Role of alveolar recruitment in lung inflation: influence on pressure-volume hysteresis
- 1 October 1983
- journal article
- research article
- Published by American Physiological Society in Journal of Applied Physiology
- Vol. 55 (4) , 1321-1332
- https://doi.org/10.1152/jappl.1983.55.4.1321
Abstract
The behavior of terminal lung units (alveoli) with changes in lung volume is controversial. For example, different investigators using similar techniques have suggested that alveoli expand homogeneously or, conversely, get smaller with increases in lung volume. We studied this problem by filling excised dog lobes with monodisperse aerosol and observing deposition at zero airflow. Under these conditions, the deposition of particles is inversely proportional to a mean alveolar linear dimension (ALD). With this technique, changes in ALD were assessed as the lung ventilated along its pressure-volume (PV) curve. PV curves were generated using a rapid cycling technique that minimized trapping and allowed reversible regulation of inflation-deflation hysteresis. Irreversible changes in PV hysteresis were assessed by rinsing the lung with Tween. With significant PV hysteresis, the ALD progressively decreased with inflation to total lung capacity (TLC). With deflation from TLC, the ALD was unchanged until low volumes were reached, when it decreased markedly. When PV hysteresis was minimized (reversibly or irreversibly), inflation and deflation ALD were superimposed. These data are consistent with progressive alveolar recruitment with inflation to TLC and derecruitment with deflation. The correlation between alveolar dimensions and PV hysteresis suggests that shifts in the PV curve can be accounted for by changes in the population of units. The number open at any given point is determined by the dynamic history of inflation.This publication has 14 references indexed in Scilit:
- Alveolar volume-surface area relation in air- and saline-filled lungs fixed by vascular perfusionJournal of Applied Physiology, 1979
- Morphological and physical basis for lung surfactant actionRespiration Physiology, 1976
- Total deposition of aerosol particles in the human respiratory tract for nose and mouth breathingJournal of Aerosol Science, 1975
- Equilibrium of force of subpleural alveoli: implications to lung mechanics.Journal of Applied Physiology, 1974
- Acute mechanical effects of lung volume changes on artificial microholes in alveolar walls.Journal of Applied Physiology, 1968
- Effect of volume and volume history of the lungs on pulmonary shunt flowAmerican Journal of Physiology-Legacy Content, 1964
- Ventilation of terminal air unitsJournal of Applied Physiology, 1962
- Relation between morphological and physiological events in lung studied by rapid freezingJournal of Applied Physiology, 1962
- Intrapulmonary mixing of gases studied with aerosolsJournal of Applied Physiology, 1959
- Pulmonary Surface Tension and the Mucus Lining of the Lungs: Some Theoretical ConsiderationsJournal of Applied Physiology, 1958