Domesticated landscapes of the neotropics: Isotope signatures of human-animal relationships in pre-Columbian Panama
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Alexander, 2013, Archaeofauna at Isla Cilvituk, Campeche, Mexico: Residential site structure and taphonomy in Postclassic Mesoamerica, 281
Ambrose, 1990, Preparation and characterization of bone and tooth collagen for isotopic analysis, J. Archaeol. Sci., 17, 431, 10.1016/0305-4403(90)90007-R
Ambrose, 1991, Effects of diet, climate and physiology on nitrogen isotope abundances in terrestrial foodwebs, J. Archaeol. Sci., 18, 293, 10.1016/0305-4403(91)90067-Y
Ambrose, 1993, Experimental evidence for the relationship of the carbon isotope ratios of whole diet and dietary protein to those of bone collagen and carbonate, 1
Angehr, 2010
Atran, 1993, Itza maya tropical agro-forestry, Curr. Anthr., 34, 633, 10.1086/204212
Bateman, 2005, Nitrogen isotope relationships between crops and fertilizer: implications for using nitrogen isotope analysis as an indicator of agricultural regime, J. Agric. Food. Chem., 53, 5760, 10.1021/jf050374h
Blanco, 2009, El Zoológico de Moctezuma ¿Mito o realidad?, AMMVEPE, 20, 29
Broughton, 2002, Prey spatial structure and behavior affect archaeological tests of optimal foraging models: examples from the Emeryville Shellmound vertebrate fauna, World Archaeol., 34, 60, 10.1080/00438240220134269
Bryant, 1996, Oxygen Isotope Partitioning Between Phosphate and Carbonate in Mammalian Apatite, Geochim. Cosmochim. Acta, 60, 5145, 10.1016/S0016-7037(96)00308-0
Buckley, M., Cooke, R.G., Martínez, M.F., Bustamante, F., Jiménez-Acosta, M., Lara, A., Martín, J.G., 2017. Archaeological Collagen Fingerprinting in the Neotropics; Protein Survival in 6000 Year Old Dwarf Deer Remains from Pedro González Island, Pearl Islands, Panama. In: Mondini, M., Muñoz, A.S., Fernández, P.M. (Eds.), Zooarchaeology in the Neotropics: Environmental Diversity and Human-Animal Interactions. Springer International Publishing, Cham, pp. 157–175. https://doi.org/10.1007/978-3-319-57328-1_10.
Carr, 1996, Precolumbian Maya Exploitation and Management of Deer Populations, 251
Carvajal, 2008, Molluscs in Central America. A review, Archaeofauna, 17, 157
Cerling, 1996, Stable carbon and oxygen isotope analysis of fossil tooth enamel using laser ablation, Palaeogeogr. Palaeoclimatol. Palaeoecol. Biogenic Phosphates Palaeoenvironmental Indicators, 126, 173, 10.1016/S0031-0182(96)00078-8
Choi, 2002, Natural 15 N abundances of maize and soil amended with urea and composted pig manure, Plant Soil, 245, 223, 10.1023/A:1020475017254
Clary, 1984, The Holocene geology of the western Parita Bay coastline of central Panama, 55
Cooke, 1979, Los impactos de las comunidades agrícolas precolombinas sobre los ambientes del trópico estacional: datos del Panamá prehistórico, Actas Del IV Simposio Internacional de Ecología Tropical. Tomo, III, 2
Cooke, 1984, Archaeological research in central and eastern Panama: a review of some problems, 263
Cooke, 1992, Prehistoric nearshore and littoral fishing in the eastern tropical pacific: an ichthyological evaluation, J. World Prehistory, 6, 1, 10.1007/BF00997584
Cooke, 2005, Prehistory of native Americans on the central American land-bridge: colonization, dispersal and divergence, J. Archaeol. Res., 13, 139, 10.1007/s10804-005-2486-4
Cooke, 2011, The Gilcrease collection and the Gran Coclé, 129
Cooke, R.G., Jiménez-Acosta, M., 2009. Fishing at pre-Hispanic settlements on the Pearl Island archipelago (Panama, Pacific). I: Pedro González island (4030-3630 cal BCE). In: Makowiecki, D., Hamilton-Dyer, S., Riddler, I., Trzaka-Nartowski, N., Makohonienko, M. (Eds.), Fishes-Culture-Environment through Archaeoichthyology, Ethnography and History. Long abstracts of the 15th. Meeting of the ICAZ Fish Remains Working Group, September 3-9, 2009. Bogucki Wydawnictwo Naukowe, Poznań and Turuń, Poland, pp. 172-175.
