Using precision farming to improve animal welfare.

Q1 Veterinary
E. Kooij
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引用次数: 14

Abstract

Abstract Animal welfare is a multidimensional phenomenon and currently its on-farm assessment requires complex, multidimensional frameworks involving farm audits which are time-consuming, infrequent and expensive. The core principle of precision agriculture is to use sensor technologies to improve the efficiency of resource use by targeting resources to where they give a benefit. Precision livestock farming (PLF) enables farm animal management to move away from the group level to monitoring and managing individual animals. A range of precision livestock monitoring and control technologies have been developed, primarily to improve livestock production efficiency. Examples include using camera systems monitoring the movement of housed broiler chickens to detect problems with feeding systems or disease and leg-mounted accelerometers enabling the detection of the early stages of lameness in dairy cows. These systems are already improving farm animal welfare by, for example, improving the detection of health issues enabling more rapid treatment, or the detection of problems with feeding systems helping to reduce the risk of hunger. Environmental monitoring and control in buildings can improve animal comfort, and automatic milking systems facilitate animal choice and improve human-animal interactions. Although these precision livestock technologies monitor some parameters relevant to farm animal welfare (e.g. feeding, health), none of the systems yet provide the broad, multidimensional integration that is required to give a complete assessment of an animal's welfare. However, data from PLF sensors could potentially be integrated into automated animal welfare assessment systems, although further research is needed to define and validate this approach.
利用精准农业提高动物福利。
动物福利是一个多维度的现象,目前其在农场的评估需要复杂的、多维的框架,包括农场审计,这是耗时的、不频繁的和昂贵的。精准农业的核心原则是利用传感器技术提高资源利用效率,将资源定向到能产生效益的地方。精准畜牧业(PLF)使农场动物管理从群体层面转移到监测和管理单个动物。已经开发了一系列精确的牲畜监测和控制技术,主要是为了提高牲畜生产效率。例如,使用摄像系统监测圈养肉鸡的运动,以发现喂养系统或疾病的问题,以及使用安装在腿上的加速计检测奶牛的早期跛行。这些系统已经改善了农场动物福利,例如,通过改进对健康问题的发现,使治疗更加迅速,或者通过发现喂养系统的问题,帮助减少饥饿的风险。建筑物的环境监测和控制可以改善动物的舒适度,自动挤奶系统可以促进动物的选择,改善人与动物的互动。虽然这些精密家畜技术监测与农场动物福利有关的一些参数(如喂养、健康),但没有一个系统能够提供全面评估动物福利所需的广泛、多维度的整合。然而,来自PLF传感器的数据有可能集成到自动动物福利评估系统中,尽管需要进一步的研究来定义和验证这种方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CAB Reviews: Perspectives in Agriculture, Veterinary Science, Nutrition and Natural Resources
CAB Reviews: Perspectives in Agriculture, Veterinary Science, Nutrition and Natural Resources Agricultural and Biological Sciences-Agricultural and Biological Sciences (all)
CiteScore
2.00
自引率
0.00%
发文量
41
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