Albarella, U., & Trentacoste, A. (2011). Ethnozooarchaeology: The Present and Past of Human-Animal Relationships. Oxbow.
Baker, J. (1984). The study of animal diseases with regard to agricultural practices and Man`s attitude to his animals. In Animals and archaeology: 4: Husbandry in Europe: Vol. BAR international series (pp. 253–257). B.A.R.
Baker, J. R., & Brothwell, D. R. (1980). Animal Diseases in Archaeology. Academic Press.
Baker, P., & Worley, F. (2014). Animal Bones and Archaeology: Guidelines for Best Practice. Historic England. https://content.historicengland.org.uk/images-books/publications/animal-bones-and-archaeology/animal-bones-and-archaeology.pdf/
Bartosiewicz, L., & Gál, E. (2013). Shuffling Nags, Lame Ducks: The Archaeology of Animal Disease. Oxbow Books.
Bartosiewicz, L., Neer, W. van, & Lentacker, A. (1997). Draught Cattle: Their Osteological Identification and History. Musée royal de l’Afrique centrale.
Binford, L. R. (1981). Bones: Ancient Men and Modern Myths: Vol. Studies in archaeology. Academic Press.
Brain, C. K. (1980). The Hunters or the Hunted?: An Introduction to African Cave Taphonomy. University of Chicago Press.
Bull, G., & Payne, S. (1982). Tooth eruption and epiphyseal fusion in pigs and wild boar. In Ageing and Sexing Animal Bones from Archaeological Sites (Vol. 109). BAR British series.
Campbell, G., Moffett, L., & Straker, V. (2011). Environmental Archaeology: A Guide to the Theory and Practice of Methods, from Sampling and Recovery to Post-excavation. https://historicengland.org.uk/images-books/publications/environmental-archaeology-2nd/
Cohen, A., & Serjeantson, D. (1996). A manual for the identification of bird bones from archaeological sites (Rev. ed). Archetype.
Cohen, Alan & Serjeantson, D. (1996). A manual for the identification of bird bones from archaeological sites (Rev. ed). Archetype.
Course info - Please read! (n.d.).
Davis, S. J. M. (1996). Measurements of a group of adult female Shetland sheep skeletons from a single flock: A baseline for zooarchaeologists. Journal of Archaeological Science, 23(4), 593–612. https://doi.org/10.1006/jasc.1996.0056
Davis, S. J. M. (2000). The Effect of Castration and Age on the Development of the Shetland Sheep Skeleton and a Metric Comparison Between Bones of Males, Females and Castrates. Journal of Archaeological Science, 27(5), 373–390. https://doi.org/10.1006/jasc.1999.0452
Driesch, A. von den. (1976a). A Guide to the Measurement of Animal Bones from Archaeological Sites: Vol. Peabody Museum bulletin. Peabody Museum of Archaeology and Ethnology, Harvard University.
Driesch, A. von den. (1976b). A Guide to the Measurement of Animal Bones from Archaeological Sites: Vol. Peabody Museum bulletin. Peabody Museum of Archaeology and Ethnology, Harvard University.
Driver, J. C. (1982). Medullary bones as an indicator of sex in bird remains from archaeological sites. In Ageing and sexing animal bones from archaeological sites: Vol. BAR British series (pp. 251–254). B.A.R.
Grant, A. (1982). The use of tooth wear as a guide to the age of domestic ungulates. In Ageing and Sexing Animal Bones from Archaeological Sites: Vol. BAR British series (pp. 91–108). B.A.R.
Greenfield, H. (2005). Sexing fragmentary ungulate acetabulae. In Recent Advances in Ageing and Sexing Animal Bones (pp. 68–86). Oxbow Books.
Hesse, B., & Wapnish, P. (1985). Animal bone archeology: from objectives to analysis. Taraxacum.
Hillson, S. (2005a). Teeth: Vol. Cambridge Manuals in Archaeology (2nd ed). Cambridge University Press. http://dx.doi.org/10.1017/CBO9780511614477
Hillson, S. (2005b). Teeth: Vol. Cambridge manuals in archaeology (2nd ed). Cambridge University Press.
Hillson, S. (2005c). Teeth: Vol. Cambridge manuals in archaeology (2nd ed). Cambridge University Press.
