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Geographic Identities of the Sacrificial Victims from the Feathered Serpent Pyramid, Teotihuacan: Implications for the Nature of State Power

Published online by Cambridge University Press:  20 January 2017

Christine D. White
Affiliation:
Department of Anthropology, The University of Western Ontario, London ON N6A 5C2, Canada
Michael W. Spence
Affiliation:
Department of Anthropology, The University of Western Ontario, London ON N6A 5C2, Canada
Fred J. Longstaffe
Affiliation:
Department of Earth Sciences, The University of Western Ontario, London ON N6A 5B7, Canada
Hilary Stuart-Williams
Affiliation:
Research School of Biological Sciences, Australian National University, Canberra ACT 2601
Kimberley R. Law
Affiliation:
Department of Earth Sciences, The University of Western Ontario, London ON N6A 5B7, Canada

Abstract

This study addresses the political and military structure of early Teotihuacan through the analysis of oxygen-isotope ratios in skeletal phosphate from 41 victims of a sacrifice associated with the Feathered Serpent Pyramid. Oxygen-isotope ratios are markers of geographic identity. A comparison of bone and enamel values, which provides a contrast between environments experienced during growth and those of adulthood, illustrates that at least four different regions are represented in this sample. Those identified as soldiers had either lived locally since childhood or had moved to Teotihuacan from several foreign locations. Most had lived in Teotihuacan for a prolonged period before their death. This pattern suggests foreign “recruitment” or mercenary behavior. The women had either lived all their lives in Teotihuacan or had moved from there to a foreign location. Most of the individuals in the center of the pyramid (burial 14) did not come from Teotihuacan, nor had they lived in the city long before their deaths. We suggest that the choice of victims was meant to demonstrate Teotihuacan's powerful ideology to the rest of the Mesoamerican world. Notably, this isotopic evidence of physical interaction between Teotihuacan and foreign regions considerably predates the currently existing archaeological evidence.

En este estudio investigamos la estructura política y militar del estado temprano de Teotihuacan, México, por medio del análisis de las proporciones de los isótopos estables del oxígeno en el fosfato óseo y dental de 41 víctimas del gran sacrificio asociado a la construcción de la pirámide de la Serpiente Emplumada en los años 200 AD. El análisis se funda en la premisa de que “somos lo que bebemos”. La proporción isotópica del agua ambiental de una región se transfiere al agua corporal de quienes beben el agua y, entonces, a su fosfato óseo y dental. Así, la proporción de los isótopos sirve como un marcador geográfico. Además, una comparación entre los valores dentales y óseos nos informa de la diferencia entre el ambiente geográfico de la niñez y el ambiente de la vida adulta del individuo. Los resultados indican que al menos cuatro regiones están representadas en la muestra. Los sacrificados identificados como soldados habían vivido en el área de Teotihuacan desde su infancia o se transladaron a Teotihuacan de áreas foráneas. La mayoría había vivido en el área varios años antes del sacrificio. Este patrón sugiere el reclutamiento de extranjeros o quizás el empleo de mercenarios. Las mujeres habían pasado toda la vida en Teotihuacan o se trasladaron de Teotihuacan a áreas foráneas. En cambio, la mayor parte de los individuos masculinos del entierro 14, al centro de la pirámide, no procedía de Teotihuacan ni había vivido en el área mucho tiempo antes de su muerte. Sugerimos que la selección de las víctimas tuvo por objeto la demostración de la poderosa ideología de Teotihuacan al mundo mesoamericano. Cabe destacar que esta evidencia isotópica de interacción entre Teotihuacan y las áreas foráneas indica una fecha bastante más temprana para esta interacción que lo que la evidencia arqueológica muestra.

