首页> 外文期刊>The Journal of Physiology >Electrically induced vasomotor responses and their propagation in rat renal vessels in vivo.
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Electrically induced vasomotor responses and their propagation in rat renal vessels in vivo.

机译:电诱导的血管舒缩反应及其在体内在大鼠肾血管中的传播。

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1. Vasomotor responses (VMR) induced by local electrical stimulation were studied in the vasculature of the split hydronephrotic rat kidney by in vivo microscopy. 2. Unipolar pulses, which were applied by a micropipette positioned close to the vessel wall, elicited local and propagated VMR. Depolarizing and hyperpolarizing currents caused vasoconstriction and vasodilatation, respectively. 3. The magnitude of VMR could be controlled within seconds by variation of pulse frequency, pulse width and voltage. VMR were abolished by slight retraction of the stimulating micropipette. Repetitive electrical stimulation resulted in reproducibly uniform VMR. 4. Propagated VMR decayed with increasing distance from the stimulation site. They decayed more rapidly in the upstream than in the downstream flow direction in interlobular arteries. The longitudinal decay was well approximated by an exponential function with significantly different length constants of 150 +/- 40 microns (upstream, n = 5) and 420 +/- 90 microns (downstream, n = 8). 5. Our results show that vasomotor responses, which are initiated by changes in membrane potential, are propagated over distances of potential physiological importance in interlobular arteries.
机译:1.通过体内显微镜研究了局部电刺激诱发的分裂性肾病大鼠肾脏的脉管系统中的血管舒缩反应(VMR)。 2.单极脉冲由定位在血管壁附近的微量移液器施加,引起局部和传播的VMR。去极化和超极化电流分别引起血管收缩和血管舒张。 3.通过改变脉冲频率,脉冲宽度和电压,可以在几秒钟内控制VMR的大小。略微缩回刺激性微量移液器即可取消VMR。重复的电刺激导致可重复的均匀VMR。 4.传播的VMR随着距刺激部位距离的增加而衰减。在小叶间动脉中,它们在上游比在下游流动方向更快地衰减。纵向衰减可以通过指数函数很好地近似,其长度常数的显着不同为150 +/- 40微米(上游,n = 5)和420 +/- 90微米(下游,n = 8)。 5.我们的结果表明,由膜电位变化引发的血管舒缩反应在小叶间动脉中具有潜在生理重要性的距离上传播。

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