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In this paper we propose a discrete space (i.e., grid-based) model for dispersal processes in continuous space.
This was not the case (keeping all underlying effect in the model for dispersal distance: year × density treatment: χ = 0.282, df = 1, p = 0.595; for probability to leave: χ = 0.003, df = 1, p = 0.956).
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Through a better taxonomical and biogeographical knowledge, nematodes can be used as model taxa for dispersal models for non-pelagic organisms within the deep-sea or between the shelf and slope.
It also represents an example for the development of similar models for dispersal-limited mammals with large area needs, as well as other species associated with late-successional forests in northern California.
We used an existing individual-based, spatially explicit model for the dispersal of Eurasian lynx (Lynx lynx).
With a simple model for maize dispersal, we obtained a set of solutions with similar geographical origins.
We developed a spatio-temporal model for the dispersal of food odors and aggregation pheromone and the responses of a fruit fly population to these infochemicals.
The approach incorporated the results of a model for wind dispersal, along with genetic population analyses of boll weevils caught in the eradication zone and at proposed source sites, and profile analysis of pollen collected on/in the insects [ 48].
[97] Simulations have, for example, used a wide range of variables to test between a unique origin model and a multiregional model for human dispersals out of Africa and find in favor of a unique origin [98].
Additionally, based on our extensive sampling of the Horn of Africa, Arabian Peninsula, and South Asia, we find no evidence for the stepping-stone model of dispersal across the Arabian Peninsula for any African (Amietophrynus) or Asian (Duttaphrynus) bufonid species (Figs. 2- 6), as no species of Amietophrynus are found in Iran or Pakistan.
In particular, a new result is the analytical condition for local invasibility versus non-invasibility (i.e. evolutionary stability) of a convergence stable strategy for the island model of dispersal.
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