首页> 外文期刊>American Journal of Physiology >Cardiac vagal modulation of heart rate during prolonged submaximal exercise in animals with healed myocardial infarctions: effects of training.
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Cardiac vagal modulation of heart rate during prolonged submaximal exercise in animals with healed myocardial infarctions: effects of training.

机译:心肌梗死愈合动物长时间次极大运动期间心率的心脏迷走神经调节:训练的影响。

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摘要

The present study investigated the effects of long-duration exercise on heart rate variability as a marker of cardiac vagal tone (VT). Heart rate variability (time series analysis) was measured in mongrel dogs (n = 24) with healed myocardial infarctions during 1 h of submaximal exercise (treadmill running at 6.4 km/h at 10 grade). Long-duration exercise provoked a significant (ANOVA, all P < 0.01, means +/- SD) increase in heart rate (1st min, 165.3 +/- 15.6 vs. last min, 197.5 +/- 21.5 beats/min) and significant reductions in high frequency (0.24 to 1.04 Hz) power (VT: 1st min, 3.7 +/- 1.5 vs. last min, 1.0 +/- 0.9 ln ms(2)), R-R interval range (1st min, 107.9 +/- 38.3 vs. last min, 28.8 +/- 13.2 ms), and R-R interval SD (1st min, 24.3 +/- 7.7 vs. last min 6.3 +/- 1.7 ms). Because endurance exercise training can increase cardiac vagal regulation, the studies were repeated after either a 10-wk exercise training (n = 9) or a 10-wk sedentary period (n = 7). After training was completed, long-duration exercise elicited smaller increases in heart rate (pretraining: 1st min, 156.0 +/- 13.8 vs. last min, 189.6 +/- 21.9 beats/min; and posttraining: 1st min, 149.8 +/- 14.6 vs. last min, 172.7 +/- 8.8 beats/min) and smaller reductions in heart rate variability (e.g., VT, pretraining: 1st min, 4.2 +/- 1.7 vs. last min, 0.9 +/- 1.1 ln ms(2); and posttraining: 1st min, 4.8 +/- 1.1 vs. last min, 2.0 +/- 0.6 ln ms(2)). The response to long-duration exercise did not change in the sedentary animals. Thus the heart rate increase that accompanies long-duration exercise results, at least in part, from reductions in cardiac vagal regulation. Furthermore, exercise training attenuated these exercise-induced reductions in heart rate variability, suggesting maintenance of a higher cardiac vagal activity during exercise in the trained state.
机译:本研究调查了长时间运动对心率变异性的影响 [作为心脏迷走神经张力 (VT) 的标志物]。在 1 小时的次最大运动(跑步机以 6.4 公里/小时的速度以 10% 的坡度运行)中测量心率变异性(时间序列分析)在狗 (n = 24) 中治愈心肌梗塞。长时间的运动导致心率(第 1 分钟,165.3 +/- 15.6 vs. 上一分钟,197.5 +/- 21.5 次/分钟)显着增加(方差分析,所有 P < 0.01,平均 +/- SD),R-R 间期范围(第 1 分钟,107.9 +/- 38.3 vs. 上一分钟, 28.8 +/- 13.2 ms)和 R-R 间期 SD(第 1 分钟,24.3 +/- 7.7 与上一分钟 6.3 +/- 1.7 ms)。由于耐力运动训练可以增加心脏迷走神经调节,因此在 10 周运动训练 (n = 9) 或 10 周久坐不动 (n = 7) 后重复这些研究。训练完成后,长时间的运动导致心率增加幅度较小(训练前:第 1 分钟,156.0 +/- 13.8 vs. 上一分钟,189.6 +/- 21.9 次/分钟;训练后:第 1 分钟,149.8 +/- 14.6 vs. 上一分钟,172.7 +/- 8.8 次/分钟)和心率变异性的较小减少(例如,VT,训练前:第 1 分钟,4.2 +/- 1.7 vs. 上一分钟,0.9 +/- 1.1 ln ms(2); 和训练后: 第 1 分钟,4.8 +/- 1.1 与最后一分钟相比,2.0 +/- 0.6 ln ms(2))。久坐动物对长时间运动的反应没有改变。因此,伴随长期运动的心率增加至少部分是由于心脏迷走神经调节的减少。此外,运动训练减弱了这些运动引起的心率变异性的降低,表明在训练状态下运动期间保持较高的心脏迷走神经活动。

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