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Reports
Copyright
Copyright © Society for American Archaeology 2002

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References

References Cited

Armillas, Pedro 1964 Northern Mesoamerica. In Prehistoric Man in the New World, edited by Jesse D. Jennings and Edward Norbeck, pp. 291321. University of Chicago Press, Chicago.Google Scholar
Ayliffe, Linda K., and Chivas, Allen R. 1990 Oxygen Isotope Composition of the Bone Phosphate of Australian Kangaroos: Potential as a Palaeoenvironmental Recorder. Geochimica et Cosmochimica Acta 54:26032609.CrossRefGoogle Scholar
Bryant, J. Daniel, and Froelich, Philip N. 1995 A Model of Oxygen Isotope Fractionation in Body Water of Large Mammals. Geochimica et Cosmochimica Acta 59:45234537.Google Scholar
Bryant, J. Daniel, Luz, Boaz, and Froelich, Philip N. 1994 Oxygen Isotope Composition of Fossil Horse Phosphate as a Record of Continental Palaeoclimate. Palaeogeography, Palaeoclimatology, Palaeoecology 107:303316.Google Scholar
Bryant, J. Daniel. Koch, Paul L., Froelich, Philip N., Showers, William J., and Genna, Bernard J. 1996 Biologic and Climatic Signals in the Oxygen Isotope Composition of Eocene- Oligocene Equid Enamel Phosphate. Palaeogeography, Palaeoclimatology, Palaeoecology 126:7589.CrossRefGoogle Scholar
Cabrera Castro, Rubén, and Cortés, Oralia Cabrera 1991 El Proyecto Templo de Quetzalcoatl. Planteamientos Generales y Resultados Preliminares. Arqueología 6:1931.Google Scholar
Cabrera Castro, Ruben, and Serrano, Carlos 1999 Los entierros de la Pirámide del Sol y del Templo de Quetzalcóatl, Teotihuacan. In Prácticas funerarias en la ciudad de los dioses: los enterramientos humanos de la antigua Teotihuacan, edited by Linda Manzanilla and Carlos Serrano, pp. 345397, Universidad Nacional Autonoma de México, Mexico.Google Scholar
Cabrera Castro, Rubén, Sugiyama, Saburo, and Cowgill, George L. 1991 The Templo de Quetzalcoatl Project at Teotihuacan: A Preliminary Report. Ancient Mesoamerica 2:7792.Google Scholar
Carlson, John B. 1991 Venus-Regulated Warfare and Ritual Sacrifice in Mesoamerica: Teotihuacan and the Cacaxtla “Star Wars” Connection. Center for Archaeoastronomy Technical Publication 7, College Park, Maryland.Google Scholar
Cerling, Thure E., and Sharp, Zachary D. 1996 Stable Carbon and Oxygen Isotope Analysis of Fossil Tooth Enamel Using Laser Ablation. Palaeogeography, Palaeoclimatology, Palaeoecology 126:173186.Google Scholar
Clayton, Robert N., and Mayeda, Toshiko K. 1963 The Use of Bromine Pentaftuoride in the Extraction of Oxygen from Oxides and Silicate for Isotopic Analysis. Geochimica et Cosmochimica Acta 27:4352.CrossRefGoogle Scholar
Coe, Michael D. 1981 Religion and the Rise of Mesoamerican States. In The Transition to Statehood in the New World, edited by Grant Jones and Robert Kautz, pp. 157171. Cambridge University Press, Cambridge.Google Scholar
Coggins, Clemency C. 1993 The Age of Teotihuacan and its Mission Abroad. In Teotihuacan: Art from the City of the Gods, edited by Kathleen Berrin and Esther Pasztory, pp. 141155. Thames and Hudson, New York.Google Scholar
Cowgill, George L. 1983 Rulership and the Ciudadela: Political Inferences from Teotihuacan Architecture. In Civilization in the Ancient Americas, edited by Richard M. Leventhal and Alan L. Kolata, pp. 313343. University of New Mexico Press and Peabody Museum, Harvard University, Cambridge, Massachusetts.Google Scholar
Cowgill, George L. 1992 Toward a Political History of Teotihuacan. In Ideology and PreColumbian Civilizations, edited by Arthur A. Demarest and Geoffrey W Conrad, pp. 87114. School of American Research Press, Santa Fe, New Mexico.Google Scholar
Cowgill, George L. 1997 State and Society at Teotihuacan, Mexico. Annual Review of Anthropology 26:129161.Google Scholar
