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肺动脉楔压、左心房压力与缺氧性肺血管收缩部位

Pulmonary arterial wedge and left atrial pressures and the site of hypoxic pulmonary vasoconstriction.

作者信息

Malik A B, Kidd B S

出版信息

Respiration. 1976;33(2):123-32. doi: 10.1159/000193725.

Abstract

The pulmonary vascular response to breathing 5% oxygen in nitrogen was studied in anesthetized, artificially ventilated dogs. The pulmonary arterial (Pa), pulmonary arterial wedge (PW), left atrial (LAP) pressures and pulmonary blood flow (Q) were monitored. The pulmonary arterial catheter was wedged at the mid-lung level. At 10 min of hypoxia, Pa-PW pressure gradient increased while the PW-LAP gradient did not change significantly. The PW and LAP were significantly correlated during room air breathing (r=0.832) and during hypoxia (r=0.980). The calculated resistance from the pulmonary artery to the wedged catheter (Pa-Pa/Q) increased and the calculated resistance from the wedged catheter (Pa-Pw/Q) did not change significantly. These findings indicate that the mean LAP and PW pressures are not significantly different during severe hypoxia, and that the increase in pulmonary vascular resistance during hypoxia is due to constriction of the large precapillary vessels.

摘要

在麻醉、人工通气的犬身上研究了对吸入含5%氧气的氮气的肺血管反应。监测肺动脉(Pa)、肺动脉楔压(PW)、左心房压(LAP)和肺血流量(Q)。肺动脉导管楔入肺中部水平。缺氧10分钟时,Pa - PW压力梯度增加,而PW - LAP梯度无明显变化。在呼吸空气期间(r = 0.832)和缺氧期间(r = 0.980),PW和LAP显著相关。计算得出的从肺动脉到楔入导管的阻力(Pa - Pa/Q)增加,而从楔入导管计算得出的阻力(Pa - Pw/Q)无明显变化。这些发现表明,在严重缺氧期间,平均LAP和PW压力无显著差异,并且缺氧期间肺血管阻力的增加是由于大的毛细血管前血管收缩所致。

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