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A unified likelihood-based approach for estimating population size in continuous-time capture-recapture experiments with frailty

机译:一种统一的基于可能性的方法,用于评估脆弱的连续时间捕获 - 重新捕获实验中的种群大小

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摘要

A unified likelihood-based approach is proposed to estimate population size for a continuous-time closed capture-recapture experiment with frailty. The frailty model allows the capture intensity to vary with individual heterogeneity, time, and behavioral response. The individual heterogeneity effect is modeled as being gamma distributed. The first-capture and recapture intensities are assumed to be in constant proportion but may otherwise vary arbitrarily through time. The approach is also extended to capture-recapture experiments with possible random removals. Simulation studies are conducted to examine the performance of the proposed estimators. By asymptotic efficiency comparison and simulation studies, the proposed estimators have been shown to be superior to their discrete-time model counterparts in genuine continuous-time capture-recapture experiments. © 2006, The International Biometric Society.
机译:提出了一种基于似然的统一方法来估计具有脆弱性的连续时间封闭式捕获-捕获实验的种群规模。脆弱模型允许捕获强度随个体异质性,时间和行为反应而变化。个体异质性效应被建模为伽马分布。假定第一次捕获和重新捕获的强度呈恒定比例,但否则可能随时间任意变化。该方法还扩展到了可能随机删除的捕获-捕获实验。进行模拟研究以检查所提出的估计量的性能。通过渐近效率比较和模拟研究,在真实的连续时间捕获-捕获实验中,所提出的估计量已显示出优于其离散时间模型对应物。 ©2006,国际生物识别学会。

著录项

  • 作者

    Yip PSF; Xi L; Watson R;

  • 作者单位
  • 年度 2007
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  • 原文格式 PDF
  • 正文语种 eng
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