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J Theor Biol ; 248(1): 212-24, 2007 Sep 07.
Article in English | MEDLINE | ID: mdl-17561123

ABSTRACT

We use a correlated random walk model in two dimensions to simulate the movement of the slug parasitic nematode Phasmarhabditis hermaphrodita in homogeneous environments. The model incorporates the observed statistical distributions of turning angle and speed derived from time-lapse studies of individual nematode trails. We identify strong temporal correlations between the turning angles and speed that preclude the case of a simple random walk in which successive steps are independent. These correlated random walks are appropriately modelled using an anomalous diffusion model, more precisely using a fractional sub-diffusion model for which the associated stochastic process is characterised by strong memory effects in the probability density function.


Subject(s)
Computer Simulation , Rhabditoidea/physiology , Animals , Models, Biological , Movement/physiology , Stochastic Processes
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