Variety is the spice of life for animal movement

Scientists at Royal Holloway, University of London and the University of Leicester have discovered animals searching for food do not stick to a complicated pattern of movement as previously thought but tend to wander about randomly.

It was previously believed that when searching for food, move in very peculiar way called a Lévy flight where they move small distances most of the time, but occasionally move a very long distance.

This idea was based on studies in which many animals, like albatrosses or sharks, were tracked. However scientists have been analysing video records of aphids, small sap-sucking insects to find out how they move and have discovered that they wander about randomly, much like inanimate molecules move, and some tend to walk much more than others. The study is published in the journal .

Dr Alla Mashanova, from the School of Biological Sciences at Royal Holloway, said: "It was the large variation between individuals – with some moving very little and some moving a lot – that previously created the impression of the Lévy flight."

The researchers recorded the length of movement by all the aphids and used this data to build two mathematical models to carry out a more detailed statistical analysis.

Dr Sergei Petrovskii, from the Department of Mathematics at Leicester says: "It is amazing how very simple mathematical models can sometimes be used to explain very complicated phenomena."

The researchers say understanding how animals move is important, for instance, for hunting, to design nature reserves and to predict pest outbreaks and understand the spread of diseases.

Professor Vincent Jansen from the School of Biological Sciences at Royal Holloway said: "Understanding individual variation is crucial for interpreting the collective movement patterns of animals. This research will open the way to better understand animal search and behaviour and work out how it has evolved."

Citation: Variety is the spice of life for animal movement (2011, May 9) retrieved 29 November 2022 from
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