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首页> 外文期刊>Remote Sensing >A Spatially Explicit, Multi-Criteria Decision Support Model for Loggerhead Sea Turtle Nesting Habitat Suitability: A Remote Sensing-Based Approach
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A Spatially Explicit, Multi-Criteria Decision Support Model for Loggerhead Sea Turtle Nesting Habitat Suitability: A Remote Sensing-Based Approach

机译:Loggerhead海龟筑巢栖息地适应性的空间显式,多准则决策支持模型:基于遥感的方法

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Nesting habitat for the federally endangered loggerhead sea turtle ( Caretta caretta ) were designated as critical in 2014 for beaches along the Atlantic Coast and Gulf of Mexico. Nesting suitability is routinely determined based on site specific information. Given the expansive geographic location of the designated critical C. caretta nesting habitat and the highly dynamic coastal environment, understanding nesting suitability on a regional scale is essential for monitoring the changing status of the coast as a result of hydrodynamic forces and maintenance efforts. The increasing spatial resolution and temporal frequency of remote sensing data offers the opportunity to study this dynamic environment on a regional scale. Remote sensing data were used as input into the spatially-explicit, multi-criteria decision support model to determine nesting habitat suitability. Results from the study indicate that the morphological parameters used as input into the model are well suited to provide a regional level approach with the results from the optimized model having sensitivity and detection prevalence values greater than 80% and the detection rate being greater than 70%. The approach can be implemented in various geographic locations to better communicate priorities and evaluate management strategies as a result of changes to the dynamic coastal environment.
机译:联邦濒临灭绝的海龟(Caretta caretta)的筑巢栖息地在2014年被指定为大西洋沿岸和墨西哥湾海滩的重要栖息地。嵌套的适合性通常是根据特定地点的信息确定的。鉴于指定的关键C. caretta筑巢栖息地的地理位置广泛,以及高度动态的沿海环境,因此了解区域规模的筑巢适应性对于监测由于水动力和维护工作而导致的海岸变化状况至关重要。遥感数据的空间分辨率和时空频率的提高为研究这种动态环境提供了机会。遥感数据被用作空间明确的多标准决策支持模型的输入,以确定嵌套栖息地的适宜性。研究结果表明,用作模型输入的形态参数非常适合于提供区域级方法,优化后的模型的结果具有灵敏度和检测患病率大于80%,检测率大于70% 。可以在各种地理位置实施该方法,以更好地传达优先级并评估动态沿海环境变化带来的管理策略。

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