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口服肼苯哒嗪后肺心病患者静息及运动时的血流动力学

Hemodynamics at rest and during exercise after oral hydralazine in patients with cor pulmonale.

作者信息

Rubin L J, Peter R H

出版信息

Am J Cardiol. 1981 Jan;47(1):116-22. doi: 10.1016/0002-9149(81)90299-x.

Abstract

Oral hydralazine has been shown to be effective in decreasing pulmonary arteriolar resistance and increasing cardiac output in some patients with primary pulmonary hypertension. To determine whether a similar response could be observed in patients with chronic cor pulmonale, the hemodynamic status before and after the oral administration of hydralazine (25 mg, then 50 mg every 6 hours for 48 hours) were evaluated in 12 patients at rest and in 8 during upright exercise. After hydralazine, there was an increase in cardiac output at rest, from 4.3 to 6.3 liters/min (p < 0.001), and reductions in arteriovenous oxygen difference, from 8.1 to 6.1 volume percent (p < 0.001), mean pulmonary arterial pressure, from 52 to 44 mm Hg (p < 0.01), and pulmonary arteriolar resistance, from 11.2 to 6.2 units (p < 0.0005). Similar hemodynamic changes occurred during exercise, including an increase in pulmonary arterial saturation from 27 to 39 percent (p < 0.001) and a decrease in total pulmonary resistance from 12.7 to 8.9 units (p < 0.01). Results of pulmonary function tests performed before and after hydralazine did not change with drug administration. These findings indicate that the lung vascular bed in some patients with cor pulmonale is capable of responding to hydralazine with a reduction in pulmonary resistance and an increase in cardiac output both at rest and during exercise.

摘要

口服肼苯哒嗪已被证明对某些原发性肺动脉高压患者降低肺小动脉阻力和增加心输出量有效。为了确定慢性肺心病患者是否也能观察到类似反应,对12例静息患者和8例直立运动患者口服肼苯哒嗪(25mg,然后每6小时50mg,共48小时)前后的血流动力学状态进行了评估。服用肼苯哒嗪后,静息时心输出量增加,从4.3升/分钟增至6.3升/分钟(p<0.001),动静脉氧差降低,从8.1容积百分比降至6.1容积百分比(p<0.001),平均肺动脉压从52mmHg降至44mmHg(p<0.01),肺小动脉阻力从11.2单位降至6.2单位(p<0.0005)。运动期间也出现了类似的血流动力学变化,包括肺动脉饱和度从27%增至39%(p<0.001),总肺阻力从12.7单位降至8.9单位(p<0.01)。服用肼苯哒嗪前后进行的肺功能测试结果未因药物给药而改变。这些发现表明,一些肺心病患者的肺血管床在静息和运动时都能够对肼苯哒嗪作出反应,降低肺阻力并增加心输出量。

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