Six D P, de Vries W R, Luijendijk S C
Department of Medical Physiology and Sports Medicine, University of Utrecht, Netherlands.
Respir Physiol. 1992 Nov;90(2):145-58. doi: 10.1016/0034-5687(92)90077-a.
In case of intralobular airway obstructions in dog lungs and in human lungs, ventilation of the regions distal to the obstructions appears to be surprisingly effective. In general, this is attributed to collateral ventilation which takes place between obstructed and adjacent, non-obstructed air spaces. In this paper we investigate the contribution of collateral ventilation to the distribution of gases in the lung and to the slopes of the alveolar plateaus (S) of the expirograms of He and SF6. To that end, we have simulated single-breath washout experiments with a mathematical lung model in which a fraction of the total acinar space was obstructed. The obstructed part was collaterally ventilated via the non-obstructed part by convection where both parts distended and retracted isotropically during the breathing maneuver. Collateral diffusion was assumed to be negligible during inspiration and expiration, but was taken into account for periods of post-inspiratory apnea (tA). With 20% of the total acinar space obstructed and tA = 0 sec, S(He) = 3.3%.L-1 and SSF6 = 4.7%.L-1. For both gases S increased with increasing degree of airway obstruction, and decreased with increasing tA and with increasing degree of collateral diffusion. For all simulated maneuvers the alveolar plateau was rectilinearly shaped. We conclude that in case of airway obstructions collateral ventilation may substantially contribute to the slope of the alveolar plateaus of the expirograms of He and SF6.
在犬肺和人肺出现小叶内气道阻塞的情况下,阻塞远端区域的通气效果似乎出奇地好。一般来说,这归因于阻塞气道与相邻未阻塞气腔之间发生的侧支通气。在本文中,我们研究了侧支通气对肺内气体分布以及氦气和六氟化硫呼气图中肺泡平台斜率(S)的贡献。为此,我们用一个数学肺模型模拟了单次呼吸冲洗实验,其中总腺泡空间的一部分被阻塞。阻塞部分通过对流经未阻塞部分进行侧支通气,在呼吸动作过程中,两部分均呈各向同性地扩张和收缩。在吸气和呼气过程中,假定侧支扩散可忽略不计,但在吸气后暂停期(tA)会予以考虑。当总腺泡空间的20%被阻塞且tA = 0秒时,S(氦气)= 3.3%·L⁻¹,S(六氟化硫)= 4.7%·L⁻¹。对于这两种气体,S均随着气道阻塞程度的增加而增加,随着tA的增加以及侧支扩散程度的增加而降低。对于所有模拟动作,肺泡平台呈直线形。我们得出结论,在气道阻塞的情况下,侧支通气可能对氦气和六氟化硫呼气图中肺泡平台的斜率有显著贡献。