Cooke, 2010, Animal-derived artefacts at two pre-columbian sites in the ancient savannas of Central Panama. An update on their relevance to studies of social hierarchy and cultural attitude towards animal, 30
Cooke, 2007, Influencias humanas sobre la vegetación y fauna de vertebrados de Panamá: Actualización de datos arqueozoológicos y su relación con el paisaje antrópico, 562
Cooke, 2008, Archaeozoology, art, documents, and the life assemblage, 95
Cooke, 1996, Native Americans and the Panamanian landscape, 103
Cooke, 1989, Hunting in pre-Columbian Panama: A diachronic perspective, 295
Cooke, 1992, Precolumbian influences on the zoogeography of Panama: An update based on archaeofaunal and documentary data, 21
Cooke, R.G., Ranere, A.J., 1999. Precolumbian fishing on the Pacific coast of Panama. In: M. Blake, (Ed.,), Pacific Latin America in Prehistory: The Evolution of Archaic and Formative Cultures. Washington State University Press, Pullman, pp. 103-122.
Cooke, 2013, Radiocarbon chronology of early human settlement on the Isthmus of Panama (13,000–7000 BP) with comments on cultural affinities, environments, subsistence, and technological change, Quat. Int., 301, 3, 10.1016/j.quaint.2013.02.032
Cooke, 2013, Pre-Columbian exploitation of birds around Panama Bay, 479
Cooke, 1998, Rasgos mortuorios y artefactos inusitados de Cerro Juan Díaz. Una aldea precolombina del Gran Coclé, Revista La Antigua, 53, 127
Cooke, R.G., Sánchez Herrera, L.A., Udagawa, K., 2000. Contextualized goldwork from “Gran Coclé”, Panama. In: McEwan, C. (Ed.), Precolumbian Gold. Technology, Style and Iconography. British Museum Press, London, pp. 153–176.
Cooke, 2016, Exploitation of dolphins (Cetacea: Delphinidae) at a 6000 yr old Preceramic site in the Pearl Island archipelago, Panama, J. Archaeol. Sci.: Reports, 6, 733
Cormie, 1994, Stable isotopes of nitrogen and carbon of North American white-tailed deer and implications for paleodietary and other food web studies, Palaeogeogr. Paleoclimatol. Paleoedol., 107, 227, 10.1016/0031-0182(94)90096-5
DeNiro, 1985, Postmortem preservation and alteration of in vivo vone collagen isotope ratios in relation to palaeodietary reconstruction, Nature, 317, 806, 10.1038/317806a0
DeNiro, 1978, Influence of diet on the distribution of carbon isotopes in animals, Geochim. Cosmochim. Acta, 42, 495, 10.1016/0016-7037(78)90199-0
Díaz, C., 1999. Estudio bioantropològico de rasgos mortuorios de la Operación 4 del sitio arqueológico Cerro Juan Díaz, Panamá Central. Tesis de Licenciatura. Universidad de los Andes.
Eisenberg, J.F., 1989. Mammals of the Neotropics: Panama, Colombia, Venezuela, Guyana, Suriname, French Guiana. University of Chicago Press, Chicago.
