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Author Kostova, T.; Carlsen, T.; Kercher, J. url  doi
openurl 
  Title Individual-based spatially-explicit model of an herbivore and its resource: the effect of habitat reduction and fragmentation Type Journal Article
  Year 2004 Publication Comptes Rendus Biologies Abbreviated Journal Compt. Rend. Biol.  
  Volume 327 Issue 3 Pages 261-276  
  Keywords complexity; population dynamics; self-organization; population waves; individual-based models  
  Abstract We present an individual-based, spatially-explicit model of the dynamics of a small mammal and its resource. The life histories of each individual animal are modeled separately. The individuals can have the status of residents or wanderers and belong to behaviorally differing groups of juveniles or adults and males or females. Their territory defending and monogamous behavior is taken into consideration. The resource, green vegetation, grows depending on seasonal climatic characteristics and is diminished due to the herbivore's grazing. Other specifics such as a varying personal energetic level due to feeding and starvation of the individuals, mating preferences, avoidance of competitors, dispersal of juveniles, as a result of site overgrazing, etc., are included in the model. We determined model parameters from real data for the species Microtus ochrogaster (prairie vole). The simulations are done for a case of an enclosed habitat without predators or other species competitors. The goal of the study is to find the relation between size of habitat and population persistence. The experiments with the model show the populations go extinct due to severe overgrazing, but that the length of population persistence depends on the area of the habitat as well as on the presence of fragmentation. Additionally, the total population size of the vole population obtained during the simulations exhibits yearly fluctuations as well as multi-yearly peaks of fluctuations. This dynamics is similar to the one observed in prairie vole field studies. To cite this article: T. Kostova et al., C. R. Biologies 327 (2004).  
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  Call Number refbase @ user @ Serial 801  
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Author Croneya, C.C. doi  openurl
  Title Group size and cognitive processes Type Journal Article
  Year 2007 Publication Applied Animal Behaviour Science Abbreviated Journal Appl. Anim. Behav. Sci.  
  Volume 103 Issue 3-4 Pages 15-228  
  Keywords Group size; Social complexity; Social learning; Cognitive processes  
  Abstract Animal group sizes may exert important effects on various cognitive mechanisms. Group

size is believed to exert pressures on fundamental brain structures that correlate with the

increased social demands placed on animals living in relatively large, complex and dynamic

social organizations. There is strong experimental evidence connecting social complexity,

social learning and development of other cognitive abilities in a broad range of wild and

domesticated animal species. In particular, group size seems to have significant effects on

animals? abilities to derive concrete and abstract relationships. Here, we review the literature

pertaining to cognitive processes and behaviours of various animal species relative to group

size, with emphasis on social learning. It is suggested that understanding the relationship

between group size and cognition in animals may yield practical animal management

benefits, such as housing and conservation strategies, and may also have implications for

improved animal welfare.
 
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  Corporate Author Ruth C. Newberryb Thesis  
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  Call Number refbase @ user @ Serial 277  
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