Humans, other animals and disease: A comparative approach towards the development of a standardised recording protocol for animal palaeopathology. (2006). Internet Archaeology. http://intarch.ac.uk/journal/issue20/vannthomas_index.html
John W. Fisher Jr. (1995). Bone surface modifications in zooarchaeology. Journal of Archaeological Method and Theory, 2(1), 7–68. http://www.jstor.org/stable/20177322?seq=1#page_scan_tab_contents
Jones, G. G., & Sadler, P. (2012a). A review of published sources for age at death in cattle. Environmental Archaeology, 17(1), 1–10. https://doi.org/10.1179/1461410312Z.0000000001
Jones, G. G., & Sadler, P. (2012b). Age at death in cattle: methods, older cattle and known-age reference material. Environmental Archaeology, 17(1), 11–28. https://doi.org/10.1179/1461410312Z.0000000002
Lam, Y. M., Pearson, O. M., Marean, C. W., & Chen, X. (2003). Bone density studies in zooarchaeology. Journal of Archaeological Science, 30(12), 1701–1708. https://doi.org/10.1016/S0305-4403(03)00065-7
Lemoine, X., Zeder, M. A., Bishop, K. J., & Rufolo, S. J. (2014). A new system for computing dentition-based age profiles in Sus scrofa. Journal of Archaeological Science, 47, 179–193. https://doi.org/10.1016/j.jas.2014.04.002
Lyman, L. R. (1994). Structure and quantification of vertebrate skeletons. In Vertebrate taphonomy: Vol. Cambridge manuals in archaeology (pp. 70–113). Cambridge University Press. http://ls-tlss.ucl.ac.uk/course-materials/ARCL2014_51868.pdf
Lyman, R. L. (1994). Vertebrate Taphonomy: Vol. Cambridge Manuals in Archaeology. Cambridge University Press. http://dx.doi.org/10.1017/CBO9781139878302
Lyman, R. L. (2008). Quantitative Paleozoology. Cambridge University Press.
Madgwick, R., & Mulville, J. (2015). Reconstructing depositional histories through bone taphonomy: extending the potential of faunal data. Journal of Archaeological Science, 53, 255–263. https://doi.org/10.1016/j.jas.2014.10.015
O’Connor, T. (1985). Ruby and how many squirrels? The destruction of bones by dogs. In Palaeobiological Investigations: Research Design, Methods, and Data Analysis (Vol. 266, pp. 31–39). British Archaeological Reports: International Series.
O’Connor, T. (1987). On the structure, chemistry and decay of bone, antler and ivory. In Archaeological Bone, Antler and Ivory: Vol. Occasional papers / United Kingdom Institute for Conservation of Historic and Artistic Works (pp. 6–8). United Kingdom Institute for Conservation. https://contentstore.cla.co.uk/secure/link?id=af1fd5ba-6715-ec11-b563-a04a5e5d2f8d
O’Connor, T. (2013). Animals as Neighbors: The Past and Present of Commensal Species. Michigan State University Press.
O’Connor, T. P. (2000a). The archaeology of animal bones. Sutton.
O’Connor, T. P. (2000b). The archaeology of animal bones. Sutton.
O’Connor, T. P. (2003). The Analysis of Urban Animal Bone Assemblages (Vol. 19/2). York Archaeological Trust.
O’Connor, T. P. (2005). Biosphere to Lithosphere: New Studies in Vertebrate Taphonomy. Oxbow Books.
Orton, C. (2000). Sampling in Archaeology: Vol. Cambridge manuals in archaeology. Cambridge University Press. http://dx.doi.org/10.1017/CBO9781139163996
Orton, D. C. (2012). Taphonomy and interpretation: An analytical framework for social zooarchaeology. International Journal of Osteoarchaeology, 22(3), 320–337. https://doi.org/10.1002/oa.1212
Outram, A. (2002). Bone fracture and within-bone nutrients: An experimentally based method for investigating levels of marrow extraction. In Consuming Passions and Patterns of Consumption (pp. 51–64). McDonald Institute monographs.
Palaeos Systematics: The Linnaean System. (n.d.). http://palaeos.com/systematics/linnaean/index.html
Payne, S. (1972). Partial recovery and sample bias: The results of some sieving experiments. In Papers in Economic Prehistory. Cambridge University Press.
Payne, S. (1973). Kill-off patterns in sheep and goats: The mandibles from Asvan Kale. Anatolian Studies, 303. https://doi.org/10.2307/3642547
Poole, K. (2010). Bird introductions. In Extinctions and Invasions: A Social History of British Fauna (pp. 156–165). Windgather.