Emery, 2000, Isotopic analysis of ancient deer bone: biotic stability in collapse period maya land-use, J. Archaeol. Sci., 27, 537, 10.1006/jasc.1999.0491
Fedick, 1996
Fernandes, 2012, Macronutrient-based model for dietary carbon routing in bone collagen and bioapatite, Archaeol. Anthropol. Sci., 4, 291, 10.1007/s12520-012-0102-7
France, 2014, Stable isotope indicators of provenance and demographics in 18th and 19th century North Americans, J. Archaeol. Sci., 42, 356, 10.1016/j.jas.2013.10.037
Froehle, 2010, FOCUS: Effect of diet and protein source on carbon stable isotope ratios in collagen: Follow up to Warinner and Tuross (2009), J. Archaeol. Sci., 37, 2662, 10.1016/j.jas.2010.06.003
Galinat, 1980, The archaeological maize remains from Volcan Panama–A comparative perspective, 175
Garvie-Lok, 2004, Preparation of bone carbonate for stable isotope analysis: The effects of treatment time and acid concentration, J. Archaeol. Sci., 31, 763, 10.1016/j.jas.2003.10.014
Gómez-Pompa, A., 1987. On Maya silviculture. Mexican Studies/Estudios Mexicanos 3, 1–17.
Haemig, 1978, Aztec emperior Ahuitzotl and the great-tailed grackle, Biotropica, 11, 81
Hartman, 2011, Are elevated δ15N values in herbivores in hot and arid environments caused by diet or animal physiology?, Funct. Ecol., 25, 122, 10.1111/j.1365-2435.2010.01782.x
Hedges, 2007, Nitrogen isotopes and the trophic level of humans in archaeology, J. Archaeol. Sci., 34, 1240, 10.1016/j.jas.2006.10.015
Huard, A.E., 2013. Cerro Mangote: Interpretations of space based on mortuary analysis. Binghamton University State University of New York.
Ingold, 1996, Growing plants and raising animals: An anthropological perspective on domestication, 12
Jiménez-Acosta, M., Cooke, R.G., 2001. Pesca Precolombina en un Estuario Neotropical: el Caso de Cerro Juan Díaz (Bahía de Parita, Costa del Pacífico de Panama). In: Noticias de Arqueología y Antropología, Grupo NaYa, Buenos Aires, CD-ROM.
Keeling, 1979, The Suess Effect: 13Carbon-14Carbon interrelations, Environ. Int., 2, 229, 10.1016/0160-4120(79)90005-9
Kellner, 2007, A Simple carbon isotope model for reconstructing prehistoric human diet, Am. J. Phys. Anthropol., 133, 1112, 10.1002/ajpa.20618
Linares, 1976, “Garden hunting” in the American tropics, Hum. Ecol., 4, 331, 10.1007/BF01557917
Lipe, 2016, Cultural and genetic contexts for early Turkey domestication in the northern southwest, Am. Antiq., 81, 97, 10.7183/0002-7316.81.1.97
Longin, 1971, New method of collagen extraction for radiocarbon dating, Nature, 230, 241, 10.1038/230241a0
Martín, 2016, Ocupaciones prehispánicas en Isla Pedro González, Archipiélago de Las Perlas, Panamá. Aproximación a una cronología con comentarios sobre las conexiones externas, Latin Am. Antiquity, 27, 378, 10.7183/1045-6635.27.3.378
Martínez-Polanco, 2019, Zooarchaeological and taphonomical study of the white-tailed deer (Cervidae: Odocoileus virginianus Zimmerman 1780) at Sitio Sierra, a pre-Columbian village in Pacific Coclé province, Panama, with an evaluation of its role in feasts, Archaeol. Anthropol. Sci., 11, 5405, 10.1007/s12520-019-00883-8
Martínez-Polanco, M.F., Jiménez-Acosta, M., Buckley, M., Cooke, R.G., 2015. Impactos humanos tempranos en fauna insular: El caso de los venados enanos de Pedro González (Archipiélago de las Perlas, Panamá). Revista ARCHAEOBIOS I, 202–214.
Martínez-Polanco, 2019, Behind white-tailed deer teeth : a micro- and mesowear analysis from three Panamanian pre-Columbian archaeological sites, Quat. Int., 1
Mayo, J., 2004. La industria prehispánica de conchas marinas en “Gran Coclé”, Panamá. Ph.D. Dissertation. Universidad Complutense de Madrid.
