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首页> 外文期刊>American Journal of Physiology >High-cut characteristics of the baroreflex neural arc preserve baroreflex gain against pulsatile pressure.
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High-cut characteristics of the baroreflex neural arc preserve baroreflex gain against pulsatile pressure.

机译:压力反射神经弧的高切特性可保持压力反射增益抵御脉动压力。

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A transfer function from baroreceptor pressure input to sympathetic nerve activity (SNA) shows derivative characteristics in the frequency range below 0.8 Hz in rabbits. These derivative characteristics contribute to a quick and stable arterial pressure (AP) regulation. However, if the derivative characteristics hold up to heart rate frequency, the pulsatile pressure input will yield a markedly augmented SNA signal. Such a signal would saturate the baroreflex signal transduction, thereby disabling the baroreflex regulation of AP. We hypothesized that the transfer gain at heart rate frequency would be much smaller than that predicted from extrapolating the derivative characteristics. In anesthetized rabbits (n = 6), we estimated the neural arc transfer function in the frequency range up to 10 Hz. The transfer gain was lost at a rate of -20 dB/decade when the input frequency exceeded 0.8 Hz. A numerical simulation indicated that the high-cut characteristics above 0.8 Hz were effective to attenuate the pulsatile signal and preserve the open-loop gain when the baroreflex dynamic range was finite.
机译:从压力感受器压力输入到交感神经活动(SNA)的传递函数在兔子的0.8 Hz以下频率范围内显示出派生特性。这些衍生特征有助于快速和稳定的动脉压(AP)调节。但是,如果微分特性保持在心率频率上,则脉动压力输入将产生明显增强的SNA信号。这样的信号将使压力反射反射的信号传导饱和,从而使AP的压力反射调节失效。我们假设在心率频率下的转移增益将比根据推导导数特性预测的转移增益小得多。在麻醉的兔子(n = 6)中,我们估计了在高达10 Hz的频率范围内的神经弧传递函数。当输入频率超过0.8 Hz时,传输增益以-20 dB /十倍频的速率损失。数值模拟表明,当压力反射动态范围有限时,高于0.8 Hz的高切特性可有效衰减脉动信号并保持开环增益。

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