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Heart rate sensor validation and seasonal and diurnal variation of body temperature and heart rate in domestic sheep

机译:心率传感器验证以及家养绵羊体温和心率的季节性和昼夜变化

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Advantages of low input livestock production on large pastures, including animal welfare, biodiversity and low production costs are challenged by losses due to undetected disease, accidents and predation. Precision livestock farming (PLF) enables remote monitoring on individual level with potential for predictive warning. Body temperature (Tb) and heart rate (HR) could be used for early detection of diseases, stress or death. We tested physiological sensors in free-grazing Norwegian white sheep in Norway. Forty Tb sensors and thirty HR sensors were surgically implanted in 40 lambs and 10 ewes. Eight (27%) of the HR and eight (20%) of the Tb sensors were lost during the study period. Two Tb sensors migrated from the abdominal cavity in to the digestive system. ECG based validation of the HR sensors revealed a measurement error of 0.2 bpm (SD 5.2 bpm) and correct measurement quality was assigned in 90% of the measurements. Maximum and minimum HR confirmed by ECG was 197 bpm and 68 bpm respectively. Mean passive HR was 90 bpm (SD?=?13 bpm) for ewes and 112 bpm (SD?=?13 bpm) for lambs. Mean Tb for all animals was 39.6°C (range 36.9 to 41.8°C). Tb displayed 24-hour circadian rhythms during 80.7 % but HR only during 41.0 % of the studied period. We established baseline values and conclude that these sensors deliver good quality. For a wide agricultural use, the sensor implantation method has to be further developed and real-time communication technology added.
机译:在大型牧场上低投入牲畜生产的优势,包括动物福利,生物多样性和较低的生产成本,由于未发现的疾病,事故和掠食而遭受损失,因此受到挑战。精确的牲畜养殖(PLF)可以在单个级别进行远程监视,并有可能发出预警。体温(Tb)和心率(HR)可以用于疾病,压力或死亡的早期检测。我们在挪威的自由放牧的挪威白羊中测试了生理传感器。将40个Tb传感器和30个HR传感器通过手术植入40只羊羔和10头母羊中。在研究期间,八分(27%)的HR和八分(20%)的Tb传感器丢失。两个Tb传感器从腹腔迁移到消化系统。基于心电图的HR传感器验证显示出0.2 bpm(SD 5.2 bpm)的测量误差,并且在90%的测量中分配了正确的测量质量。心电图确认的最大和最小心率分别为197 bpm和68 bpm。母羊的平均被动心率是90 bpm(SD?=?13 bpm),羔羊的平均心率是112 bpm(SD?=?13 bpm)。所有动物的平均Tb为39.6°C(范围36.9至41.8°C)。 Tb在24.7%的昼夜节律中占80.7%,而HR仅占研究期间的41.0%。我们确定了基线值,并得出结论,这些传感器可提供良好的质量。对于广泛的农业用途,必须进一步开发传感器植入方法,并添加实时通信技术。

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