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Use of novel sensors combining local positioning and acceleration to measure feeding behavior differences associated with lameness in dairy cattle

机译:结合本地定位和加速度的新型传感器的使用来测量与奶牛la行有关的进食行为差异

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摘要

Time constraints for dairy farmers are an important factor contributing to the under-detection of lameness, resulting in delayed or missed treatment of lame cows within many commercial dairy herds. Hence, a need exists for flexible and affordable cow-based sensor systems capable of monitoring behaviors such as time spent feeding, which may be affected by the onset of lameness. In this study a novel neck-mounted mobile sensor system that combines local positioning and activity (acceleration) was tested and validated on a commercial UK dairy farm. Position and activity data were collected over 5 consecutive days for 19 high-yield dairy cows (10 lame, 9 nonlame) that formed a subset of a larger (120 cow) management group housed in a freestall barn. A decision tree algorithm that included sensor-recorded position and accelerometer data was developed to classify a cow as doing 1 of 3 categories of behavior: (1) feeding, (2) not feeding, and (3) out of pen for milking. For each classified behavior the mean number of bouts, the mean bout duration, and the mean total duration across all bouts was determined on a daily basis, and also separately for the time periods in between milking (morning = 0630-1300 h; afternoon = 1430-2100 h; night = 2230-0500 h). A comparative analysis of the classified cow behaviors was undertaken using a Welch t-test with Benjarnini-Hochberg post-hoc correction under the null hypothesis of no differences in the number or duration of behavioral bouts between the 2 test groups of lame and nonlame cows. Analysis showed that mean total daily feeding duration was significantly lower for lame cows compared with non-lame cows. Behavior was also affected by time of day with significantly lower mean total duration of feeding and higher total duration of nonfeeding in the afternoons for lame cows compared with nonlame cows. The results demonstrate how sensors that measure both position and acceleration are capable of detecting differences in feeding behavior that may be associated with lameness. Such behavioral differences could be used in the development of predictive algorithms for the prompt detection of lameness as part of a commercially viable automated behavioral monitoring system.
机译:奶农的时间限制是导致la足检测不足的重要因素,导致许多商业奶牛场对delayed足牛的治疗延迟或错过。因此,需要一种灵活且价格适中的基于牛的传感器系统,该传感器系统能够监视行为,例如花费的喂食时间,这可能会受到la行的影响。在这项研究中,结合了本地定位和活动(加速度)功能的新型颈部安装式移动传感器系统已在英国一家商业奶牛场进行了测试和验证。连续5天收集了19头高产奶牛(10 me脚,9 non皮)的位置和活动数据,这些奶牛形成了一个饲养在自由棚舍中的较大(120头)管理小组的子集。开发了包括传感器记录的位置和加速度计数据的决策树算法,以将母牛分类为以下三种行为中的一种:(1)喂养,(2)不喂养和(3)用笔挤奶。对于每种分类的行为,每天都会确定一次平均回合次数,平均回合持续时间以及所有回合的平均总持续时间,并且还分别确定挤奶之间的时间间隔(早上= 0630-1300 h;下午= 1430-2100小时;晚上= 2230-0500小时)。使用Welch t检验和Benjarnini-Hochberg事后校正对奶牛的分类行为进行了比较分析,这是在两个假设的test脚和非lam脚奶牛行为发作次数或持续时间没有差异的零假设下进行的。分析表明,与非lam牛相比,la牛的平均每日总喂食时间要短得多。行为也受到一天中不同时间的影响,与非lam牛相比,total牛的平均进食总时间显着降低,下午的不进食总时间明显更长。结果表明,同时测量位置和加速度的传感器如何能够检测可能与la行有关的进食行为差异。这种行为差异可用于开发预测算法,以迅速检测出me行情况,并将其作为商业上可行的自动行为监控系统的一部分。

著录项

  • 来源
    《Journal of dairy science》 |2018年第7期|6310-6321|共12页
  • 作者单位

    Writtle Univ Coll, Lordship Rd, Chelmsford CM1 3RR, Essex, England;

    Univ Nottingham, Sch Vet Med & Sci, Sutton Bonington Campus, Loughborough LE12 5RD, England;

    Univ Essex, Dept Math Sci, Wivenhoe Pk, Colchester CO4 3SQ, Essex, England;

    Bos Int Ltd, Smugglers Lane, Wimbourne BH21 2RY, Dorset, England;

    Writtle Univ Coll, Lordship Rd, Chelmsford CM1 3RR, Essex, England;

    Univ Exeter, Coll Life & Environm Sci, Ctr Res Anim Behav, Exeter EX4 4QG, Devon, England;

    Writtle Univ Coll, Lordship Rd, Chelmsford CM1 3RR, Essex, England;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    local positioning; 3D accelerometer; lameness; feeding behavior; dairy cow;

    机译:局部定位;3D加速度计;花边;进食行为;奶牛;
  • 入库时间 2022-08-18 04:02:58

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