Crowson, R. Showers, A William, J., Wright, E. K., and Hoering, Thomas C. 1991 Preparation of Phosphate Samples for Oxygen Isotope Analysis. Analytical Chemistry 63:23972400.Google Scholar
Dolphin, Alexis 2000 A Comparison of Two Postclassic Communities Using Enamel Hypoplastic Indicators of Juvenile Health: Marco Gonzalez and San Pedro. Unpublished Master’s Thesis, Department of Anthropology, The University of Western Ontario.Google Scholar
Dosal, Pedro R. 1925 Descubrimientos arqueológicos en el Templo de Quetzalcoatl, Teotihuacan. Anales del Museo Nacional de Arqueología, Historia y Etnografía 1:216219.Google Scholar
Drucker, R. David 1974 Renovating a Reconstruction: The Ciudadela at Teotihuacan, Mexico: Construction Sequence, Layout and Possible Uses of this Structure. Ph.D. Dissertation, University of Rochester, University Microfilms, Ann Arbor, Michigan.Google Scholar
Elliot, J. C. 1997 Structure, Crystal Chemistry and Density of Enamel Apatites. In Dental Enamel, edited by Derek J. Chadwick and Gail Cardew, pp. 5480. John Wiley and Sons, Chichester.Google Scholar
Firsching, F. Henry 1961 Precipitation of Silver Phosphate from Homogeneous Solution. Analytical Chemistry 33:873887.Google Scholar
Fricke, Henry C, and O’Neil, James R. 1996 Inter- and Intra-tooth Variation in the Oxygen Isotope Composition of Mammalian Tooth Enamel Phosphate: Implications for Palaeoclimatological and Palaeobiological Research. Palaeogeography, Palaeoclimatology, Palaeoecology 126:9199.CrossRefGoogle Scholar
García de Miranda, Enriqueta, and Falcón de Gyves, Zaida 1986 Nueva atlas Porrúa de la república Mexicana, 7th ed. Editorial Porrúa, S.A., Mexico City.Google Scholar
Gómez, Sergio 1998 Nuevos datos sobre la relación de Teotihuacan y el occidente de México. In Antropología e historia del occidente de México: XXIV Mesa Redonda de la Sociedad Mexicana de Antropología, pp. 14611493. Sociedad Mexicana de Antropología, Mexico.Google Scholar
Grove, David C. 1987 Torches, “Knuckle Dusters” and the Legitimization of Formative Period Leadership. Mexican 9:6065.Google Scholar
Institute Geográfico Nacional 1972 Atlas nacional de Guatemala. Ministerio de Comunicaciones y Obras Públicas.Google Scholar
Jones, Christopher, and Satterthwaite, Linton 1982 The Monuments and Inscriptions of Tikal: The Carved Monuments. Tikal Report 33a. University Museum Publications, Philadelphia.CrossRefGoogle Scholar
Kidder, Alfred V., Jennings, Jesse D., and Shook, Edwin M. 1946 Excavations at Kaminaljuyú, Guatemala. Carnegie Institution of Washington, Washington, D.C. Google Scholar
Kohn, Matthew J. 1996 Predicting Animal d18O: Accounting for Diet and Physiological Adaptation. Geochimica et Cosmochimica Acta 60:48114829.CrossRefGoogle Scholar
Kohn, Matthew J., Schoeninger, Margaret J., and Valley, John W. 1996 Herbivore Tooth Oxygen Isotope Compositions: Effects of Diet and Physiology. Geochimica et Cosmochimica Acta 60:38893896.Google Scholar
Leonard, F., and Scullin, R. I. 1969 New Mechanism for Calcification of Skeletal Tissues. Nature 224:11131115.Google Scholar
Levinson, Alfred A., Luz, Boaz, and Kolodny, Yehoshua 1987 Variations in Oxygen Isotopic Compositions of Human Teeth and Urinary Stones. Applied Geochemistry 2:367371.Google Scholar
Longinelli, Antonio 1984 Oxygen Isotopes in Mammal Bone Phosphate: A New Tool for Paleohydrological and Paleoclimatological Research? Geochimica et Cosmochimica Acta 48:385390.Google Scholar
Longinelli, Antonio, and Peretti Paladino, A. 1980 Oxygen Isotope Composition of Water from Mammal Blood: First Results. Mass Spectrometry in Biomedical, Medical and Environmental Research 1:135139.Google Scholar
López Austin, Alfredo, Luján, Leonardo López, and Sugiyama, Saburo 1991 The Temple of Quetzalcoatl at Teotihuacan: Its Possible Ideological Significance. Ancient Mesoamerica 2:93105.Google Scholar
