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马匹的缰绳张力与心率变异性:一项关于经验的实验

Rein tension and heart rate variability in horses: an experiment on experience.

作者信息

Galotti Alice, Eisersiö Marie, Yngvesson Jenny, Lanatà Antonio, Maglieri Veronica, Palagi Elisabetta, Baragli Paolo

机构信息

Unit of Ethology, Department of Biology, University of Pisa, via Alessandro Volta 6, 56126, Pisa, Italy.

Department of Applied Animal Science and Welfare, Faculty of Veterinary Medicine and Animal Science, Swedish University of Agricultural Sciences, Skara, Sweden.

出版信息

J Anim Sci. 2025 Jan 4;103. doi: 10.1093/jas/skaf146.

Abstract

Studies on stress and emotions are fundamental to assessing welfare in wild and domestic animals. In this study, we experimentally investigated how different levels of rein tension affect autonomic nervous system activation and heart rate variability (HRV) in horses. We hypothesized that increased rein tension, through a learning process, would elevate sympathetic nervous system activity and HRV, and that adult horses would be less affected by stimulus administration (EXP) than young horses due to their experience. The magnitude of rein tension significantly altered the sympatho-vagal balance in horses. Both the type of equipment (bit versus halter) and the age of the horses influenced their responses. HRV frequency domain analysis showed a significant shift in sympatho-vagal balance during EXP, with values returning to baseline during the recovery period (R) (P < 0.001). Notably, during EXP, the observed increase in LF power alongside a decrease in HF power suggests a shift toward sympathetic dominance and a reduction in vagal modulation. Interestingly, the maximum rein tension did not affect the parameters used to measure these activities, suggesting the tension levels were within an acceptable range for the horses. The balance between sympathetic and parasympathetic activities improved in R with the low-frequency/high-frequency power ratio decreasing by 49.4% from EXP to the baseline condition (B) and by 37.5% from B to R, indicating stress release and increased vagal activity (P = 0.002). During EXP, we recorded an elevated heart rate, indicating heightened arousal, particularly in young horses (P = 0.005) and when using a bridle with a bit (P = 0.024). Our findings suggest that rein tension can induce mild stress, potentially enhancing the learning process. A better understanding of these effects could improve training practices for equids' welfare.

摘要

对压力和情绪的研究是评估野生动物和家畜福利的基础。在本研究中,我们通过实验调查了不同程度的缰绳张力如何影响马的自主神经系统激活和心率变异性(HRV)。我们假设,通过学习过程,增加的缰绳张力会提高交感神经系统活动和HRV,并且成年马由于其经验,受刺激给药(EXP)的影响会比幼马小。缰绳张力的大小显著改变了马的交感 - 迷走神经平衡。设备类型(衔铁与缰绳)和马的年龄都影响了它们的反应。HRV频域分析显示,在EXP期间交感 - 迷走神经平衡发生了显著变化,恢复期(R)的值恢复到基线水平(P < 0.001)。值得注意的是,在EXP期间,观察到低频功率增加而高频功率降低,这表明向交感神经主导转变且迷走神经调节减少。有趣的是,最大缰绳张力并未影响用于测量这些活动的参数,这表明张力水平在马可接受的范围内。在R期,交感和副交感神经活动之间的平衡得到改善,低频/高频功率比从EXP到基线状态(B)下降了49.4%,从B到R下降了37.5%,表明压力释放和迷走神经活动增加(P = 0.002)。在EXP期间,我们记录到心率升高,表明觉醒增强,特别是在幼马中(P = 0.005)以及使用带有衔铁的缰绳时(P = 0.024)。我们的研究结果表明,缰绳张力可诱发轻度压力,可能会增强学习过程。更好地理解这些影响可以改善针对马福利的训练方法。

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