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神经对人体肺循环的影响作为对容量减少的防御反应。

Neural influences on the human pulmonary circulation as a defence reaction to volume depletion.

作者信息

Moruzzi P, Sganzerla P, Guazzi M D

机构信息

Istituto di Cardiologia dell'Università di Milano, Italy.

出版信息

Resuscitation. 1989 Dec;18(2-3):183-93. doi: 10.1016/0300-9572(89)90021-x.

Abstract

The role of the autonomic nervous system in the regulation of pulmonary vasomotility in man is unsettled and great emphasis is usually given to changes in flow as the main regulating mechanism. In order to simulate hypovolemia, which might reduce the mechanical influence of flow and disclose a neural mechanism, we decreased venous return through balloon distention in the inferior vena cava in 12 normal subjects, during right heart catheterization performed for diagnostic purposes. Caval obstruction was graduated to reduce cardiac output, right atrial and pulmonary arterial pressures, without altering systemic arterial pressure and heart rate. The sympathetic nervous system was activated by arithmetic and cold pressor tests. During the former, the increase in cardiac output was more than halved by venous return restraint, as compared to the unrestrained condition, and clear pulmonary vasoconstriction, instead of vasodilatation, was observed. During the cold test, cardiac output remained almost steady, in the absence as in the presence of balloon expansion. In both conditions pulmonary arteriolar resistance rose, but in the latter this increase was more than doubled. This study suggests that the autonomic nervous system is involved in the regulation of pulmonary vasomotility in man, its role being unveiled when the mechanical influence of flow is reduced by mimicking a hypovolemic state.

摘要

自主神经系统在人类肺血管运动调节中的作用尚未明确,通常十分强调血流变化作为主要调节机制。为了模拟可能会降低血流机械影响并揭示神经机制的低血容量状态,我们在12名正常受试者进行诊断性右心导管检查期间,通过在下腔静脉内球囊扩张来减少静脉回流。逐步增加腔静脉阻塞程度以降低心输出量、右心房和肺动脉压力,同时不改变体动脉血压和心率。通过算数和冷加压试验激活交感神经系统。在前一种试验中,与无限制状态相比,静脉回流受限使心输出量的增加减半以上,并且观察到明显的肺血管收缩而非血管舒张。在冷试验中,无论有无球囊扩张,心输出量几乎保持稳定。在两种情况下肺小动脉阻力均升高,但在后一种情况下这种升高增加了一倍多。这项研究表明,自主神经系统参与人类肺血管运动的调节,当通过模拟低血容量状态降低血流的机械影响时,其作用就会显现出来。

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