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Pilot study to monitor body temperature of dairy cows with a rumen bolus

机译:瘤胃弹丸监测奶牛体温的先导研究

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A bolus containing a mote (temperature sensor, processor and radio) was placed in the rumen of a fistulated cow to monitor body temperature. Rumen temperature was measured every minute and stored in the internal buffer of the mote. The measured temperature was also transmitted to a base station by the mote every minute. A relay mote mounted on the cows' left front leg assisted transmission of the information from rumen to the base station. Cow behaviour affected the success rate of data transmission. The base station received more than 50% of the transmitted data when the cow was standing. Success rate was lower than 40% when the cow was lying down. Rumen temperature varied diurnally with night-time temperatures higher than day-time temperatures. Drinking events resulted in distinct decreases of the rumen temperature. It is concluded that for the application of internal sensor motes wireless communication through the body and living environment of the animal works but improvements are possible. Research should also focus on the interpretation of sensor data on mote level for optimizing data recording frequency and transmission of data to dairy management practice.
机译:将装有微粒(温度传感器,处理器和收音机)的大剂量药丸放在有瘘口的母牛的瘤胃中,以监测体温。每分钟测量瘤胃温度,并将其存储在微粒的内部缓冲液中。每分钟,测得的温度也由微粒传送到基站。安装在奶牛左前腿上的中继微粒有助于将信息从瘤胃传输到基站。奶牛的行为影响了数据传输的成功率。奶牛站着时,基站接收了超过50%的传输数据。母牛躺下时,成功率低于40%。瘤胃温度昼夜变化,夜间温度高于白天温度。饮酒事件导致瘤胃温度明显下降。结论是,对于内部传感器微粒的应用,通过动物的身体和生活环境进行无线通信,但是可以进行改进。研究还应集中在微粒水平的传感器数据解释上,以优化数据记录频率并将数据传输至乳业管理实践。

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