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Modeling Distribution of Dispersal Distances in Male White‐Tailed Deer
Author(s) -
DIEFENBACH DUANE R.,
LONG ERIC S.,
ROSENBERRY CHRISTOPHER S.,
WALLINGFORD BRET D.,
SMITH DAVID R.
Publication year - 2008
Publication title -
the journal of wildlife management
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.94
H-Index - 111
eISSN - 1937-2817
pISSN - 0022-541X
DOI - 10.2193/2007-436
Subject(s) - biological dispersal , odocoileus , ecology , biology , gene flow , statistics , mathematics , demography , population , biochemistry , sociology , gene , genetic variation
Dispersal distances and their distribution pattern are important to understanding such phenomena as disease spread and gene flow, but oftentimes dispersal characteristics are modeled as a fixed trait for a given species. We found that dispersal distributions differ for spring and autumn dispersals of yearling male white‐tailed deer ( Odocoileus virginianus ) but that combined data can be adequately modeled based on a log‐normal distribution. We modeled distribution of dispersal distances from 3 distinct populations in Pennsylvania and Maryland, USA, based on the relationship between percent forest cover and mean dispersal distance and the relationship between mean and variance of dispersal distances. Our results suggest distributions of distances for dispersing yearling male white‐tailed deer can be modeled by simply measuring a readily obtained landscape metric, percent forest cover, which could be used to create generalized spatially explicit disease or gene flow models.

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