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ASAS-NANP 研讨会:动物营养中的数学建模:限制和广泛精准畜牧生产的机遇与挑战。

ASAS-NANP Symposium: Mathematical Modeling in Animal Nutrition: Opportunities and challenges of confined and extensive precision livestock production.

机构信息

Department of Animal Science, South Dakota State University, Rapid City, SD 57702, USA.

Institut Agro, PEGASE, INRAE, 35590 Saint Gilles, France.

出版信息

J Anim Sci. 2022 Jun 1;100(6). doi: 10.1093/jas/skac160.

Abstract

Modern animal scientists, industry, and managers have never faced a more complex world. Precision livestock technologies have altered management in confined operations to meet production, environmental, and consumer goals. Applications of precision technologies have been limited in extensive systems such as rangelands due to lack of infrastructure, electrical power, communication, and durability. However, advancements in technology have helped to overcome many of these challenges. Investment in precision technologies is growing within the livestock sector, requiring the need to assess opportunities and challenges associated with implementation to enhance livestock production systems. In this review, precision livestock farming and digital livestock farming are explained in the context of a logical and iterative five-step process to successfully integrate precision livestock measurement and management tools, emphasizing the need for precision system models (PSMs). This five-step process acts as a guide to realize anticipated benefits from precision technologies and avoid unintended consequences. Consequently, the synthesis of precision livestock and modeling examples and key case studies help highlight past challenges and current opportunities within confined and extensive systems. Successfully developing PSM requires appropriate model(s) selection that aligns with desired management goals and precision technology capabilities. Therefore, it is imperative to consider the entire system to ensure that precision technology integration achieves desired goals while remaining economically and managerially sustainable. Achieving long-term success using precision technology requires the next generation of animal scientists to obtain additional skills to keep up with the rapid pace of technology innovation. Building workforce capacity and synergistic relationships between research, industry, and managers will be critical. As the process of precision technology adoption continues in more challenging and harsh, extensive systems, it is likely that confined operations will benefit from required advances in precision technology and PSMs, ultimately strengthening the benefits from precision technology to achieve short- and long-term goals.

摘要

现代动物科学家、行业和管理者从未面临过如此复杂的世界。精准畜牧业技术改变了封闭式养殖场的管理方式,以实现生产、环境和消费者目标。由于缺乏基础设施、电力、通信和耐用性,精准技术的应用在牧场等广泛系统中受到限制。然而,技术的进步已经帮助克服了许多这些挑战。在畜牧业领域,对精准技术的投资正在增长,这就需要评估与实施相关的机会和挑战,以加强畜牧业生产系统。在这篇综述中,精准畜牧业和数字畜牧业是在一个逻辑和迭代的五步过程中进行解释的,该过程成功地整合了精准牲畜测量和管理工具,强调了精准系统模型(PSM)的必要性。这个五步过程是实现从精准技术中获得预期效益和避免意外后果的指南。因此,精准畜牧业和建模示例的综合以及关键案例研究有助于突出封闭式和广泛系统中过去的挑战和当前的机会。成功开发 PSM 需要适当的模型选择,使其与期望的管理目标和精准技术能力保持一致。因此,必须考虑整个系统,以确保精准技术的集成实现预期目标,同时保持经济和管理上的可持续性。使用精准技术实现长期成功需要下一代动物科学家获得更多技能,以跟上技术创新的快速步伐。建立劳动力能力和研究、行业和管理者之间的协同关系将是至关重要的。随着精准技术在更具挑战性和恶劣的广泛系统中的采用进程继续推进,封闭式操作将受益于精准技术和 PSM 所需的进步,最终加强精准技术的效益,以实现短期和长期目标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/82c0/9171331/765c53386ca9/skac160_fig1.jpg

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