Comparison of three expert elicitation methods for logistic regression on predicting the presence of the threatened brush-tailed rock-wallaby Petrogale penicillata

Rebecca A. O'Leary, Samantha Low Choy, Justine V. Murray, Mary Kynn, Robert Denham, Tara G. Martin, Kerrie Mengersen

Research output: Contribution to journalArticlepeer-review

46 Citations (Scopus)

Abstract

Numerous expert elicitation methods have been suggested for generalised linear models (GLMs). This paper compares three relatively new approaches to eliciting expert knowledge in a form suitable for Bayesian logistic regression. These methods were trialled on two experts in order to model the habitat suitability of the threatened Australian brush-tailed rock-wallaby (Petrogale penicillata). The first elicitation approach is a geographically assisted indirect predictive method with a geographic information system (GIS) interface. The second approach is a predictive indirect method which uses an interactive graphical tool. The third method uses a questionnaire to elicit expert knowledge directly about the impact of a habitat variable on the response. Two variables (slope and aspect) are used to examine prior and posterior distributions of the three methods. The results indicate that there are some similarities and dissimilarities between the expert informed priors of the two experts formulated from the different approaches. The choice of elicitation method depends on the statistical knowledge of the expert, their mapping skills, time constraints, accessibility to experts and funding available. This trial reveals that expert knowledge can be important when modelling rare event data, such as threatened species, because experts can provide additional information that may not be represented in the dataset. However care must be taken with the way in which this information is elicited and formulated.

Original languageEnglish
Pages (from-to)379-398
Number of pages20
JournalEnvironmetrics
Volume20
Issue number4
DOIs
Publication statusPublished - Jun 2009

Keywords

  • Bayesian statistical modelling
  • Expert elicitation
  • Habitat suitability modelling
  • Logistic regression
  • Threatened species

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