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First investigations to refine video-based IR thermography as a non-invasive tool to monitor the body temperature of calves

机译:首次研究以改进基于视频的红外热成像技术作为监视小牛体温的非侵入性工具

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摘要

In this study, a video-based infrared camera (IRC) was investigated as a tool to monitor the body temperature of calves. Body surface temperatures were measured contactless using videos from an IRC fixed at a certain location in the calf feeder. The body surface temperatures were analysed retrospectively at three larger areas: the head area (in front of the forehead), the body area (behind forehead) and the area of the entire animal. The rectal temperature served as a reference temperature and was measured with a digital thermometer at the corresponding time point. A total of nine calves (Holstein-Friesians, 8 to 35 weeks old) were examined. The average maximum temperatures of the area of the entire animal (mean +/- SD: 37.66 +/- 0.90 degrees C) and the head area (37.64 +/- 0.86 degrees C) were always higher than that of the body area (36.75 +/- 1.06 degrees C). The temperatures of the head area and of the entire animal were very similar. However, the maximum temperatures as measured using IRC increased with an increase in calf rectal temperature. The maximum temperatures of each video picture for the entire visible body area of the calves appeared to be sufficient to measure the superficial body temperature. The advantage of the video-based IRC over conventional IR single-picture cameras is that more than one picture per animal can be analysed in a short period of time. This technique provides more data for analysis. Thus, this system shows potential as an indicator for continuous temperature measurements in calves.
机译:在这项研究中,基于视频的红外摄像机(IRC)被研究为监测小牛体温的工具。使用固定在小腿喂食器中某个位置的IRC视频,通过非接触式测量体表温度。回顾性分析了三个较大区域的体表温度:头部区域(前额前面),身体区域(前额后面)和整个动物的面积。直肠温度用作参考温度,并在相应时间点用数字温度计测量。总共检查了九头犊牛(荷斯坦-弗里斯兰人,年龄为8至35周)。整个动物区域(平均+/- SD:37.66 +/- 0.90摄氏度)和头部区域(37.64 +/- 0.86摄氏度)的平均最高温度始终高于身体区域(36.75摄氏度) +/- 1.06摄氏度)。头部区域和整个动物的温度非常相似。但是,使用IRC测量的最高温度随着小腿直肠温度的升高而升高。对于小腿的整个可见身体区域,每个视频图片的最高温度似乎足以测量表面温度。基于视频的IRC优于传统的IR单像相机的优势在于,每只动物可以在短时间内分析一张以上的图片。该技术为分析提供了更多数据。因此,该系统显示出潜力,可作为犊牛连续温度测量的指标。

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