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Spatial capture–recapture analysis of artificial cover board survey data reveals small scale spatial variation in slow-worm Anguis fragilis density

机译:人工盖板调查数据的空间捕获-捕获分析表明慢蠕虫脆弱类Anguis密度呈小范围的空间变化

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摘要

Vague and/or ad hoc definitions of the area sampled in monitoring efforts are common, and estimates of ecological state variables (e.g. distribution and abundance) can be sensitive to such specifications. The uncertainty in population metrics due to data deficiencies, vague definitions of space and lack of standardized protocols is a major challenge for monitoring, managing and conserving amphibian and reptile populations globally. This is especially true for the slow-worm (Anguis fragilis), a cryptic and fossorial legless lizard; uncertainty about spatial variation in density has hindered conservation efforts (e.g. in translocation projects). Spatial capture–recapture (SCR) methods can be used to estimate density while simultaneously and explicitly accounting for space and individual movement. We use SCR to analyse mark–recapture data of the slow-worm that were collected using artificial cover objects (ACO). Detectability varied among ACO grids and through the season. Estimates of slow-worm density varied across ACO grids (13, 45 and 46 individuals ha−1, respectively). The estimated 95% home range size of slow-worms was 0.38 ha. Our estimates provide valuable information about slow-worm spatial ecology that can be used to inform future conservation management.
机译:监测工作中采样区域的模糊和/或临时性定义很常见,生态状态变量(例如分布和丰度)的估计值可能对此类规范敏感。由于数据不足,空间定义模糊以及缺乏标准化协议而导致的人口指标不确定性,是全球范围内监测,管理和保护两栖和爬行动物种群的主要挑战。对于慢蠕虫(脆弱的Anguis)尤其如此,它是一种隐伏的和窝窝的无腿蜥蜴。密度空间变化的不确定性阻碍了保护工作(例如,在易位项目中)。空间捕获-捕获(SCR)方法可用于估计密度,同时同时明确地说明空间和个体移动。我们使用SCR分析使用人工掩盖对象(ACO)收集的慢蠕虫的标记捕获数据。在ACO网格之间以及整个季节中,可检测性各不相同。慢蠕虫密度的估计值在ACO网格上有所不同(分别为13、45和46个人ha -1 )。据估计,慢蠕虫的95%家庭范围大小为0.38公顷。我们的估计提供了有关慢虫空间生态学的宝贵信息,可用于为将来的保护管理提供信息。

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