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Author Kruska, D. url  doi
openurl 
  Title Mammalian domestication and its effect on brain structure and behavior Type Book Chapter
  Year 1988 Publication Intelligence and Evolutionary Biology Abbreviated Journal  
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  Publisher Springer-Verlag Place of Publication New York Editor Jerison, H.J.; Jerison, I.  
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  Notes Approved no  
  Call Number Equine Behaviour @ team @ Kruska1988 Serial 6232  
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Author Clutton-Brock, J. openurl 
  Title Origins of the dog: domestication and early history Type Book Chapter
  Year 1995 Publication The Domestic Dog: Its Evolution, Behaviour and Interactions with People Abbreviated Journal  
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  Publisher Cambridge University Press Place of Publication Cambridge Editor Serpell, J.A.  
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  Notes Approved no  
  Call Number Equine Behaviour @ team @ Clutton-Brock1995 Serial 6247  
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Author Van Horik, J.; Clayton, N.; Emery, N. openurl 
  Title Convergent evolution of cognition in Corvids, Apes and other animals Type Book Chapter
  Year 2012 Publication Oxford Handbook of Comparative Evolutionary Psychology Abbreviated Journal  
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  Publisher Oxford University Press Place of Publication New York Editor Vonk, J.; Shackelford, T.  
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  Notes Approved no  
  Call Number Equine Behaviour @ team @ Van Horik2012 Serial 6284  
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Author Zeder, M.A. openurl 
  Title Pathways to animal domestication Type Book Chapter
  Year 2011 Publication Harlan II: Biodiversity in Agriculture: Domestication, Evolution, and Sustainability Abbreviated Journal  
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  Publisher University of California Place of Publication Davis Editor Damania, A.; Gepts, P.  
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  Call Number Equine Behaviour @ team @ Zeder2011 Serial 6316  
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Author Amodio, P.; Boeckle, M.; Schnell, A.K.; Ostojic, L.; Fiorito, G.; Clayton, N.S. url  doi
openurl 
  Title Grow Smart and Die Young: Why Did Cephalopods Evolve Intelligence? Type Journal Article
  Year 2018 Publication Trends in Ecology & Evolution Abbreviated Journal Trends. Ecol. Evol.  
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  Abstract Intelligence in large-brained vertebrates might have evolved through independent, yet similar processes based on comparable socioecological pressures and slow life histories. This convergent evolutionary route, however, cannot explain why cephalopods developed large brains and flexible behavioural repertoires: cephalopods have fast life histories and live in simple social environments. Here, we suggest that the loss of the external shell in cephalopods (i) caused a dramatic increase in predatory pressure, which in turn prevented the emergence of slow life histories, and (ii) allowed the exploitation of novel challenging niches, thus favouring the emergence of intelligence. By highlighting convergent and divergent aspects between cephalopods and large-brained vertebrates we illustrate how the evolution of intelligence might not be constrained to a single evolutionary route.  
