...
首页> 外文期刊>The Journal of Applied Ecology >Addressing challenges when studying mobile or episodic species: Hierarchical Bayes estimation of occupancy and use
【24h】

Addressing challenges when studying mobile or episodic species: Hierarchical Bayes estimation of occupancy and use

机译:当研究移动或应对挑战情景性物种:层次贝叶斯估计的占用和使用

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Understanding the distribution and ecology of episodic or mobile species requires us to address multiple potential biases, including spatial clustering of survey locations, imperfect detectability and partial availability for detection. These challenges have been addressed individually by previous modelling approaches, but there is currently no extension of the occupancy modelling framework that accounts for all three problems while estimating occupancy (Ψ), availability for detection (i.e. use; θ) and detectability (P). 2.We describe a hierarchical Bayes multi-scale occupancy model that simultaneously estimates site occupancy, use, and detectability, while accounting for spatial dependence through a state-space approach based on repeated samples at multiple spatial or temporal scales. As an example application, we analyse the spatiotemporal distribution of the Louisiana waterthrush Seiurus motacilla with respect to catchment size and availability of potential prey based on data collected along Appalachian streams of southern West Virginia, USA. In spring 2009, single observers recorded detections of Louisiana waterthrush (henceforth, waterthrush) within 75 m of point-count stations (i.e. sites) during four 5-min surveys per site, with each survey broken into 1-min intervals. 3.Waterthrushes were widely distributed (Ψ range: 0.6-1.0) and were regularly using (θ range: 0.4-0.6) count circles along forested mountain streams. While accounting for detection biases and spatial dependence among nearby sampling sites, waterthrushes became more common as catchment area increased, and they became more available for detection as the per cent of the benthic macroinvertebrates that were of the orders Ephemeroptera, Plecoptera or Trichoptera (EPT) increased. These results lend some support to the hypothesis that waterthrushes are influenced by instream conditions as mediated by watershed size and benthic macroinvertebrate community composition. 4. Synthesis and applications. Although several available modelling techniques provide estimates of occupancy at one scale, hierarchical Bayes multi-scale occupancy modelling provides estimates of distribution at two scales simultaneously while accounting for detection biases and spatial dependencies. Hierarchical Bayes multi-scale occupancy models therefore hold significant potential for addressing complex conservation threats that operate at a landscape scale (e.g. climate change) and probably influence species distributions over multiple scales.
机译:理解的分布与生态情景或移动物种需要我们的地址多个潜在的偏见,包括空间聚类的调查地点,不完美的检测能力和部分可用性检测。分别由以前的建模方法,但目前还没有扩展的入住率建模框架,占这三个问题,而估计占用(Ψ)、可用性检测(即使用;检测能力(P)。2。贝叶斯多尺度入住率模型同时估计网站占用、使用和检测能力,占空间通过基于状态方程方法的依赖在多个空间或重复样本时间尺度。分析的时空分布路易斯安那州waterthrush Seiurus motacilla对流域的大小和可用性基于收集的数据以及潜在的猎物阿巴拉契亚的西维吉尼亚州南部,美国。路易斯安那州waterthrush检测(从今以后,waterthrush)的分值在75站(即网站)在四个5分钟每网站调查,每个调查分为(间隔。3.0.6 - -1.0),经常使用(θ范围:0.4 - -0.6)数圈沿着森林的山流。和附近的采样之间的空间相关性网站,waterthrushes变得更加普遍集水面积增加,他们变得更加用于检测的每分钱底栖大型无脊椎动物的订单蜉蝣,Plecoptera或Trichoptera(EPT)增加。waterthrushes的假说影响生态基条件所介导流域大小和底栖大型无脊椎动物社区组成。应用程序。建模技术提供的估计居住在一个规模、层次贝叶斯多尺度入住率造型提供了分布在两个尺度的估计同时,占检测偏见和空间相关性。贝叶斯多尺度因此占用模型解决复杂的巨大的潜力景观保护操作的威胁规模(如气候变化)和可能影响物种分布在多个鳞片。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号