Smith Jacqueline L, Vanzant Eric S, Carter Craig N, Jackson Carney B
Am J Vet Res. 2015 Aug;76(8):739-44. doi: 10.2460/ajvr.76.8.739.
To test a unique electronic ear tag designed to collect movement data to determine whether physical activity of sick steers differed from that of healthy steers.
206 steers.
Physical activity in 2 groups of steers during November and December of 2010 (101 steers; the tag of 1 steer failed, and thus that steer was removed from the study, which resulted in data for 100 steers) and 2011 (105 steers) was monitored with an electronic ear tag device with an on-board triple-axis accelerometer. The accelerometer recorded motion in all 3 axes in the form of counts per minute. A radio-frequency transmitter on the ear tag delivered serial packets of motion data to a local server. An algorithm was developed to analyze the activity data to determine whether this technique could be used to assess health status with high accuracy.
Steers that became sick had significantly fewer activity counts (approx 25% fewer), compared with the activity counts of steers that remained healthy the entire time.
In this study, automated detection of health status in growing cattle was feasible through remote monitoring of animal activity. Early identification of sick animals should lead to improved health outcomes, increased marketability, and improved animal well-being and help to minimize the use of antimicrobials that could contribute to resistant bacteria.
测试一种专门设计用于收集运动数据的独特电子耳标,以确定患病阉牛的身体活动是否与健康阉牛不同。
206头阉牛。
在2010年11月和12月(101头阉牛;1头阉牛的耳标出现故障,因此该阉牛被排除在研究之外,最终得到100头阉牛的数据)和2011年(105头阉牛),使用带有内置三轴加速度计的电子耳标设备对两组阉牛的身体活动进行监测。加速度计以每分钟计数的形式记录所有三个轴上的运动。耳标上的射频发射器将运动数据的串行数据包传输到本地服务器。开发了一种算法来分析活动数据,以确定该技术是否可用于高精度评估健康状况。
与始终保持健康的阉牛的活动计数相比,生病的阉牛的活动计数明显更少(约少25%)。
在本研究中,通过远程监测动物活动来自动检测生长牛的健康状况是可行的。早期识别患病动物应能改善健康结果、提高市场适销性、改善动物福利,并有助于尽量减少可能导致耐药菌产生的抗菌药物的使用。