Literature DB >> 26812666

Modeling interdependent animal movement in continuous time.

Mu Niu1, Paul G Blackwell1, Anna Skarin2.   

Abstract

This article presents a new approach to modeling group animal movement in continuous time. The movement of a group of animals is modeled as a multivariate Ornstein Uhlenbeck diffusion process in a high-dimensional space. Each individual of the group is attracted to a leading point which is generally unobserved, and the movement of the leading point is also an Ornstein Uhlenbeck process attracted to an unknown attractor. The Ornstein Uhlenbeck bridge is applied to reconstruct the location of the leading point. All movement parameters are estimated using Markov chain Monte Carlo sampling, specifically a Metropolis Hastings algorithm. We apply the method to a small group of simultaneously tracked reindeer, Rangifer tarandus tarandus, showing that the method detects dependency in movement between individuals.
© 2016, The International Biometric Society.

Entities:  

Keywords:  Animal movement; Bayesian inference; Multivariate Ornstein Uhlenbeck process; Ornstein Uhlenbeck bridge; Stochastic differential equation

Mesh:

Year:  2016        PMID: 26812666     DOI: 10.1111/biom.12454

Source DB:  PubMed          Journal:  Biometrics        ISSN: 0006-341X            Impact factor:   2.571


  4 in total

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Authors:  Justin M Calabrese; Christen H Fleming; William F Fagan; Martin Rimmler; Petra Kaczensky; Sharon Bewick; Peter Leimgruber; Thomas Mueller
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3.  Using Hidden Markov Models to characterise intermittent social behaviour in fish shoals.

Authors:  Nikolai W F Bode; Michael J Seitz
Journal:  Naturwissenschaften       Date:  2017-12-27

Review 4.  A role for lakes in revealing the nature of animal movement using high dimensional telemetry systems.

Authors:  Robert J Lennox; Samuel Westrelin; Allan T Souza; Marek Šmejkal; Milan Říha; Marie Prchalová; Ran Nathan; Barbara Koeck; Shaun Killen; Ivan Jarić; Karl Gjelland; Jack Hollins; Gustav Hellstrom; Henry Hansen; Steven J Cooke; David Boukal; Jill L Brooks; Tomas Brodin; Henrik Baktoft; Timo Adam; Robert Arlinghaus
Journal:  Mov Ecol       Date:  2021-07-28       Impact factor: 3.600

  4 in total

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