Kuwahara M, Hiraga A, Kai M, Tsubone H, Sugano S
Department of Comparative Pathophysiology, Graduate School of Agriculture and Life Sciences, University of Tokyo, Japan.
Equine Vet J Suppl. 1999 Jul(30):178-80. doi: 10.1111/j.2042-3306.1999.tb05213.x.
We studied the influence of training on autonomic nervous function in the horse. For this purpose, Holter electrocardiogram (ECG) was recorded before and after training from 24 Thoroughbred horses (2-year-olds) and autonomic nervous function was evaluated by the power spectral analysis of heart rate (HR) variability. We obtained HR, low-frequency (LF) power, high-frequency (HF) power, and LF/HF ratio from recording. We set LF at 0.01-0.07 Hz and HF at 0.07-0.6 Hz. The HF power is thought to reflect primarily parasympathetic nervous function. Both the sympathetic and parasympathetic nervous systems have been shown to contribute to the LF power. The LF/HF ratio is considered as an index of the cardiac sympathovagal balance. Second degree atrioventricular blocks were found in the ECG of 3 and 5 horses before and after the training period, respectively. Ventricular premature depolarisations were detected in a horse after the training period. Heart rate decreased at night. The lowest HR values had a tendency to appear in the early morning. Both the LF and HF power tended to be higher at night. However, the LF/HF ratio was almost the same throughout the day. The HR was significantly decreased by training. Although the LF power and LF/HF ratio were significantly increased, the HF power was not changed by training. These results suggest that parasympathetic nervous activity may be fully activated even before training in this species.
我们研究了训练对马自主神经功能的影响。为此,对24匹纯种马(2岁)在训练前后进行动态心电图(ECG)记录,并通过心率(HR)变异性的功率谱分析来评估自主神经功能。我们从记录中获取了HR、低频(LF)功率、高频(HF)功率以及LF/HF比值。我们将LF设定在0.01 - 0.07Hz,HF设定在0.07 - 0.6Hz。HF功率主要被认为反映副交感神经功能。交感神经和副交感神经系统均已被证明对LF功率有影响。LF/HF比值被视为心脏交感迷走神经平衡的指标。在训练期前后的ECG中,分别有3匹马和5匹马出现二度房室传导阻滞。在训练期后的一匹马中检测到室性早搏去极化。夜间心率下降。最低的HR值倾向于出现在清晨。LF和HF功率在夜间均倾向于更高。然而,LF/HF比值在一整天中几乎相同。训练使HR显著降低。尽管LF功率和LF/HF比值显著增加,但HF功率并未因训练而改变。这些结果表明,在这个物种中,即使在训练前副交感神经活动可能也已被充分激活。