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The vasovagal response of the rat: its relation to the vestibulosympathetic reflex and to Mayer waves

机译:大鼠的血管迷走神经反应:与前庭交感神经反射和Mayer波的关系

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摘要

Vasovagal responses (VVRs) are characterized by transient drops in blood pressure (BP) and heart rate (HR) and increased amplitude of low-frequency oscillations in the Mayer wave frequency range. Typical VVRs were induced in anesthetized, male, Long-Evans rats by sinusoidal galvanic vestibular stimulation (sGVS). VVRs were also produced by single sinusoids that transiently increased BP and HR, by 70–90° nose-up tilts, and by 60° tilts of the gravitoinertial acceleration vector using translation while rotating (TWR). The average power of the BP signal in the Mayer wave range increased substantially when tilts were >70° (0.91 g), i.e., when linear accelerations in the x–z plane were ≥0.9–1.0 g. The standard deviations of the wavelet-filtered BP signals during tilt and TWR overlaid when they were normalized to 1 g. Thus, the amplitudes of the Mayer waves coded the magnitude of the linear acceleration ≥1 g acting on the head and body, and the average power in this frequency range was associated with the generation of VVRs. These data show that VVRs are a natural outcome of stimulation of the vestibulosympathetic reflex and are not a disease. The results also demonstrate the usefulness of the rat as a small animal model for studying human VVRs.—Cohen, B., Martinelli, G. P., Raphan, T., Schaffner, A., Xiang, Y., Holstein, G. R., Yakushin, S. B. The vasovagal response of the rat: its relation to the vestibulosympathetic reflex and to Mayer waves.
机译:血管迷走神经反应(VVR)的特征在于血压(BP)和心率(HR)的瞬时下降以及在Mayer波频率范围内低频振荡的幅度增加。典型的VVR是通过正弦电流前庭刺激(sGVS)在麻醉的雄性Long-Evans大鼠中诱发的。 VVR也是由单个正弦曲线产生的,通过使用旋转平移(TWR)可以使BP和HR暂时增加BP和HR,向上倾斜70–90°,并增加重力惯性矢量的60°倾斜。当倾斜度> 70°(0.91 g),即x–z平面中的线性加速度≥0.9–1.0 g时,在Mayer波范围内的BP信号的平均功率会显着增加。当将小波滤波后的BP信号归一化为1 g时,它们在倾斜和TWR期间的标准偏差重叠。因此,迈耶波的幅度编码了作用于头部和身体的线性加速度≥1g的幅度,并且该频率范围内的平均功率与VVR的产生有关。这些数据表明,VVR是刺激前庭交感神经反射的自然结果,并非疾病。结果还证明了大鼠作为研究人类VVR的小型动物模型的有用性。-Cohen,B.,Martinelli,GP,Raphan,T.,Schaffner,A.,Xiang,Y.,Holstein,GR,Yakushin, SB大鼠的血管迷走神经反应:其与前庭交感神经反射和Mayer波的关系。

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