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神经元摄取影响心率对交感神经刺激反应的动态特征。

Neuronal uptake affects dynamic characteristics of heart rate response to sympathetic stimulation.

作者信息

Nakahara T, Kawada T, Sugimachi M, Miyano H, Sato T, Shishido T, Yoshimura R, Miyashita H, Inagaki M, Alexander J, Sunagawa K

机构信息

Department of Cardiovascular Dynamics, National Cardiovascular Center Research Institute, Suita, Osaka 565-8565, Japan.

出版信息

Am J Physiol. 1999 Jul;277(1):R140-6. doi: 10.1152/ajpregu.1999.277.1.R140.

Abstract

Recently, studies in our laboratory involving the use of a Gaussian white noise technique demonstrated that the transfer function from sympathetic stimulation frequency to heart rate (HR) response showed dynamic characteristics of a second-order low-pass filter. However, determinants for the characteristics remain to be established. We examined the effect of an increase in mean sympathetic stimulation frequency and that of a blockade of the neuronal uptake mechanism on the transfer function in anesthetized rabbits. We found that increasing mean sympathetic stimulation frequency from 1 to 4 Hz significantly (P < 0.01) decreased the dynamic gain of the transfer function without affecting other parameters, such as the natural frequency, lag time, or damping coefficient. In contrast, the administration of desipramine (0.3 mg/kg iv), a neuronal uptake blocking agent, significantly (P < 0.01) decreased both the dynamic gain and the natural frequency and prolonged the lag time. These results suggest that the removal rate of norepinephrine at the neuroeffector junction, rather than the amount of available norepinephrine, plays an important role in determining the low-pass filter characteristics of the HR response to sympathetic stimulation.

摘要

最近,我们实验室利用高斯白噪声技术开展的研究表明,从交感神经刺激频率到心率(HR)反应的传递函数呈现出二阶低通滤波器的动态特性。然而,这些特性的决定因素仍有待确定。我们研究了平均交感神经刺激频率增加以及神经元摄取机制阻断对麻醉兔传递函数的影响。我们发现,将平均交感神经刺激频率从1 Hz增加到4 Hz会显著(P < 0.01)降低传递函数的动态增益,而不影响其他参数,如固有频率、滞后时间或阻尼系数。相比之下,给予去甲丙咪嗪(0.3 mg/kg静脉注射),一种神经元摄取阻断剂,会显著(P < 0.01)降低动态增益和固有频率,并延长滞后时间。这些结果表明,神经效应器接头处去甲肾上腺素的清除率,而非可用去甲肾上腺素的量,在决定HR对交感神经刺激反应的低通滤波器特性中起重要作用。

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