Popkin, P. R. W., Baker, P., Worley, F., Payne, S., & Hammon, A. (2012a). The Sheep Project (1): determining skeletal growth, timing of epiphyseal fusion and morphometric variation in unimproved Shetland sheep of known age, sex, castration status and nutrition. Journal of Archaeological Science, 39(6), 1775–1792. https://doi.org/10.1016/j.jas.2012.01.018
Popkin, P. R. W., Baker, P., Worley, F., Payne, S., & Hammon, A. (2012b). The sheep project (1): Determining skeletal growth, timing of epiphyseal fusion and morphometric variation in unimproved Shetland sheep of known age, sex, castration status and nutrition. Journal of Archaeological Science, 39(6), 1775–1792. https://doi.org/10.1016/j.jas.2012.01.018
Reitz, E. J., & Wing, E. S. (2008). Zooarchaeology: Vol. Cambridge manuals in archaeology (2nd ed). Cambridge University Press.
Russell, N. (2012). Social Zooarchaeology: Humans and Animals in Prehistory. Cambridge University Press.
Sarah M. Colley. (1990). The Analysis and Interpretation of Archaeological Fish Remains. Archaeological Method and Theory, 2, 207–253. http://www.jstor.org/stable/20170208
Schmid, E. (1972). Atlas of Animal Bones for Prehistorians, Archaeologists and Quaternary Geologists. Elsevier.
Serjeantson, D. (1998). Birds: A Seasonal Resource. Environmental Archaeology, 3, 23–33.
Serjeantson, D. (2009). Birds: Vol. Cambridge manuals in archaeology. Cambridge University Press.
Serjeantson, D., & Woolgar, C. (2006). Fish consumption in medieval England. In Food in Medieval England: Diet and Nutrition (pp. 102–130). Oxford University Press.
Silver, I. (1963). The ageing of domestic animals. In Science in Archaeology: A Comprehensive Survey of Progress and Research. Thames & Hudson.
Sykes, N. J. (2014). Beastly Questions: Animal Answers to Archaeological Issues. Bloomsbury Academic.
Sykes, N., & Symmons, R. (2007). Sexing cattle horn-cores: Problems and progress. International Journal of Osteoarchaeology, 17(5), 514–523. https://doi.org/10.1002/oa.891
Symmons, R. (2005). Bone density variation between similar animals and density variation in early life: implications for future taphonomic analysis. In Biosphere to Lithosphere: New Studies in Vertebrate Taphonomy (pp. 86–93). Oxbow Books.
Thomas, R., Sadler, P., & Cooper, J. (2014). Developmental osteology of cross-bred red junglefowl (L. 1758) and the implications for ageing chickens from archaeological sites. International Journal of Osteoarchaeology. https://doi.org/10.1002/oa.2417
van Neer, W., Ervynck, A., Bolle, L. J., & Millner, R. S. (2004). Seasonality only works in certain parts of the year: The reconstruction of fishing seasons through otolith analysis. International Journal of Osteoarchaeology, 14(6), 457–474. https://doi.org/10.1002/oa.727
West, B. (1982). Spur development: recognising caponised fowl in archaeological material. In Ageing and sexing animal bones from archaeological sites: Vol. BAR British series (pp. 255–261). B.A.R.
Wheeler, Alwyne C., Jones, Andrew K. G., & Wheeler, Rosalind. (1989). Fishes: Vol. Cambridge manuals in archaeology. Cambridge University Press.
Wilson, B., Grigson, C., & Payne, S. (1982). The use of crown height measurements and eruption-wear sequences to age horse teeth. In Ageing and Sexing Animal Bones from Archaeological Sites: Vol. BAR British series (pp. 223–243). B.A.R.
Worley, F., Baker, P., Popkin, P., Hammon, A., & Payne, S. (2015). The sheep project (2): The effects of plane of nutrition, castration and the timing of first breeding in ewes on dental eruption and wear in unimproved Shetland sheep. Journal of Archaeological Science: Reports. https://doi.org/10.1016/j.jasrep.2015.10.029
Zeder, M. (2005). Reconciling rates of long bone fusion and tooth eruption and wear in sheep (Ovis) and goat (Capra). In Recent Advances in Ageing and Sexing Animal Bones. Oxbow Books.
Zeder, M. A., Lemoine, X., & Payne, S. (2015). A new system for computing long-bone fusion age profiles in Sus scrofa. Journal of Archaeological Science, 55, 135–150. https://doi.org/10.1016/j.jas.2014.12.017