Mayo, 2005, La industria prehispánica de conchas marinas en Gran Coclé, Panamá. Análisis tecnológico de los artefactos de concha del basurero-taller del Sitio Cerro Juan Díaz, Los Santos, Panamá. Archaeofauna, 14, 285
McClung de Tapia, 2012, Conservando la diversidad biocultural de México: El uso de algunas plantas y animales en el pasado y presente, Arqueología Mexicana, XIX, 20
McGimsey, 1986, Cerro Mangote and its population, J. Steward Anthropol. Soc., 16, 125
Minagawa, 1984, Stepwise enrichment of 15N along food chains: further evidence and the relation between δ15N and animal age, Geochim. Cosmochim. Acta, 48, 1135, 10.1016/0016-7037(84)90204-7
Moore, K.M. 2015. Dog-teeth ornaments from Sitio Conte: New research on old collections. Poster, The Art and Archaeology of Central America and Colombia/Dumbarton Oaks Workshop Smithsonian Tropical Research Institute, Panama City, Panama January 26th- 29th, 2015.
Moore, K.M. 2018. The lives and care of dogs in Coclé chiefdoms: Insights from tomb apparel from Sitio Conte, Panama. Presentation,13th ICAZ International conference, Ankara, Turkey, 2nd -7th September, 2018.
Muñoz, 2007, Diet of the Cauca Guan: exploitation of a novel food source in times of scarcity, Condor, 109, 841, 10.1093/condor/109.4.841
Nations, 1980, The evolutionary potential of Lacandon Maya sustained-yield tropical forest agriculture, J. Anthropol. Res., 36, 1, 10.1086/jar.36.1.3629550
Nielsen-Marsh, 2007, Bone diagenesis in the European Holocene II: Taphonomic and environmental considerations, J. Archaeol. Sci., 34, 1523, 10.1016/j.jas.2006.11.012
Norr, L.C., 1991. Nutritional Consequences of Prehistoric Subsistence Strategies in Lower Central America, Ph.D. Dissertation. University of Illinois at Urbana-Champaign, United States -- Illinois. http://hdl.handle.net/2142/21105.
O’Leary, 1988, Carbon isotopes in photosynthesis: Fractionation techniques may reveal new aspects of carbon dynamics in plants, Bioscience, 38, 328, 10.2307/1310735
Pellegrini, 2016, Comparing bioapatite carbonate pre-treatments for isotopic measurements: Part 2 — Impact on carbon and oxygen isotope compositions, Chem. Geol., 420, 88, 10.1016/j.chemgeo.2015.10.038
Piperno, 1984, A comparison and differentiation of phytoliths from maize and wild grasses: Use of morphological criteria, Am. Antiq., 49, 361, 10.2307/280024
Piperno, D.R., 2006. Quaternary environmental history and agricultural impact on vegetation in Central America. Annals of the Missouri Botanical Garden 93, 274–296. https://doi.org/10.3417/0026-6493(2006)93[274:QEHAAI]2.0.CO;2.
Piperno, 2009, Identifying crop plants with phytoliths (and starch grains) in Central and South America: a review and an update of the evidence, Quat. Int., 193, 146, 10.1016/j.quaint.2007.11.011
Piperno, 2011, Prehistoric human occupation and impacts on Neotropical forest landscapes during the Late Pleistocene and Early/Middle Holocene, 185
Piperno, 2011, The origins of plant cultivation and domestication in the New World tropics: Patterns, process, and new developments, Curr. Anthropol., 52, S453, 10.1086/659998
Piperno, 2003, Paleoecological and archaeological implications of a Late Pleistocene/ Early Holocene record of vegetation and climate from the Pacific coastal plain of Panama, Quat. Res., 59, 79, 10.1016/S0033-5894(02)00021-2
Piperno, 1998, From small-scale horticulture to the Formative Period: The development of agriculture, 243
Piperno, Dolores R., Anthony J. Ranere, Irene Holst y Patricia Hansell 2000 Starch grains reveal early root crop horticulture in the Panamanian tropical forest. Nature 407: 894-897.
Pohl, M.D., 1977. Hunting in the Maya village of San Antonio, Rio Hondo, Orange Walk District, Belize. J. Belizean Affairs 5, 52–63.
