fetal state, i.e., filled with fetal pulmonary fluid, prior to inflation. Anatomic correlates were determined by continuous stereomicroscopic monitoring of the lungs. We found the following to be characteristic of immature lungs: (1) Tissue retractive forces are similar to adults. (2) Fetal lungs are not 'plastic' above functional residual capacity. (3) Initial aeration is by 'axial filling' in which airways are distended several times their resting size. (4) Invariably, peripheral rather than central saccules are the first to be aerated and saccules are recruited by both pressure- and time-dependent processes. (5) Pressure-dependence is related to surface forces and terminal orifice size, while time-dependent processes include orifice enlargement, liquid flow through terminal conduits, and the formation of very short-lived, labile bubbles. (6) 'Opening pressure' inflection in the VP diagram is not coincidental with, but follows the onset of saccular aeration. (7) Negative compliance at the onset of deflation is due to saccular enlargement and recruitment. (8) Hysteresis is due to tissue conformational characteristics at high pressures and air entrapment at low pressures. (9) Surface tension cannot be measured reliably from the saline and air VP diagrams.

摘要

通过空气和盐水容量-压力图评估未成熟兔胎儿肺原位的力学行为。在充气前,所有肺均处于自然胎儿状态,即充满胎儿肺液。通过对肺进行连续体视显微镜监测来确定解剖学相关性。我们发现未成熟肺具有以下特征:(1)组织回缩力与成年动物相似。(2)胎儿肺在功能残气量以上并非“可塑性”的。(3)初始通气是通过“轴向填充”进行的,在此过程中气道扩张至其静息大小的数倍。(4)总是外周而非中央的肺泡最先通气,肺泡通过压力和时间依赖性过程被募集。(5)压力依赖性与表面力和终末孔大小有关,而时间依赖性过程包括孔扩大、液体通过终末导管流动以及形成寿命极短、不稳定的气泡。(6)容量-压力图中的“开放压力”拐点并非与肺泡通气的开始同时出现,而是在肺泡通气开始之后。(7)放气开始时的负顺应性是由于肺泡扩大和募集。(8)滞后现象是由于高压下的组织构象特征和低压下的气体滞留。(9)无法从盐水和空气容量-压力图可靠地测量表面张力。

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