Vik A, Jenssen B M, Eftedal O, Brubakk A O
Section for Extreme Work Environment, Sintef Unimed, Trondheim, Norway.
Undersea Hyperb Med. 1993 Sep;20(3):233-48.
We present a new pig model for studying relationships between venous gas bubbles and physiologic effects during and after decompression. Sixteen pigs were anesthetized to allow spontaneous breathing. Eight of them underwent a 30-min exposure to 5 bar (500 kPa) followed by a rapid decompression to 1 bar (2 bar/min); the remaining eight served as controls. The pigs were monitored for intravascular bubbles using a transesophageal echocardiographic transducer, and bubble count in the two-dimensional ultrasound image of the pulmonary artery was used as a measure of the number of venous gas bubbles. Effects on physiologic variables of the pulmonary and the systemic circulations were either measured or estimated. We detected venous bubbles in all pigs after decompression, but the interindividual variation was large. The time course of changes in the mean pulmonary artery pressure, in the pulmonary vascular resistance, in the arterial oxygen tension, and in the pulmonary shunt fraction followed the time course of the bubble count. In contrast, such a relationship to the number of venous gas bubbles was not found for the immediate increase in mean arterial pressure and for the changes in the other variables of the systemic circulation. We conclude that the number of venous gas bubbles, as evaluated by the bubble count in the ultrasound image of the pulmonary artery, is clearly related to changes in the variables of the pulmonary circulation in this pig model.
我们提出了一种新的猪模型,用于研究减压过程中和减压后静脉气泡与生理效应之间的关系。16只猪被麻醉以允许自主呼吸。其中8只猪暴露于5巴(500千帕)30分钟,然后快速减压至1巴(每分钟2巴);其余8只作为对照。使用经食管超声心动图换能器监测猪的血管内气泡,并将肺动脉二维超声图像中的气泡计数用作静脉气泡数量的度量。测量或估计了对肺循环和体循环生理变量的影响。减压后我们在所有猪中都检测到了静脉气泡,但个体间差异很大。平均肺动脉压、肺血管阻力、动脉血氧张力和肺分流分数的变化时间过程与气泡计数的时间过程一致。相比之下,平均动脉压的即刻升高和体循环其他变量的变化与静脉气泡数量没有这种关系。我们得出结论,在这个猪模型中,通过肺动脉超声图像中的气泡计数评估的静脉气泡数量与肺循环变量的变化明显相关。