Pohl, M.D., 1991. Women, animal rearing, and social status: The case of the Formative period Maya of Central America. In: Walde, D., Willows, N.D. (Eds.), The Archaeology of Gender: Proceedings of the Twenty-Second Annual Conference of the Archaeological Association of the University of Calgary. University of Calgary Archaeological Association, Calgary [Canada], pp. 392–399.
Pohl, 1982, The traditional role of women and animals in lowland Maya economy, 295
Pohl, 1980, “Mohammed’s Paradise”: The exploitation of faunal resources in the Rivas region of Nicaragua, 287
Quirós, 1972, Investigaciones arqueológicas preliminares en la isla de Coiba, Hombre y Cultura (Panamá), 2, 93
Reina, 1967, Milpas and milperos: Implications for prehistoric times, Am. Anthropol., 69, 1, 10.1525/aa.1967.69.1.02a00020
Russell, 2002, The wild side of animal domestication, Soc. Animals, 10, 285, 10.1163/156853002320770083
Schimmelmann, 2009, Nicotine, acetanilide and urea multi-level 2H-, 13C- and 15N-abundance reference materials for continuous-flow isotope ratio mass spectrometry, Rapid Commun. Mass Spectrom., 23, 3513, 10.1002/rcm.4277
Schoeninger, 1984, Nitrogen and carbon isotopic composition of bone collagen from marine and terrestrial animals, Geochim. Cosmochim. Acta, 48, 625, 10.1016/0016-7037(84)90091-7
Schoeninger, 1983, Stable nitrogen isotope ratios of bone collagen reflect marine and terrestrial components of prehistoric human diet, Science, 220, 1381, 10.1126/science.6344217
Shapiro, 1965, An analysis of variance test for normality (complete samples), Biometrika, 52, 591, 10.1093/biomet/52.3-4.591
Sharpe, 2018, Earliest isotopic evidence in the Maya region for animal management and long-distance trade at the site of Ceibal, Guatemala, Proc. Natl. Acad. Sci., 115, 3605, 10.1073/pnas.1713880115
Simeone, 2002, Human exploitation of seabirds in coastal southern Chile during the mid-Holocene, Rev. Chil. Hist. Nat., 75, 423, 10.4067/S0716-078X2002000200012
Smith, 1991, Odocoileus virginianus, Mammalian species, 1–13
Smith, 2007, Bone diagenesis in the European Holocene I: Patterns and mechanisms, J. Archaeol. Sci., 34, 1485, 10.1016/j.jas.2006.11.006
Smith-Guzmán, 2019, Cold-water diving in the tropics? External auditory exostoses among the pre-Columbian inhabitants of Panama, Am. J. Phys. Anthropol., 168, 448, 10.1002/ajpa.23757
Somerville, 2010, Isotopic investigation of Pre-hispanic macaw breeding in Northwest Mexico, J. Anthropol. Archaeol., 29, 125, 10.1016/j.jaa.2009.09.003
Somerville, 2016, Animal management at the ancient metropolis of Teotihuacan, Mexico: stable isotope analysis of leporid (cottontail and jackrabbit) bone mineral, PLoS ONE, 11, 10.1371/journal.pone.0159982
Somerville, 2017, Leporid management and specialized food production at Teotihuacan: Stable isotope data from cottontail and jackrabbit bone collagen, Archaeol. Anthropol. Sci., 9, 83, 10.1007/s12520-016-0420-2
Sugiyama, 2017, Pumas eating human hearts? Animal sacrifice and captivity at the Moon Pyramid, 90
Sugiyama, 2015, Stable isotopes and zooarchaeology at Teotihuacan, Mexico reveal earliest evidence of wild carnivore management in Mesoamerica, PLoS ONE, 10, 10.1371/journal.pone.0135635
Sugiyama, 2018, Jaguar and puma captivity and trade among the Maya: stable isotope data from Copan Honduras, PLoS ONE, 13, 10.1371/journal.pone.0202958
Sugiyama, N., France, C.A.M, Martínez-Polanco, F., and Cooke, R.G., in press. Collagen and carbonate isotope data of fauna from Pre-Columbian Panama. Data in Brief.
