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犬头部二氧化碳张力对颈动脉化学感受器刺激所致心脏变力反应的影响。

Effect of cephalic carbon dioxide tension on the cardiac inotropic response to carotid chemoreceptor stimulation in dogs.

作者信息

Hainsworth R, Rankin A J, Soladoye A O

出版信息

J Physiol. 1985 Jan;358:405-16. doi: 10.1113/jphysiol.1985.sp015558.

Abstract

Dogs were anaesthetized with chloralose and the cephalic circulation was perfused, through the brachiocephalic and left subclavian arteries, with blood equilibrated with various tensions of CO2. The vascularly isolated carotid bifurcations were perfused at a constant pressure with either arterial or venous blood. Inotropic responses were assessed by measuring the maximum rate of change of left ventricular pressure (dP/dt max) with heart rate and aortic pressure held constant. Stimulation of carotid chemoreceptors with venous blood, at all values of cephalic PCO2, always resulted in a decrease in dP/dt max. An increase in cephalic PCO2, during arterial perfusion of chemoreceptors, resulted in an increase in dP/dt max and the response to chemoreceptor stimulation was enhanced. Graded changes in cephalic PCO2 resulted in graded changes in dP/dt max during arterial perfusion of chemoreceptors. However, the value of dP/dt max during venous perfusion was not significantly affected by increases in cephalic PCO2 above normal but it did decrease significantly during cephalic hypocapnia. These results confirm that an increase in cephalic PCO2 and stimulation of carotid chemoreceptors result in opposite responses of the cardiac inotropic state. The responses to chemoreceptor stimulation were enhanced by cephalic hypercapnia but the responses to cephalic hypercapnia, although not to hypocapnia, were suppressed by chemoreceptor stimulation.

摘要

用氯醛糖对狗进行麻醉,通过头臂动脉和左锁骨下动脉,用与不同二氧化碳张力平衡的血液灌注头部循环。对血管分离的颈动脉分叉处以恒定压力灌注动脉血或静脉血。在心率和主动脉压力保持恒定的情况下,通过测量左心室压力的最大变化率(dP/dt max)来评估心肌收缩反应。在所有头部PCO2值下,用静脉血刺激颈动脉化学感受器总是导致dP/dt max降低。在化学感受器动脉灌注期间,头部PCO2升高导致dP/dt max增加,并且对化学感受器刺激的反应增强。在化学感受器动脉灌注期间,头部PCO2的分级变化导致dP/dt max的分级变化。然而,静脉灌注期间dP/dt max的值在头部PCO2高于正常水平时没有受到显著影响,但在头部低碳酸血症期间确实显著降低。这些结果证实,头部PCO2升高和颈动脉化学感受器刺激导致心脏收缩状态的相反反应。头部高碳酸血症增强了对化学感受器刺激的反应,但化学感受器刺激抑制了对头部高碳酸血症的反应,尽管对头部低碳酸血症的反应没有被抑制。

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