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Hypothesis-driven and field-validated method to prioritize fragmentation mitigation efforts in road projects

机译:假设驱动和现场验证的方法优先考虑道路项目中的碎片缓解工作

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The active field of connectivity conservation has provided numerous methods to identify wildlife corridors with the aim of reducing the ecological effect of fragmentation. Nevertheless, these methods often rely on untested hypotheses of animal movements, usually fail to generate fine-scale predictions of road crossing sites, and do not allow managers to prioritize crossing sites for implementing road fragmentation mitigation measures. We propose a new method that addresses these limitations. We illustrate this method with data from southwestern Gabon (central Africa). We used stratified random transect surveys conducted in two seasons to model the distribution of African forest elephant (Loxodonta cyclotis), forest buffalo (Syncerus caffer nanus), and sitatunga (Tragelaphus spekii) in a mosaic landscape along a 38.5 km unpaved road scheduled for paving. Using a validation data set of recorded crossing locations, we evaluated the performance of three types of models (local suitability, local least-cost movement, and regional least-cost movement) in predicting actual road crossings for each species, and developed a unique and flexible scoring method for prioritizing road sections for the implementation of road fragmentation mitigation measures. With a data set collected in <10 weeks of fieldwork, the method was able to identify seasonal changes in animal movements for buffalo and sitatunga that shift from a local exploitation of the site in the wet season to movements through the study site in the dry season, whereas elephants use the entire study area in both seasons. These three species highlighted the need to use species-and season-specific modeling of movement. From these movement models, the method ranked road sections for their suitability for implementing fragmentation mitigation efforts, allowing managers to adjust priority thresholds based on budgets and management goals. The method relies on data that can be obtained in a period compatible with environmental impact assessment constraints, and is flexible enough to incorporate other potential movement models and scoring criteria. This approach improves upon available methods and can help inform prioritization of road and other linear infrastructure segments that require impact mitigation methods to ensure long-term landscape connectivity.
机译:连通性保护的活跃领域提供了许多方法来识别野生动物走廊,以减少碎片化的生态影响。但是,这些方法通常依赖于未经检验的动物运动假说,通常无法生成对道路交叉口站点的精细预测,并且不允许管理人员为实施道路分散缓解措施而优先考虑交叉路口站点。我们提出了一种解决这些局限性的新方法。我们用加蓬西南部(中部非洲)的数据说明了这种方法。我们使用了在两个季节中进行的分层随机样带调查,以模拟沿计划铺设的38.5公里未铺砌道路上的马赛克景观中的非洲森林象(Loxodonta cyclotis),森林水牛(Syncerus caffer nanus)和satatunga(Tragelaphus spekii)的分布。 。使用记录的交叉点位置的验证数据集,我们评估了三种类型的模型(局部适用性,局部最小成本运动和区域最小成本运动)在预测每种物种的实际道路交叉口方面的性能,并开发了独特且灵活的评分方法,用于优先设置路段,以实施缓解道路碎裂的措施。利用在不到10周的田野调查中收集到的数据集,该方法能够确定水牛和西塔通加的动物运动的季节性变化,这些变化从潮湿季节对该地点的本地开采转变为干旱季节整个研究地点的运动,而大象在两个季节都使用整个研究区域。这三个物种强调需要使用特定物种和特定季节的运动模型。从这些运动模型中,该方法对路段是否适合实施碎片缓解措施进行了排名,从而使管理人员可以根据预算和管理目标调整优先级阈值。该方法依赖于可以在与环境影响评估约束兼容的时期内获得的数据,并且足够灵活,可以合并其他潜在的运动模型和评分标准。此方法改进了可用方法,可以帮助告知需要减轻影响方法以确保长期景观连通性的道路和其他线性基础设施部分的优先级。

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