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清醒正常血压和高血压大鼠颈动脉窦压力感受器区域的慢性分离

Chronic isolation of carotid sinus baroreceptor region in conscious normotensive and hypertensive rats.

作者信息

McKeown K P, Shoukas A A

机构信息

Department of Biomedical Engineering, The Johns Hopkins University School of Medicine, Baltimore, Maryland 21205, USA.

出版信息

Am J Physiol. 1998 Jul;275(1):H322-9. doi: 10.1152/ajpheart.1998.275.1.H322.

Abstract

We have developed a chronic technique to isolate the carotid sinus baroreceptor region in the conscious rat model. Our technique, when used in conjunction with other methods, allows for the study of the control of arterial pressure, heart rate, and cardiac output by the carotid sinus baroreceptor reflex in conscious, unrestrained rats. The performance of our technique was evaluated in two strains: normotensive Sprague-Dawley (SD) rats and spontaneously hypertensive rats (SHR). Each rat was instrumented with an aortic flow probe and a catheter placed in the right femoral artery to monitor cardiac output and arterial pressure, respectively. The cervical sympathetic trunk and aortic depressor nerve were ligated and cut bilaterally, leaving vagus nerves intact. The right and left carotid sinuses were isolated using our new technique. We tested the open-loop function of the carotid sinus baroreceptor reflex system in the conscious rat after recovery from the isolation surgery. We found that changes in nonpulsatile carotid sinus pressure caused significant changes in arterial pressure, heart rate, and total peripheral resistance in both rat strains. However, the cardiac output responses differed dramatically between strains. Significant changes were seen in the cardiac output response of SHR, whereas no significant changes were observed in normotensive SD rats. We have found this technique to be a highly reliable tool for the study of the carotid sinus baroreceptor reflex system in the conscious rat.

摘要

我们已经开发出一种慢性技术,用于在清醒大鼠模型中分离颈动脉窦压力感受器区域。我们的技术与其他方法结合使用时,能够研究清醒、不受束缚的大鼠中颈动脉窦压力感受器反射对动脉血压、心率和心输出量的控制。我们在两种品系的大鼠中评估了该技术的性能:正常血压的斯普拉格-道利(SD)大鼠和自发性高血压大鼠(SHR)。每只大鼠都植入了主动脉流量探头和一根置于右股动脉的导管,分别用于监测心输出量和动脉血压。双侧结扎并切断颈交感干和主动脉减压神经,保留迷走神经完整。使用我们的新技术分离左右颈动脉窦。在分离手术恢复后,我们测试了清醒大鼠中颈动脉窦压力感受器反射系统的开环功能。我们发现,非搏动性颈动脉窦压力的变化在两种品系的大鼠中均引起动脉血压、心率和总外周阻力的显著变化。然而,不同品系大鼠的心输出量反应差异巨大。在SHR的心输出量反应中观察到显著变化,而在正常血压的SD大鼠中未观察到显著变化。我们发现该技术是研究清醒大鼠颈动脉窦压力感受器反射系统的高度可靠工具。

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