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家兔肾和心脏交感神经中动脉低氧对压力反射的“重调定”

Baroreflex "resetting" by arterial hypoxia in the renal and cardiac sympathetic nerves of the rabbit.

作者信息

Iriki M, Dorward P, Korner P I

出版信息

Pflugers Arch. 1977 Jul 29;370(1):1-7. doi: 10.1007/BF00707938.

Abstract
  1. Renal and cardiac sympathetic baroreflex functions were studied in sodium pentobarbitone anaesthetized rabbits given succinylcholine, during constant artificial ventilation with air and with hypoxic gas mixtures. Mean arterial pressure (MAP) was raised and lowered between values of 40 and 140 mm Hg by means of aortic and vena caval periovascular balloons and integrated sympathetic nerve activity (SNA) was recordered. 2. The relationship between MAP and SNA was sigmoid, with upper and lower plateau levels. The curves were defined by calculating median blood pressure, SNA Range and reflex gain. In both renal and cardiac sympathetics section of the carotid sinus and aortic nerves completely abolished the MAP-related changes in SNA. 3. The renal baroreflex curves were reset from control levels during hypoxia. Median blood pressure increased, as did SNA Range and gain. These effects were due to central interactions between arterial baroreceptor, arterial chemoreceptor and vagal afferent activity. 4. The cardiac sympathetic baroreflex curves were shifted in the opposite direction from control with reduction in median blood pressure, SNA Range and reflex gain. These changes were due to chemoreceptor-arterial baroreceptor interactions. 5. Arterial hypoxia thus evokes a differentiated pattern of baroreflex resetting in the renal and cardiac sympathetic montoneuron pools with differing changes in neural response range and sensitivity to arterial pressure changes.
摘要
  1. 在戊巴比妥钠麻醉的家兔中,静脉注射琥珀酰胆碱,在持续人工通气的空气和低氧混合气体条件下,研究肾和心脏交感神经压力反射功能。通过主动脉和腔静脉周围血管球囊将平均动脉压(MAP)在40至140mmHg之间升高和降低,并记录整合的交感神经活动(SNA)。2. MAP与SNA之间的关系呈S形,有上下平台期。通过计算血压中位数、SNA范围和反射增益来定义曲线。切断颈动脉窦和主动脉神经后,肾和心脏交感神经中与MAP相关的SNA变化完全消失。3. 在低氧期间,肾压力反射曲线从对照水平重置。血压中位数增加,SNA范围和增益也增加。这些效应是由于动脉压力感受器、动脉化学感受器和迷走神经传入活动之间的中枢相互作用所致。4. 心脏交感神经压力反射曲线与对照相比向相反方向移动,血压中位数、SNA范围和反射增益降低。这些变化是由于化学感受器 - 动脉压力感受器相互作用所致。5. 因此,动脉低氧在肾和心脏交感运动神经元池中引起不同模式的压力反射重置,神经反应范围和对动脉压变化的敏感性有不同变化。

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