Teer, 1994, El Venado cola blanca: Historia natural y principios de manejo, 33
Terrell, 2003, Domesticated landscapes: The subsistence ecology of plant and animal domestication, J. Archaeological Method Theory, 10, 323, 10.1023/B:JARM.0000005510.54214.57
Thornton, 2016, Ancient Maya turkey husbandry: testing theories through stable isotope analysis, J. Archaeolog. Sci.: Rep., 10, 584
Thornton, 2011, Reconstructing ancient Maya animal trade through strontium isotope (87Sr/86Sr) analysis, J. Archaeol. Sci., 38, 3254, 10.1016/j.jas.2011.06.035
Tieszen, 1993, Effect of diet quality and composition on the isotopic composition of respiratory CO2, bone collagen, bioapatite, and soft tissue, 121
Toledo, 2003, The multiple use of tropical forests by indigenous peoples in Mexico: a case of adaptive management, Conservation Ecol., 7, 9, 10.5751/ES-00524-070309
Tozzer, A.M., 1941. Landa’s Relación de las Cosas de Yucatan: A Translation, Peabody Museum of American Archaeology and Ethnology Papers. The Peabody Museum, Cambridge, Massachusetts.
Tykot, 1996, Stable isotope analysis of bone collagen, bone apatite, and tooth enamel in the reconstruction of human diet, 355
Van der Merwe, 1991, The canopy effect, carbon isotope ratios and foodwebs in amazonia, J. Archaeol. Sci., 18, 249, 10.1016/0305-4403(91)90064-V
Vaughan, 2006, Scarlet Macaw, Ara macao, (Psittaciformes: Psittacidae) diet in Central Pacific Costa Rica, Revista Biología Tropical, 54, 919
Wang, 1994, A model of fossil tooth and bone diagenesis: implications for paleodiet reconstruction from stable isotopes, Palaeogeogr. Paleoclimatol. Paleoecol., 107, 281, 10.1016/0031-0182(94)90100-7
Warinner, 2013, Maize, beans and the floral isotopic diversity of highland Oaxaca, Mexico, J. Archaeol. Sci., 40, 868, 10.1016/j.jas.2012.07.003
Warinner, 2009, Alkaline cooking and stable isotope tissue-diet spacing in swine: archaeological implications, J. Archaeol. Sci., 36, 1690, 10.1016/j.jas.2009.03.034
Webb, 2014, Investigating inherent differences in isotopic composition between human bone and enamel bioapatite: implications for reconstructing residential histories, J. Archaeolgocial Sci., 50, 97, 10.1016/j.jas.2014.07.001
Weiner, 1990, States of preservation of bones from prehistoric sites in the Near East: a survey, J. Archaeol. Sci., 17, 187, 10.1016/0305-4403(90)90058-D
White, 2001, Isotopic evidence for Maya patterns of deer and dog use at Preclassic Colha, J. Archaeol. Sci., 28, 89, 10.1006/jasc.1999.0560
White, 2004, Feast, Field, and Forest: Deer and Dog Diets at Lagartero, Tikal, and Copán, 141
Wright, 1996, Infrared and isotopic evidence for diagenesis of bone apatite at Dos Pilas, Guatemala: Paleodietary implications, J. Archaeol. Sci., 23, 933, 10.1006/jasc.1996.0087
Wright, L.E., Schwarcz, H.P., 1998. Stable carbon and oxygen isotopes in human tooth enamel: Identifying breastfeeding and weaning in Prehistory. Am. J. Phys. Anthropol. 106, 1–18. https://doi.org/10.1002/(SICI)1096-8644(199805)106:1<1::AID-AJPA1>3.0.CO;2-W.
Ximénez, F., 1967. Historia natural del Reino de Guatemala, Publicación especial (Sociedad de Geografía e Historia de Guatemala); no. 14. Editorial José de Pineda Ibarra, Guatemala.
Zeder, 2015, Core Questions in domestication research, Proc. Natl. Acad. Sci., 112, 3191, 10.1073/pnas.1501711112