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Tropical Livestock Units: Re-evaluating a Methodology

机译:热带牲畜单位:重新评估方法

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The dynamic between humans, livestock and wildlife is evolving owing to growth in populations, a finite global landmass, and shifting climatic conditions. This change comes with certain benefits in terms of food security, nutrition and livelihoods as livestock populations increase, but is not without risk. The role of livestock in infectious disease emergence, environmental degradation, and the development of antimicrobial resistance is becoming more apparent. An understanding of these risks and development of mitigation tactics, especially in low- and middle-income countries where the pace of change is most rapid, is increasingly based on comprehensive models and tools built to map livestock populations at the global, regional or national level. Translation of model estimates into evidence is often underpinned by a quantification of livestock biomass to support policy development and implementation. This paper discusses the application of the Tropical Livestock Unit in the context of measuring biomass. It examines the established method of calculation, designating all cattle a standard weight of 175kg, and compares it to two proposed alternatives. In doing so, the potential to refine estimates of biomass in low and middle-income countries is explored, though this concept could be extrapolated to higher income economies as well. Publicly available data from six countries in sub-Saharan Africa was utilised to demonstrate how breed liveweight, herd structures, and growth rates have the potential to dramatically alter the estimates of cattle biomass in each country. Establishing standardised data collection procedures to capture this information on a regular basis would grant a better understanding of the true nature of livestock populations, aid in the development of superior disease prevention and response measures, bolster food security initiatives through improving livestock production, and inform the intelligent management of shared ecosystems to improve conservation and biodiversity.
机译:由于人口的增长,有限的全球陆地和换气条件,人类,牲畜和野生动物之间的动态正在不断发展。这种变化在粮食安全,营养和生计方面具有某些好处,因为牲畜种群增加,但不是没有风险。牲畜在传染病出苗,环境降解和抗菌性抗性发展中的作用变得更加明显。了解减缓策略的这些风险和发展,特别是在变革步伐最迅速的低收入和中等收入国家,越来越多地基于在全球,区域或国家层面映射畜牧业人口的综合模型和工具。模型估计转化为证据的翻译通常是通过量化牲畜生物量来支持政策制定和实施的基础。本文讨论了热带牲畜单元在测量生物质背景下的应用。它检查了既定的计算方法,指定所有牛的标准重量为175千克,并将其与两个提出的替代品进行比较。在这样做时,探讨了在低收入和中等收入国家的生物质估计的潜力,尽管这一概念也可以推断到更高的收入经济体。来自撒哈拉以南非洲的六个国家的公开数据被利用来展示活重,畜群结构和增长率如何有可能大大改变每个国家的牛生物量的估计。建立规范化的数据收集程序,以定期捕获此信息将更好地了解畜牧人口的真实本质,通过改善牲畜生产,促进粮食安全举措,并通知共享生态系统的智能管理,提高保护和生物多样性。

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