AI Article Synopsis

  • Bayesian statistical modeling helps ecologists combine limited observed data with prior information, enhancing analysis when sample sizes are small or not fully representative.
  • The framework emphasizes the scientific learning cycle, where initial estimates are refined as new data becomes available.
  • The paper outlines a systematic approach to expert elicitation that includes defining purpose, identifying relevant knowledge, formulating statistical models, and managing uncertainties, demonstrated through examples from ecological studies.

Article Abstract

Bayesian statistical modeling has several benefits within an ecological context. In particular, when observed data are limited in sample size or representativeness, then the Bayesian framework provides a mechanism to combine observed data with other "prior" information. Prior information may be obtained from earlier studies, or in their absence, from expert knowledge. This use of the Bayesian framework reflects the scientific "learning cycle," where prior or initial estimates are updated when new data become available. In this paper we outline a framework for statistical design of expert elicitation processes for quantifying such expert knowledge, in a form suitable for input as prior information into Bayesian models. We identify six key elements: determining the purpose and motivation for using prior information; specifying the relevant expert knowledge available; formulating the statistical model; designing effective and efficient numerical encoding; managing uncertainty; and designing a practical elicitation protocol. We demonstrate this framework applies to a variety of situations, with two examples from the ecological literature and three from our experience. Analysis of these examples reveals several recurring important issues affecting practical design of elicitation in ecological problems.

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Source
http://dx.doi.org/10.1890/07-1886.1DOI Listing

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