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Measuring high pressure baroreceptor sensitivity in the rat.

机译:在大鼠中测量高压压力感受器的敏感性。

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INTRODUCTION: The high pressure baroreceptor reflex rapidly buffers changes in systemic arterial pressure in response to postural changes, altered gravitational conditions, diseases, and pharmacological agents. Drug-induced exaggeration of changes in heart rate and in systemic arterial pressure is a leading cause of adverse events and of patients terminating use of drugs, particularly in the aging population. This paper presents a facile method for monitoring the high pressure baroreceptor reflex in rats, and presents an alternative to quantifying the magnitude of this reflex using 2 dependent variables, heart rate and systemic arterial pressure, rather than merely change in heart rate. METHODS: Twenty-four rats were allocated to 3 groups: group I anesthetized with 100mg/kg thiopental, group II anesthetized with 2% isoflurane given by inhalation, group III anesthetized with thiopental but pretreated for 2weeks with 2mug/kg aldosterone given SQ bid. After induction to anesthesia, hair was clipped from the ventral aspect of the neck, and petrolatum was applied to the skin to permit an air-tight seal with a glass funnel attached to a source of variable and controllable negative pressure. Systemic arterial pressure, ECG, heart rate, and a force of suction applied to the neck were all recorded continuously. RESULTS: After baseline recordings, a force of -20mmHg was applied for 20s over the carotid artery. In rats receiving thiopental, the average changes in heart rate and systemic arterial pressure following the application of -20mmHg neck suction were 30+/-11bpm and 45+/-14mmHg, respectively. The ratios of change in heart and change in systemic arterial pressure to application of negative force over the carotid sinus are 1.5+/-0.6bpm/mmHg and 0.7+/-04mmHg/mmHg, respectively. Mean values for heart rate and for mean systemic arterial pressure during baseline and after application of neck suction for 20s showed little to no decrease (i.e., blunting) in rats anesthetized with isoflurane or pretreated with aldosterone. DISCUSSION: Thus this methodology was able to detect, in rats, blunting of baroreceptor function for at least 2 perturbations of this important homeostatic control system.
机译:简介:高压压力感受器反射可快速缓冲全身动脉压的变化,以响应姿势变化,重力条件,疾病和药理作用的变化。药物引起的心率和全身动脉压变化的夸大是不良事件和患者终止使用药物的主要原因,尤其是在老龄化人群中。本文提出了一种监测大鼠高压压力感受器反射的简便方法,并提出了使用2个因变量(心率和全身动脉压)而不是仅改变心率来量化该反射幅度的方法。方法:将24只大鼠分为3组:第一组以100mg / kg硫喷妥钠麻醉,第二组以2%异氟烷麻醉通过吸入给药,第三组以硫喷妥钠麻醉,但以2mug / kg醛固酮给予SQ投标治疗2周。麻醉后,从颈部的腹侧剪下头发,将凡士林涂在皮肤上,以使玻璃漏斗气密密封,该漏斗连接到可变且可控的负压源上。连续记录全身动脉压,心电图,心律和施加在颈部的吸力。结果:基线记录后,在颈动脉上方施加-20mmHg的力达20s。在接受硫喷妥钠的大鼠中,施加-20mmHg颈部吸引后,心率和全身动脉压的平均变化分别为30 +/- 11bpm和45 +/- 14mmHg。心脏变化和全身动脉压变化与在颈窦上施加负力的比率分别为1.5 +/- 0.6bpm / mmHg和0.7 +/- 04mmHg / mmHg。在用异氟烷麻醉或用醛固酮麻醉的大鼠中,基线期间和施加颈部吸气20秒后的心率和平均全身动脉压平均值均几乎没有下降(即变钝)。讨论:因此,该方法能够在大鼠中检测到该重要的稳态控制系统的至少2次扰动中压力感受器功能的减弱。

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