猫直立倾斜时动脉压和肾素释放的反射控制差异。

A Stella, R A Dampney, R Golin, A Zanchetti
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引用次数: 4

摘要

1. 麻醉后的猫进行两次10分钟的直立倾斜试验,间隔30分钟。测量动脉压、心率、流向神经支配肾脏和对侧去神经支配肾脏的血流量以及两个肾脏的肾素释放量。2. 当猫在两次倾斜试验之间进行假性颈椎迷走神经切断术时,在两次倾斜发作期间发生了相同的血流动力学变化和肾素释放的类似增加。3.双侧颈部迷走神经切开术,在首次头仰后进行,不影响对姿势变化的血流动力学反应,但显著地减少了神经支配肾释放肾素的增加。4. 在椎动脉去神经后,倾斜时发生明显的持续的动脉低血压,而受神经支配的肾脏的肾素释放的体位增加甚至更大。5. 在任何情况下,即使是在去神经猫的血压显著下降的情况下,直立倾斜也不会增加去神经肾脏的肾素释放。6. 由此可见,倾斜时动脉压力的维持主要是由于椎动脉反射,而迷走神经反射主要是导致肾素释放的体位增加。
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Differences in reflex control of arterial pressure and renin release during head-up tilting in the cat.

1. Anaesthetized cats were subjected to two 10 min trials of head-up tilting spaced 30 min. Arterial pressure, heart rate, blood flow to an innervated kidney and to the contralateral denervated one, and renin release from both kidneys were measured. 2. The same haemodynamic changes and comparable increases in renin release from innervated kidneys occurred during both episodes of tilting when cats were subjected to sham cervical vagotomy between the two tilting trials. 3. Bilateral cervical vagotomy, performed after the first episode of head-up tilting, did not affect the haemodynamic response to the change in posture, but significantly and markedly reduced the increase in renin release from the innervated kidney. 4. After sino-aortic denervation a marked and sustained arterial hypotension occurred during tilting, and the postural increase in renin release from the innervated kidney was even greater. 5. In no condition, even during the marked fall in blood pressure in sino-aortic denervated cats, did head-up tilting increase renin release from the denervated kidney. 6. It is concluded that maintenance of arterial pressure during tilting is mainly due to sino-aortic reflexes, whereas vagal reflexes are mostly responsible for the postural increase in renin release.

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Proceedings of the Fifth Meeting of the International Society of Hypertension, Paris, 12-14 June 1978. Brain catecholamines and catecholamine-synthesizing enzymes in renovascular hypertension in the rat. Enhanced hypothalamic noradrenaline biosynthesis in Goldblatt I renovascular hypertension. Definitive evidence for renin in rat brain by affinity chromatographic separation from protease. Renal release of active and inactive renin in essential and renovascular hypertension.
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