Dynamic Approach to Space and Habitat Use Based on Biased Random Bridges
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Open Access
- 26 January 2011
- journal article
- research article
- Published by Public Library of Science (PLoS) in PLOS ONE
- Vol. 6 (1) , e14592
- https://doi.org/10.1371/journal.pone.0014592
Abstract
Although habitat use reflects a dynamic process, most studies assess habitat use statically as if an animal's successively recorded locations reflected a point rather than a movement process. By relying on the activity time between successive locations instead of the local density of individual locations, movement-based methods can substantially improve the biological relevance of utilization distribution (UD) estimates (i.e. the relative frequencies with which an animal uses the various areas of its home range, HR). One such method rests on Brownian bridges (BBs). Its theoretical foundation (purely and constantly diffusive movements) is paradoxically inconsistent with both HR settlement and habitat selection. An alternative involves movement-based kernel density estimation (MKDE) through location interpolation, which may be applied to various movement behaviours but lacks a sound theoretical basis. I introduce the concept of a biased random (advective-diffusive) bridge (BRB) and show that the MKDE method is a practical means to estimate UDs based on simplified (isotropically diffusive) BRBs. The equation governing BRBs is constrained by the maximum delay between successive relocations warranting constant within-bridge advection (allowed to vary between bridges) but remains otherwise similar to the BB equation. Despite its theoretical inconsistencies, the BB method can therefore be applied to animals that regularly reorientate within their HRs and adapt their movements to the habitats crossed, provided that they were relocated with a high enough frequency. Biased random walks can approximate various movement types at short times from a given relocation. Their simplified form constitutes an effective trade-off between too simple, unrealistic movement models, such as Brownian motion, and more sophisticated and realistic ones, such as biased correlated random walks (BCRWs), which are too complex to yield functional bridges. Relying on simplified BRBs proves to be the most reliable and easily usable way to estimate UDs from serially correlated relocations and raw activity information.Keywords
This publication has 33 references indexed in Scilit:
- Foraging theory upscaled: the behavioural ecology of herbivore movementPhilosophical Transactions Of The Royal Society B-Biological Sciences, 2010
- The home-range concept: are traditional estimators still relevant with modern telemetry technology?Philosophical Transactions Of The Royal Society B-Biological Sciences, 2010
- Resolving issues of imprecise and habitat-biased locations in ecological analyses using GPS telemetry dataPhilosophical Transactions Of The Royal Society B-Biological Sciences, 2010
- The interpretation of habitat preference metrics under use–availability designsPhilosophical Transactions Of The Royal Society B-Biological Sciences, 2010
- Correlation and studies of habitat selection: problem, red herring or opportunity?Philosophical Transactions Of The Royal Society B-Biological Sciences, 2010
- Random walk models in biologyJournal of The Royal Society Interface, 2008
- The package “adehabitat” for the R software: A tool for the analysis of space and habitat use by animalsEcological Modelling, 2006
- Mechanistic home range models capture spatial patterns and dynamics of coyote territories in YellowstoneProceedings Of The Royal Society B-Biological Sciences, 2006
- The use of space by animals as a function of accessibility and preferencePublished by Elsevier ,2002
- Random diffusion models for animal movementEcological Modelling, 1997