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首页> 外文期刊>Biological Conservation >An approach for ensuring minimum protected area size in systematic conservation planning.
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An approach for ensuring minimum protected area size in systematic conservation planning.

机译:一种在系统的保护规划中确保最小保护区大小的方法。

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One of the most efficient approaches for designing protected area (PA) networks is to use systematic conservation planning software. A number of software packages are available and all of them include a spatial cost or constraint component in their prioritisation algorithms, which allow the user to determine the level of fragmentation of the final PA system. Many conservation planners want to set minimum PA size thresholds, as small PAs are less viable and more expensive to manage, but this can only be achieved with existing software packages by repeatedly reducing the fragmentation levels of the PA system until every PA meets the threshold. Such an approach is inefficient because it increases the size of every PA, not just the smaller ones. Here we describe MinPatch, a software package developed to overcome this problem by manipulating outputs from the Marxan conservation planning software, so that every PA meets the user-defined size threshold. We then investigate the impacts of this approach with a dataset from the Maputaland Centre of Endemism, and find that using MinPatch to meet the PA thresholds is a much more efficient approach than using Marxan alone. We also show that setting a minimum PA threshold can have important effects on where new PAs are located when compared with Marxan outputs. Based on these results, we recommend that conservation planners use MinPatch whenever they want each PA in a network to meet a minimum size threshold.Digital Object Identifier http://dx.doi.org/10.1016/j.biocon.2010.06.019
机译:设计保护区(PA)网络的最有效方法之一是使用系统的保护计划软件。有许多软件包可供使用,并且所有软件包都在其优先级排序算法中包括空间成本或约束成分,这些软件包允许用户确定最终PA系统的碎片级别。许多保护规划人员希望设置最小的PA大小阈值,因为小型PA的可行性较差且管理成本更高,但这只能通过现有软件包通过反复减少PA系统的碎片级别直到每个PA都达到阈值来实现。这种方法效率不高,因为它会增加每个PA的大小,而不仅仅是较小的PA。在这里,我们介绍MinPatch,这是一个为解决此问题而开发的软件包,它通过操纵Marxan保护计划软件的输出来使每个PA都满足用户定义的大小阈值。然后,我们使用Maputaland特有性中心的数据集调查了该方法的影响,发现使用MinPatch来满足PA阈值比单独使用Marxan更为有效。我们还表明,与马克思输出相比,设置最小PA阈值可能会对新PA的位置产生重要影响。基于这些结果,我们建议保护规划人员在希望网络中的每个PA达到最小大小阈值时都使用MinPatch.Digital Object Identifier http://dx.doi.org/10.1016/j.biocon.2010.06.019

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