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自发性高血压大鼠的血流动力学调节:通过频谱分析进行研究。

Hemodynamic regulation in SHR: investigation by spectral analysis.

作者信息

Akselrod S, Eliash S, Oz O, Cohen S

出版信息

Am J Physiol. 1987 Jul;253(1 Pt 2):H176-83. doi: 10.1152/ajpheart.1987.253.1.H176.

Abstract

This work is based on the premise that hypertension in the spontaneously hypertensive rat (SHR) is a consequence of an imbalance in autonomic cardiovascular control. Spontaneous, instantaneous fluctuations in heart rate (HR) and arterial blood pressure (ABP) were studied by spectral analysis in age-matched groups of SHR and normotensive Wistar-Kyoto (WKY) rats. Continuous recordings of ABP and HR made in conscious, unrestrained, young 1-, 2-, 3-, and 6-mo-old rats show that power spectra of HR fluctuations were similar in both strains, whereas ABP fluctuations were significantly different in the low, presumably vasomotor frequency range being reduced in SHR as compared with age-matched WKY rats. In 1-mo-old rats, the difference between strains became smaller with urethan anesthesia and disappeared with spinalization, suggesting that it might have originated in some disparity between the strains at the level of the central nervous system. Low doses of phentolamine elicited a fall in low-frequency ABP fluctuations of WKY but a rise in SHR, whereas larger doses produced a fall in the power of both. In SHR, reduction in the power spectrum of ABP fluctuations in the presence of unaltered HR fluctuations may indicate an impaired control of sympathetic drive to resistance vessels compared with WKY. Note that in young SHR, hypertension also cannot be detected by conventional measurement. Fluctuations in ABP in WKY may reflect an optimal level of sympathetic activity; reduction in fluctuations may be associated with an increase or decrease in sympathetic activity at the vascular bed.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

本研究基于这样一个前提

自发性高血压大鼠(SHR)的高血压是自主心血管控制失衡的结果。通过频谱分析,对年龄匹配的SHR组和正常血压的Wistar-Kyoto(WKY)大鼠组的心率(HR)和动脉血压(ABP)的自发、瞬时波动进行了研究。对清醒、不受束缚的1、2、3和6月龄幼鼠的ABP和HR进行连续记录,结果显示,两种品系的HR波动功率谱相似,而在低频率(可能是血管舒缩频率范围)下,SHR的ABP波动与年龄匹配的WKY大鼠相比显著降低。在1月龄大鼠中,品系间的差异在乌拉坦麻醉下变小,在脊髓横断后消失,这表明差异可能源于中枢神经系统水平上两个品系之间的某些差异。低剂量酚妥拉明可使WKY大鼠低频ABP波动下降,但使SHR大鼠上升,而高剂量则使两者的功率均下降。在SHR中,HR波动未改变的情况下ABP波动功率谱降低,这可能表明与WKY相比,其对阻力血管的交感神经驱动控制受损。需要注意的是,在年轻的SHR中,传统测量方法也无法检测到高血压。WKY大鼠的ABP波动可能反映了交感神经活动的最佳水平;波动减少可能与血管床交感神经活动的增加或减少有关。(摘要截断于250字)

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