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首页> 外文期刊>Biodiversity and Conservation >Extended statistical approaches to modelling spatial pattern in biodiversity in northeast New South Wales. I. Species-level modelling
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Extended statistical approaches to modelling spatial pattern in biodiversity in northeast New South Wales. I. Species-level modelling

机译:新南威尔士州东北部生物多样性空间格局建模的扩展统计方法。一,物种层面的建模

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Statistical modelling of biological survey data in relation to remotely mapped environmental variables is a powerful technique for making more effective use of sparse data in regional conservation planning. Application of such modelling to planning in the northeast New South Wales ( NSW) region of Australia represents one of the most extensive and longest running case studies of this approach anywhere in the world. Since the early 1980s, statistical modelling has been used to extrapolate distributions of over 2300 species of plants and animals, and a wide variety of higher-level communities and assemblages. These modelled distributions have played a pivotal role in a series of major land-use planning processes, culminating in extensive additions to the region's protected area system. This paper provides an overview of the analytical methodology used to model distributions of individual species in northeast NSW, including approaches to: ( 1) developing a basic integrated statistical and geographical information system (GIS) framework to facilitate automated fitting and extrapolation of species models; ( 2) extending this basic approach to incorporate consideration of spatial autocorrelation, land-cover mapping and expert knowledge; and ( 3) evaluating the performance of species modelling, both in terms of predictive accuracy and in terms of the effectiveness with which such models function as general surrogates for biodiversity.
机译:与远程映射的环境变量有关的生物调查数据的统计建模是一种在区域保护规划中更有效地利用稀疏数据的强大技术。在澳大利亚东北部新南威尔士州(NSW)区域的规划中应用这种建模方法,代表了这种方法在世界上最广泛,运行时间最长的案例研究之一。自1980年代初以来,统计建模已被用于推断2300多种动植物以及各种更高级别的社区和集合的分布。这些模型化的分布在一系列主要的土地利用规划过程中发挥了关键作用,最终为该地区的保护区系统增加了新的内容。本文概述了用于模拟新南威尔士州东北部单个物种分布的分析方法,包括以下方法:(1)开发基本的综合统计和地理信息系统(GIS)框架,以促进物种模型的自动拟合和外推; (2)扩展该基本方法,以纳入对空间自相关,土地覆盖图和专家知识的考虑; (3)从预测准确性和有效性方面评估物种建模的性能,这些模型可作为生物多样性的一般替代品。

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