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肾交感神经激活模式的功能意义。

Functional significance of the pattern of renal sympathetic nerve activation.

作者信息

Dibona G F, Sawin L L

机构信息

Departments of Internal Medicine and Physiology, University of Iowa College of Medicine and Veterans Administration Medical Center, Iowa City, Iowa 52242, USA.

出版信息

Am J Physiol. 1999 Aug;277(2):R346-53. doi: 10.1152/ajpregu.1999.277.2.R346.

DOI:10.1152/ajpregu.1999.277.2.R346
PMID:10444539
Abstract

To assess the renal functional significance of the pattern of renal sympathetic nerve activation, computer-generated stimulus patterns (delivered at constant integrated voltage) were applied to the decentralized renal sympathetic nerve bundle and renal hemodynamic and excretory responses determined in anesthetized rats. When delivered at the same integrated voltage, stimulus patterns resembling those observed in in vivo multifiber recordings of renal sympathetic nerve activity (diamond-wave patterns) produced greater renal vasoconstrictor responses than conventional square-wave patterns. Within diamond-wave patterns, increasing integrated voltage by increasing amplitude produced twofold greater renal vasoconstrictor responses than by increasing duration. With similar integrated voltages that were subthreshold for renal vasoconstriction, neither diamond- nor square-wave pattern altered glomerular filtration rate, whereas diamond- but not square-wave pattern reversibly decreased urinary sodium excretion by 25 +/- 3%. At the same number of pulses per second, intermittent stimulation produced faster and greater renal vasoconstriction than continuous stimulation. At the same number of pulses per second, increases in rest period during intermittent stimulation proportionally augmented the renal vasoconstrictor response compared with that observed with continuous stimulation; the maximum augmentation of 55% occurred at a rest period of 500 ms. These results indicate that the pattern of renal sympathetic nerve stimulation (activity) significantly influences the rapidity, magnitude, and selectivity of the renal vascular and tubular responses.

摘要

为评估肾交感神经激活模式对肾功能的意义,将计算机生成的刺激模式(以恒定积分电压施加)施加于去中枢神经支配的肾交感神经束,并测定麻醉大鼠的肾血流动力学和排泄反应。当以相同的积分电压施加时,类似于在肾交感神经活动的体内多纤维记录中观察到的刺激模式(菱形波模式)比传统的方波模式产生更大的肾血管收缩反应。在菱形波模式中,通过增加幅度来增加积分电压所产生的肾血管收缩反应比通过增加持续时间所产生的反应大两倍。在肾血管收缩阈下的相似积分电压下,菱形波模式和方波模式均未改变肾小球滤过率,而菱形波模式而非方波模式可使尿钠排泄可逆性降低25±3%。在每秒相同的脉冲数时,间歇性刺激比持续性刺激产生更快、更大的肾血管收缩。在每秒相同的脉冲数时,与持续性刺激相比,间歇性刺激期间休息期的增加按比例增强了肾血管收缩反应;在500毫秒的休息期时出现了55%的最大增强。这些结果表明,肾交感神经刺激(活动)模式显著影响肾血管和肾小管反应的速度、幅度和选择性。

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