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马运动性低氧血症的机制。

Mechanism of exercise-induced hypoxemia in horses.

作者信息

Wagner P D, Gillespie J R, Landgren G L, Fedde M R, Jones B W, DeBowes R M, Pieschl R L, Erickson H H

机构信息

Department of Medicine, University of California, San Diego, La Jolla 92093.

出版信息

J Appl Physiol (1985). 1989 Mar;66(3):1227-33. doi: 10.1152/jappl.1989.66.3.1227.

Abstract

Arterial hypoxemia has been reported in horses during heavy exercise, but its mechanism has not been determined. With the use of the multiple inert gas elimination technique, we studied five horses, each on two separate occasions, to determine the physiological basis of the hypoxemia that developed during horizontal treadmill exercise at speeds of 4, 10, 12, and 13-14 m/s. Mean, blood temperature-corrected, arterial PO2 fell from 89.4 Torr at rest to 80.7 and 72.1 Torr at 12 and 13-14 m/s, respectively, whereas corresponding PaCO2 values were 40.3, 40.3, and 39.2 Torr. Alveolar-arterial PO2 differences (AaDO2) thus increased from 11.4 Torr at rest to 24.9 and 30.7 Torr at 12 and 13-14 m/s. In 8 of the 10 studies there was no change in ventilation-perfusion (VA/Q) relationships with exercise (despite bronchoscopic evidence of airway bleeding in 3) and total shunt was always less than 1% of the cardiac output. Below 10 m/s, the AaDO2 was due only to VA/Q mismatch, but at higher speeds, diffusion limitation of O2 uptake was increasingly evident, accounting for 76% of the AaDO2 at 13-14 m/s. Most of the exercise-induced hypoxemia is thus the result of diffusion limitation with a smaller contribution from VA/Q inequality and essentially none from shunting.

摘要

据报道,马匹在剧烈运动时会出现动脉血氧不足,但具体机制尚未明确。我们采用多惰性气体消除技术,对五匹马进行了研究,每匹马均进行两次独立实验,以确定在水平跑步机上以4、10、12和13 - 14米/秒的速度运动时出现的低氧血症的生理基础。平均动脉血氧分压(经体温校正)在静息时为89.4托,在12米/秒和13 - 14米/秒时分别降至80.7托和72.1托,而相应的动脉血二氧化碳分压(PaCO₂)值分别为40.3托、40.3托和39.2托。因此,肺泡 - 动脉血氧分压差(AaDO₂)从静息时的11.4托增加到12米/秒和13 - 14米/秒时的24.9托和30.7托。在10次研究中的8次中,通气 - 灌注(VA/Q)关系在运动时无变化(尽管3例经支气管镜检查有气道出血迹象),总分流始终小于心输出量的1%。低于10米/秒时,AaDO₂仅由VA/Q不匹配导致,但在较高速度时,氧气摄取的弥散限制越来越明显,在13 - 14米/秒时占AaDO₂的76%。因此,大多数运动诱发的低氧血症是弥散限制的结果,VA/Q不平等的影响较小,分流的影响基本可忽略不计。

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