Hedman A E, Tahvanainen K U, Hartikainen J E, Hakumäki M O
Department of Physiology, University of Kuopio, Finland.
Acta Physiol Scand. 1995 Oct;155(2):205-14. doi: 10.1111/j.1748-1716.1995.tb09965.x.
Changes in the function of the autonomic nervous system underlying changes in heart rate variability are not fully understood. Furthermore, decreased heart rate variability has been found to be related to poor prognosis, for example, in patients with coronary artery disease. Our aim was to study how modulation in sympathetic stimulation at various frequencies is transferred into heart rate variation, and how the interaction between sympathetic and parasympathetic inputs can affect the high-frequency component of heart rate variability. We stimulated electrically cardiac sympathetic and vagal nerves in anaesthetized, vagotomized, spinal anaesthetized dogs. We controlled the frequency and magnitude of the modulation in programmed stimulation patterns and analysed the resulting changes in heart rate variability by power spectral analysis. We found that modulations in sympathetic stimulation were reflected in the high-frequency component of heart rate variability, as well as in the low- and medium-frequency components. In addition, a novel finding was that sympathetic stimulation reduced the magnitude of the high-frequency variations caused by vagal stimulation. This suggests that, although the high-frequency component of heart rate variability is mainly under parasympathetic regulation, it may also be influenced by the sympathetic nervous system.
心率变异性变化背后自主神经系统功能的改变尚未完全明确。此外,已发现心率变异性降低与不良预后相关,例如在冠状动脉疾病患者中。我们的目的是研究不同频率的交感神经刺激调节如何转化为心率变化,以及交感神经和副交感神经输入之间的相互作用如何影响心率变异性的高频成分。我们对麻醉、迷走神经切断、脊髓麻醉的犬进行心脏交感神经和迷走神经的电刺激。我们在程控刺激模式中控制调节的频率和幅度,并通过功率谱分析来分析由此产生的心率变异性变化。我们发现交感神经刺激的调节反映在心率变异性的高频成分以及低频和中频成分中。此外,一个新发现是交感神经刺激降低了迷走神经刺激引起的高频变化幅度。这表明,尽管心率变异性的高频成分主要受副交感神经调节,但它也可能受到交感神经系统的影响。