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首页> 外文期刊>Italian journal of animal science >Modelling growth and reproduction of crayfish species under a re-circulation system
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Modelling growth and reproduction of crayfish species under a re-circulation system

机译:在再循环系统下模拟小龙虾物种的生长和繁殖

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Abstract The aim of this study was to develop a series of simulation population models, using Mathlab software, for finding the optimal layout and management regime during the growth-out and reproduction phases of two freshwater crayfish species reared under a re-circulating system. The two species were Astacus astacus widely distributed in central Europe and Cherax quadricarinatus cultured in Australia, Asia and South America. Models were used to quantify the most important factors which are involved in growth and reproduction processes of a crayfish species (density, biomass, size class of animals, growth rate, survival, fecundity and water temperature). An age-structured matrix describing rates of survival and fecundity for each age was used. Statistical analysis was performed with the SAS package. Parameters of simulation models were compared and validated with historical data from the Department of Animal Science, University of Udine and literature articles. Sensitivity analyses were conducted to determine which inputs in each model contributed most to the output variability. Overall, simulated models were able to integrate previously collected data and produce expected productive and reproductive outputs. Population models are useful tools in order to optimize the management of resources during the production chain.
机译:摘要本研究的目的是使用Mathlab软件开发一系列模拟种群模型,以找到在再循环系统下饲养的两种淡水小龙虾品种在生长和繁殖阶段的最佳布局和管理方式。这两个物种分别是分布在中欧的Astacus astacus和在澳大利亚,亚洲和南美洲养殖的Cherax quadricarinatus。使用模型来量化与小龙虾物种的生长和繁殖过程有关的最重要因素(密度,生物量,动物的大小分类,生长速度,存活率,繁殖力和水温)。使用年龄结构矩阵描述每个年龄段的存活率和繁殖力。使用SAS软件包进行统计分析。比较了仿真模型的参数,并用乌迪内大学动物科学系的历史数据和文献进行了验证。进行了敏感性分析,以确定每个模型中哪些输入对输出变异性的贡献最大。总体而言,模拟模型能够整合以前收集的数据,并产生预期的生产和生殖产出。人口模型是有用的工具,可用于优化生产链中的资源管理。

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