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  Publisher Elsevier Place of Publication Editor  
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  ISSN 0169-5347 ISBN Medium  
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  Notes doi: 10.1016/j.tree.2018.10.010 Approved no  
  Call Number Equine Behaviour @ team @ Serial 6508  
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Author Hofmeester, T.R.; Cromsigt, J.P.G.M.; Odden, J.; Andrén, H.; Kindberg, J.; Linnell, J.D.C. url  doi
openurl 
  Title Framing pictures: A conceptual framework to identify and correct for biases in detection probability of camera traps enabling multi-species comparison Type Journal Article
  Year 2019 Publication Ecology and Evolution Abbreviated Journal Ecol Evol  
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  Keywords animal characteristics; detectability; environmental variables; mammal monitoring; reuse of data; trail camera  
  Abstract Abstract Obtaining reliable species observations is of great importance in animal ecology and wildlife conservation. An increasing number of studies use camera traps (CTs) to study wildlife communities, and an increasing effort is made to make better use and reuse of the large amounts of data that are produced. It is in these circumstances that it becomes paramount to correct for the species- and study-specific variation in imperfect detection within CTs. We reviewed the literature and used our own experience to compile a list of factors that affect CT detection of animals. We did this within a conceptual framework of six distinct scales separating out the influences of (a) animal characteristics, (b) CT specifications, (c) CT set-up protocols, and (d) environmental variables. We identified 40 factors that can potentially influence the detection of animals by CTs at these six scales. Many of these factors were related to only a few overarching parameters. Most of the animal characteristics scale with body mass and diet type, and most environmental characteristics differ with season or latitude such that remote sensing products like NDVI could be used as a proxy index to capture this variation. Factors that influence detection at the microsite and camera scales are probably the most important in determining CT detection of animals. The type of study and specific research question will determine which factors should be corrected. Corrections can be done by directly adjusting the CT metric of interest or by using covariates in a statistical framework. Our conceptual framework can be used to design better CT studies and help when analyzing CT data. Furthermore, it provides an overview of which factors should be reported in CT studies to make them repeatable, comparable, and their data reusable. This should greatly improve the possibilities for global scale analyses of (reused) CT data.  
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  Publisher John Wiley & Sons, Ltd Place of Publication Editor  
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  ISSN 2045-7758 ISBN Medium  
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  Notes doi: 10.1002/ece3.4878 Approved no  
  Call Number Equine Behaviour @ team @ Serial 6518  
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Author Byrne R.W. openurl 
  Title The evolution of intelligence Type Book Chapter
  Year 1994 Publication Behaviour and Evolution Abbreviated Journal  
  Volume (up) Issue Pages 223-265  
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  Publisher Cambridge University Press Place of Publication Cambridge,UK Editor P.J.B. Slater and T.R. Halliday  
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  Call Number Equine Behaviour @ team @ Serial 6566  
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Author Karenina, K.; Giljov, A.; Ingram, J.; Rowntree, V.J.; Malashichev, Y. url  doi
openurl 
  Title Lateralization of mother�infant interactions in a diverse range of mammal species Type Journal Article
  Year 2017 Publication Nature Ecology & Evolution Abbreviated Journal Nat Ecol Evol  
  Volume (up) 1 Issue Pages 0030 Ep -  
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  Abstract Left-cradling bias is a distinctive feature of maternal behaviour in humans and great apes, but its evolutionary origin remains unknown. In 11 species of marine and terrestrial mammal, we demonstrate consistent patterns of lateralization in mother�infant interactions, indicating right hemisphere dominance for social processing. In providing clear evidence that lateralized positioning is beneficial in mother�infant interactions, our results illustrate a significant impact of lateralization on individual fitness.  
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  Call Number Equine Behaviour @ team @ Serial 6040  
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Author Houston, A.I.; McNamara, J.M. doi  openurl
  Title Fighting for food: a dynamic version of the Hawk-Dove game Type Journal Article
  Year 1988 Publication Evolutionary Ecology Abbreviated Journal Evol. Ecol.  
  Volume (up) 2 Issue 1 Pages 51-64  
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  Call Number refbase @ user @ Serial 750  
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Author Pusey, A.E. url  doi
openurl 
  Title Sex-biased dispersal and inbreeding avoidance in birds and mammals Type Journal Article
  Year 1987 Publication Trends in Ecology & Evolution Abbreviated Journal Trends. Ecol. Evol  
  Volume (up) 2 Issue 10 Pages 295-299  
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  Abstract Sex differences in dispersal distance are widespread in birds and mammals, but the predominantly dispersing sex differs consistently between the classes. There has been persistent debate over the relative importance of two factors -- intrasexual competition and inbreeding avoidance -- in producing sex-biased dispersal, and over the sources of the difference in dispersal patterns between the two classes. Recent studies cast new light on these questions.  
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  ISSN 0169-5347 ISBN Medium  
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  Notes Approved no  
  Call Number Equine Behaviour @ team @ Serial 5326  
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