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Physiological and Behavioral Responses of Dairy Cattle to the Introduction of Robot Scrapers

机译:奶牛对机器人铲运机的引入的生理和行为反应

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摘要

Autonomous mobile robot scrapers are increasingly used in order to clean the floors on dairy farms. Given the complexity of robot scraper operation, stress may occur in cows due to unpredictability of the situation. Experiencing stress can impair animal welfare and, in the long term, the health and milk production of the cows. Therefore, this study addressed potential stress responses of dairy cattle to the robot scraper after introducing the autonomous mobile machine. Thirty-six cows in total were studied on three different farms to explore possible modifications in cardiac function, behavior, and adrenocortical activity. The research protocol on each farm consisted of four experimental periods including one baseline measurement without robot scraper operation followed by three test measurements, in which cows interacted with the robotic cleaning system. Interbeat intervals were recorded in order to calculate the heart rate variability (HRV) parameter RMSSD; behavior was observed to determine time budgets; and fecal samples were collected for analysis of the cortisol metabolites concentration. A statistical analysis was carried out using linear mixed-effects models. HRV decline immediately after the introduction of the robot scraper and modified behavior in the subsequent experimental periods indicated a stress response. The cortisol metabolites concentration remained constant. It is hypothesized that after the initial phase of decrease, HRV stabilized through the behavioral adjustments of the cows in the second part of the study. Persistent alterations in behavior gave rise to the assumption that the animals’ habituation process to the robot scraper was not yet completed. In summary, the present study illustrated that the cows showed minor signs of disturbance toward the robotic cleaning system. Thus, our findings suggest that dairy cattle can largely adjust their behavior to avoid aversive effects on animal welfare. Additional research can provide further insight into the development of the animal–machine interaction beyond the initial phase of robot scraper operation considered in this study.
机译:越来越多地使用自动移动机器人刮板来清洁奶牛场的地板。考虑到机器人铲运机操作的复杂性,由于情况的不可预测性,可能会在奶牛中产生压力。长期承受压力会损害动物的福利,并长期损害奶牛的健康和产奶量。因此,本研究解决了引入自动移动机器后奶牛对机器人刮板的潜在压力反应。在三个不同的农场对总共36头母牛进行了研究,以探索其心脏功能,行为和肾上腺皮质活动的可能改变。每个农场的研究方案包括四个实验阶段,包括一次不使用机器人刮板操作的基线测量,然后是三个测试测量,其中奶牛与机器人清洁系统互动。记录心跳间隔以计算心率变异性(HRV)参数RMSSD。观察行为以确定时间预算;收集粪便样本以分析皮质醇代谢产物的浓度。使用线性混合效应模型进行统计分析。引入机器人刮板后,HRV立即下降,并且在随后的实验期内行为发生变化,表明存在应力响应。皮质醇代谢物浓度保持恒定。假设在降低的初始阶段之后,在研究的第二部分,HRV通过奶牛的行为调节而稳定下来。行为的持续改变导致这样一种假设,即动物对机器人刮板的适应过程尚未完成。总而言之,本研究表明,母牛对机器人清洁系统的干扰很小。因此,我们的发现表明,奶牛可以在很大程度上调整其行为,以避免对动物福利产生厌恶影响。额外的研究可以提供对本研究中考虑的机器人刮板操作初始阶段以外的动物与机器交互作用的发展的进一步了解。

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