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Original Articles

From A to B, randomly: a point-to-point random trajectory generator for animal movement

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Pages 912-934 | Received 12 Aug 2014, Accepted 14 Dec 2014, Published online: 10 Mar 2015

References

  • Bartumeus, F., et al., 2010. Fishery discards impact on seabird movement patterns at regional scales. Current Biology: CB, 20 (3), 215–222. doi:10.1016/j.cub.2009.11.073
  • Benhamou, S., 2006. Detecting an orientation component in animal paths when the preferred direction is individual-dependent. Ecological Society of America, 87 (2), 518–528.
  • Benhamou, S. and Adler, F.R., 2011. Dynamic approach to space and habitat use based on biased random bridges. PLoS ONE, 6 (1), e14592. doi:10.1371/journal.pone.0014592
  • Biro, D., et al., 2007. Pigeons combine compass and landmark guidance in familiar route navigation. Proceedings of the National Academy of Sciences of the United States of America, 104 (18), 7471–7476. doi:10.1073/pnas.0701575104
  • Block, B.A., et al, 2011. Tracking apex marine predator movements in a dynamic ocean. Nature, 475 (7354), 86–90. doi:10.1038/nature10082
  • Börger, L., Dalziel, B.D., and Fryxell, J.M., 2008. Are there general mechanisms of animal home range behaviour? A review and prospects for future research. Ecology Letters, 11 (6), 637–650. doi:10.1111/j.1461-0248.2008.01182.x
  • Brinkhoff, T., 2002. A framework for generating network-based moving objects. GeoInformatica, 6 (2), 153–180. doi:10.1023/A:1015231126594
  • Bullard, F., 1991. Estimating the home range of an animal: a Brownian bridge approach. Thesis (PhD). University of North Carolina at Chapel Hill.
  • Codling, E.A., Bearon, R.N., and Thorn, G.J., 2010. Diffusion about the mean drift location in a biased random walk. Ecology, 91 (10), 3106–3113. doi:10.1890/09-1729.1
  • Codling, E.A., Plank, M.J., and Benhamou, S., 2008. Random walk models in biology. Journal of the Royal Society, Interface/The Royal Society, 5 (25), 813–834. doi:10.1098/rsif.2008.0014
  • Elveback, L.R., et al., 1976. An Influenza simulation model for immunization studies. American Journal of Epidemiology, 103 (2), 152–165.
  • Esa, S., ed., 1982. Conceptual issues in ecology. Berlin: Springer.
  • Hägerstrand, T., 1970. What about people in regional science? Papers in Regional Science, 24 (1), 7–24.
  • Harris, K.J. and Blackwell, P.G., 2013. Flexible continuous-time modelling for heterogeneous animal movement. Ecological Modelling, 255, 29–37. doi:10.1016/j.ecolmodel.2013.01.020
  • Horne, J.S., et al., 2007. Analyzing animal movements using Brownian bridges. Ecology, 88 (9), 2354–2363. doi:10.1890/06-0957.1
  • Humphries, N.E., et al., 2010. Environmental context explains Lévy and Brownian movement patterns of marine predators. Nature, 465 (7301), 1066–1069. doi:10.1038/nature09116
  • Joubert, W., Fourie, P., and Axhausen, K., 2010. Large-scale agent-based combined traffic simulation of private cars and commercial vehicles. Transportation Research Record, 2168, 24–32. doi:10.3141/2168-04
  • Kuijpers, B., et al., 2010. Anchor uncertainty and space-time prisms on road networks. International Journal of Geographical Information Science, 24 (8), 1223–1248. doi:10.1080/13658810903321339
  • Kuijpers, B., Grimson, R., and Othman, W., 2011. An analytic solution to the alibi query in the space–time prisms model for moving object data. International Journal of Geographical Information Science, 25 (2), 293–322. doi:10.1080/13658810902967397
  • Lohmann, K.J., et al., 2004. Animal behaviour: geomagnetic map used in sea-turtle navigation. Nature, 428 (April), 909–910. doi:10.1038/428909a
  • Miller, H.J., 1991. Modelling accessibility using space-time prism concepts within geographical information systems. International Journal of Geographical Information Systems, 5 (3), 287–301. doi:10.1080/02693799108927856
  • Miller, H.J., 1999. Measuring space-time accessibility benefits within transportation networks: basic theory and computational procedures. Geographical Analysis, 31 (1), 1–26. doi:10.1111/j.1538-4632.1999.tb00408.x
  • Nathan, R., et al., 2008. A movement ecology paradigm for unifying organismal movement research. PNAS, 105 (49), 19052–19059. doi:10.1073/pnas.0800375105
  • Pelekis, N., et al., 2013. Hermoupolis: a trajectory generator for simulating generalized mobility patterns. In: Machine learning and knowledge discovery in databases. Berlin: Springer, 659–662.
  • Perony, N., et al., 2012. How random is social behaviour? Disentangling social complexity through the study of a wild house mouse population. PLoS Computational Biology, 8 (11), e1002786. doi:10.1371/journal.pcbi.1002786
  • Song, Y. and Miller, H.J., 2014. Simulating visit probability distributions within planar space-time prisms. International Journal of Geographical Information, 28, 1.
  • Technitis, G. and Weibel, R., 2012. A hybrid geospatial simulation model for moving objects [online]. In: Proceedings of AutoCarto 2012: the international symposium on Automated Cartography, 16–18 September, Columbus, OH. Gaithersburg, MD: Cartography and Geographic Information Society. Available from: http://www.cartogis.org/docs/proceedings/2012/Technitis_Weibel_AutoCarto2012.pdf [Accessed 15 October 2014].
  • Torrens, P.M., et al., 2012. An extensible simulation environment and movement metrics for testing walking behavior in agent-based models. Computers, Environment and Urban Systems, 36 (1), 1–17. doi:10.1016/j.compenvurbsys.2011.07.005
  • Wentz, E.A., Campbell, A.F., and Houston, R., 2003. A comparison of two methods to create tracks of moving objects: linear weighted distance and constrained random walk. International Journal of Geographical Information Science, 17 (7), 623–645. doi:10.1080/1365881031000135492

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