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Physiological effects of transcranial electrical stimulation of the brain in spontaneously hypertensive rat

机译:脑血管刺激脑自发性高血压大鼠的生理效应

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The present study was to evaluate the physiological effects of transcranial electrical stimulation (1 Hz, 30 volts) of the brain in spontaneously hypertensive rats (SHR) and normotensive Wistar-Kyoto (WKY) rats. The authors observed and compared changes in the coefficient of variation and two frequency components reflecting cardiac sympathetic and parasympathetic activities and vasomotor sympathetic tone from autoregressive (AR) power spectra of pulse interval (PIV) and systolic blood pressure variabilities (SPV) in three periods, i.e. control, stimulation and recovery. In the authors' results, transcranial electrical stimulated SHR showed a decrease in arterial blood pressure and an increase cardiac parasympathetic tone evaluated by the coefficient of variation and the high frequency power (HF-PIV) of pulse interval variability as compared with those in control. The authors propose that transcranial electrical stimulation of pulse type with surface bipolar electrodes can be used as one of the useful physiological control tool of hypertension.
机译:本研究是评估脑在自发性高血压大鼠(SHR)和标准循环Wistar-kyoto(WKY)大鼠中脑中脑的生理效应(1Hz,30伏)。作者观察并比较了变异系数和两次脉冲间隔(PIV)和收缩压变量(SPV)的心脏交感神经和副交感神经活性和血管感应性和血管同情的变异系数和两个频率分量的变化。即控制,刺激和恢复。在作者的结果中,经血管电气刺激的SHR显示出动脉血压的降低和通过变化系数评估的动脉血压和增加的心脏副交感神经调,与控制中的脉冲间隔变异的高频功率(HF-PIV)相比。作者提出,具有表面双极电极的脉冲型脉冲刺激可以用作高血压的有用生理控制工具之一。

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