Related Experiment Video
Updated: Jun 13, 2026

Deploying Community Scientists to Conduct Nondestructive Genetic Sampling of Rare Butterfly Populations
Published on: October 28, 2022
Seeking a second opinion: uncertainty in disease ecology
Brett T McClintock1, James D Nichols, Larissa L Bailey
1USGS Patuxent Wildlife Research Center, Laurel, MD 20708, USA. brett.mcclintock@gmail.com <brett.mcclintock@gmail.com>
Abstract:
Analytical methods accounting for imperfect detection are often used to facilitate reliable inference in population and community ecology. We contend that similar approaches are needed in disease ecology because these complicated systems are inherently difficult to observe without error. For example, wildlife disease studies often designate individuals, populations, or spatial units to states (e.g., susceptible, infected, post-infected), but the uncertainty associated with these state assignments remains largely ignored or unaccounted for. We demonstrate how recent developments incorporating observation error through repeated sampling extend quite naturally to hierarchical spatial models of disease effects, prevalence, and dynamics in natural systems. A highly pathogenic strain of avian influenza virus in migratory waterfowl and a pathogenic fungus recently implicated in the global loss of amphibian biodiversity are used as motivating examples. Both show that relatively simple modifications to study designs can greatly improve our understanding of complex spatio-temporal disease dynamics by rigorously accounting for uncertainty at each level of the hierarchy.
Related Concept Videos
Conservation of Small Populations
Conservation of Declining Populations
Confounding in Epidemiological Studies
Causality in Epidemiology
Habitat Fragmentation
Gene Flow
