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首页> 外文期刊>Bulletin of experimental biology and medicine >Role of sympathetic and parasympathetic nervous systems in heart rate regulation in cats.
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Role of sympathetic and parasympathetic nervous systems in heart rate regulation in cats.

机译:交感神经和副交感神经系统在猫心率调节中的作用。

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The effects of atropine and beta-adrenoceptor blockers on mean HR, wave structure of the cardiac rhythm, and chronotropic reaction to noise stress were examined in cats. Atropine (0.5 mg/kg) increased the mean HR and significantly decreased the spectrum power of HF, LF, and VLF oscillations. The decrease in HF power was most pronounced, which enhanced LF/HF ratio. Propranolol (0.5 mg/kg) decreased the mean HR and slightly increased the power of HF, LF, and VLF oscillations. Atenolol (2 mg/kg) exerted similar but more pronounced effects. beta-Adrenoceptor blockers increased HF power to a greater extent than LF and VLF power, which led to a decrease in LF/HF ratio. Atropine markedly decreased the chronotropic reaction to stress. beta-Adrenoceptor blockers produced no effect on the amplitude of this reaction, but accelerated restoration of initial HR. It is established that the changes in power spectrum of HR and the phase reflex reactions in cats are mediated by parasympathetic influences; the sympathetic system is involved only in the control of mean HR, probably in response to the level of animal activity. The changes in LF/HF ratio during blockade of sympathetic and parasympathetic systems are caused by opposite influences of these systems on HF oscillations, but not by hypothetic "sympathetic" and "parasympathetic" nature of LF and HF oscillations of the heart rhythm.
机译:在猫中检查了阿托品和β-肾上腺素受体阻滞剂对平均HR,心律的波动结构以及对噪声压力的变时反应的影响。阿托品(0.5 mg / kg)增加了平均心率,并显着降低了HF,LF和VLF振荡的频谱功率。 HF功率的降低最为明显,从而提高了LF / HF比率。普萘洛尔(0.5 mg / kg)降低平均HR,并略微增加HF,LF和VLF振荡的功率。阿替洛尔(2 mg / kg)发挥相似但更明显的作用。与LF和VLF功率相比,β-肾上腺素受体阻滞剂增加的HF功率更大,导致LF / HF比率降低。阿托品显着降低了对压力的变时反应。 β-肾上腺素能受体阻滞剂对该反应的幅度没有影响,但可加快初始HR的恢复。已确定猫的HR功率谱变化和相反射反应是由副交感神经介导的。交感神经系统仅参与平均HR的控制,可能是对动物活动水平的响应。交感神经系统和副交感神经系统受阻期间LF / HF比的变化是由这些系统对HF振动的相反影响引起的,而不是由心律的LF和HF振动的假想“同情”和“副交感”性质引起的。

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