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通过血管灌注固定的充气和充生理盐水肺的肺泡容积-表面积关系。

Alveolar volume-surface area relation in air- and saline-filled lungs fixed by vascular perfusion.

作者信息

Gil J, Bachofen H, Gehr P, Weibel E R

出版信息

J Appl Physiol Respir Environ Exerc Physiol. 1979 Nov;47(5):990-1001. doi: 10.1152/jappl.1979.47.5.990.

Abstract

The influence of volume changes and interfacial forces on the geometry of peripheral air spaces was studied in excised rabbit lungs inflated with either air or saline and fixed by vascular perfusion at four points of the deflation limb of the pressure-volume curve corresponding to 100, 80, 60, and 40% of the total lung capacity (TLC). In air-filled lungs pleating and folding of alveolar septa were observed, especially in alveolar corners. However, the alveolar surfaces were smooth, except at low lung volumes where some surface crumpling occurred. In saline-filled lungs pleats were absent; the alveolar surface was irregular at all inflation levels due to undulating walls and bulging capillaries. Morphometry indicated that at all alveolar volumes (VA) the surface areas (SA) were larger in saline- than air-filled lungs. No simple mathematical function was found to characterize the relation between SA and VA over the entire volume range studied. Within the range of normal breaths (80 to 40% TLC) the best fit for n in the function SA = k.VnA was 0.58 for saline-filled lungs (r = 0.93) and 0.33 for air-filled lungs (r = 0.68), suggesting different and complex deflation patterns.

摘要

研究了容积变化和界面力对周边气腔几何形状的影响,实验采用离体兔肺,分别用空气或生理盐水充气,并在压力-容积曲线放气支上对应于肺总量(TLC)100%、80%、60%和40%的四个点处通过血管灌注固定。在充气肺中,观察到肺泡隔的褶皱和折叠,尤其是在肺泡角处。然而,肺泡表面是光滑的,除了在低肺容积时出现一些表面皱缩。在充生理盐水的肺中没有褶皱;由于壁的起伏和毛细血管的膨出,在所有充气水平下肺泡表面都是不规则的。形态计量学表明,在所有肺泡容积(VA)下,充生理盐水的肺的表面积(SA)都比充气肺大。在整个研究的容积范围内,没有发现简单的数学函数来描述SA和VA之间的关系。在正常呼吸范围内(TLC的80%至40%),对于充生理盐水的肺,函数SA = k.VnA中n的最佳拟合值为0.58(r = 0.93),对于充气肺为0.33(r = 0.68),这表明放气模式不同且复杂。

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