<p>Coefficients of the three most parsimonious GLM models describing the influence of environmental and road traffic factors on the probability of ungulate vehicle collisions (UVC), Roe Deer vehicle collisions (RDVC) and Wild Boar vehicle collisions (WBVC) on the roads of the study area between 2008–2011.</p
Deer–vehicle collisions (DVCs) are steadily increasing across North America. The increase is particu...
<p>These datafiles are used in analyses contained in the manuscript Tanner AL, Leroux SJ, and Saunde...
Ungulates, in particular the Central European roe deer Capreolus capreolus and the North American wh...
<p>Models estimated and ranked by Akaike Information Criteria (AICc). K is the number of estimable p...
<p>Results of Mann-Whitney’s U test for the comparisons between RDVC and WBVC with control sites. Si...
This research aimed to determine which factors are significant for modeling deer-vehicle collisions,...
Ungulate vehicle collisions (UVC) provoke serious damage, including human casualties, and a large nu...
<p>Number of DVCs for different types of roads in 2006 and 2009. Each dot represents one municipalit...
European ungulate populations are increasing both in number and distributional range, resulting in m...
<p>Number of cases of control sites, ungulate vehicle collisions (UVC), Roe Deer vehicle collisions ...
The field of road ecology centers around the impacts that roads have on an ecosystem. Impacts affect...
<p>Mean values of traffic volume (TRAF, vehicles/day) for non-collision control sites, Roe Deer vehi...
<p>Significance of the Mann-Whitney test is indicated with asterisks (* <i>P</i><0.05, ** <i>P</i><0...
The risk of deer-vehicle collisions (DVCs) is increasing in south-east Australia as populations of i...
<p>This software analyses two time series of 341,655 DVCs involving roe deer and 854,659 non-deer-re...
Deer–vehicle collisions (DVCs) are steadily increasing across North America. The increase is particu...
<p>These datafiles are used in analyses contained in the manuscript Tanner AL, Leroux SJ, and Saunde...
Ungulates, in particular the Central European roe deer Capreolus capreolus and the North American wh...
<p>Models estimated and ranked by Akaike Information Criteria (AICc). K is the number of estimable p...
<p>Results of Mann-Whitney’s U test for the comparisons between RDVC and WBVC with control sites. Si...
This research aimed to determine which factors are significant for modeling deer-vehicle collisions,...
Ungulate vehicle collisions (UVC) provoke serious damage, including human casualties, and a large nu...
<p>Number of DVCs for different types of roads in 2006 and 2009. Each dot represents one municipalit...
European ungulate populations are increasing both in number and distributional range, resulting in m...
<p>Number of cases of control sites, ungulate vehicle collisions (UVC), Roe Deer vehicle collisions ...
The field of road ecology centers around the impacts that roads have on an ecosystem. Impacts affect...
<p>Mean values of traffic volume (TRAF, vehicles/day) for non-collision control sites, Roe Deer vehi...
<p>Significance of the Mann-Whitney test is indicated with asterisks (* <i>P</i><0.05, ** <i>P</i><0...
The risk of deer-vehicle collisions (DVCs) is increasing in south-east Australia as populations of i...
<p>This software analyses two time series of 341,655 DVCs involving roe deer and 854,659 non-deer-re...
Deer–vehicle collisions (DVCs) are steadily increasing across North America. The increase is particu...
<p>These datafiles are used in analyses contained in the manuscript Tanner AL, Leroux SJ, and Saunde...
Ungulates, in particular the Central European roe deer Capreolus capreolus and the North American wh...