Luz, Boaz, and Kolodny, Yehoshua 1985 Oxygen Isotope Variations in Phosphate of Biogenic Apatites. IV. Mammal Teeth and Bones. Earth and Planetary Science Letters 75:2936.Google Scholar
Luz, Boaz, Cormie, Alison B., and Schwarcz, Henry P. 1990 Oxygen Isotope Variations in Phosphate of Deer Bones. Geochimica et Cosmochimica Acta 54:17231728.Google Scholar
Luz, Boaz, Kolodny, Yehoshua, and Horowitz, Michal 1984 Fractionation of Oxygen Isotopes between Mammalian Bone-Phosphate and Environmental Drinking Water. Geochimica et Cosmochimica Acta 48:16891693.CrossRefGoogle Scholar
Massler, Maury, Schour, Isaac, and Poncher, H. G. 1941 Developmental Pattern of the Child as Reflected in the Calcification Pattern of Teeth. American Journal of Diseases of Children 62:3367.Google Scholar
McArthur, J. M., and Herczeg, A. 1990 Diagenetic Stability of the Isotopic Composition of Phosphate-Oxygen: Paleoenvironmental Implications. Phosphorite Research and Development, Geological Society Special Publication No. 52:119124.Google Scholar
Millon, Clara 1973 Painting, Writing, and Polity in Teotihuacan, Mexico. American Antiquity 38:294314.Google Scholar
Millon, René 1973 The Teotihuacan Map, Part I: Text. Urbanization at Teotihuacan, Mexico, vol. 1. University of Texas Press, Austin.Google Scholar
Millon, René 1976 Social Relations in Ancient Teotihuacan. In The Valley of Mexico, edited by Eric R. Wolf, pp. 205248. University of New Mexico Press, Albuquerque.Google Scholar
Millon, René 1981 Teotihuacan: City, State, and Civilization. In Supplement to the Handbook of Middle American Indians, vol. 1, Archaeology, edited by Jeremy A. Sabloff, pp. 198243. University of Texas Press, Austin.Google Scholar
Millon, René 1988 The Last Years of Teotihuacán Dominance. In The Collapse of Ancient States and Civilizations, edited by Norman Yoffee and George L. Cowgill, pp. 102164. University of Arizona Press, Tucson.CrossRefGoogle Scholar
Parfitt, A. M 1983 The Physiologic and Clinical Significance of Bone Histomorphometric Data. In Bone Histomorphometry: Techniques and Interpretation, edited by Robert R. Becker, pp. 143223. CRC Press, Boca Raton, Florida.Google Scholar
Pasztory, Esther 1988 A Reinterpretation of Teotihuacan and its Mural Painting Tradition. In Feathered Serpents and Flowering Trees: Reconstructing the Murals of Teotihuacan, edited by Kathleen Berrin, pp. 4577. The Fine Arts Museums of San Francisco, and the University of Washington Press, Seattle.Google Scholar
Pendergast, David M. 1971 Evidence of Early Teotihuacan-Lowland Maya Contact at Altun Ha. American Antiquity 36:455460.CrossRefGoogle Scholar
Price, T. Douglas, Manzanilla, Linda, and Middleton, William D. 2000 Immigration and the Ancient City of Teotihuacan in Mexico: A Study Using Strontium Isotope Ratios in Human Bone and Teeth. Journal of Archaeological Science 27:903913.Google Scholar
Quade, Jay, Cerling, Thure E., Barry, John C., Morgan, Michele E., Pilbeam, David R., Chivas, Allan R., Lee-Thorp, Julia A., and van der Merwe, Nikolaas J. 1992 A 16-Ma Record of Paleodiet Using Carbon and Oxygen Isotopes in Fossil Teeth from Pakistan. Chemical Geology 94:183192.Google Scholar
Rattray, Evelyn C. 1989 EI barrio de los comerciantes y el conjunto Tlamimilopa. Arqueología 5:105129.Google Scholar
Rattray, Evelyn C. 1990 The Identification of Ethnic Affiliation at the Merchants’ Barrio, Teotihuacan. In Etnoarqueología: primer coloquio Bosch-Gimpera, edited by Y. Sugiura and M.C. Serra, pp. 113138. Institutode Investigaciones Antropológicas, Universidad Nacional Autónoma de México, Mexico City.Google Scholar
Rattray, Evelyn C. 1993 The Oaxaca Barrio at Teotihuacan. Universidad de las Américas, Monografías Mesoamericanes no. 1, Puebla.Google Scholar
Reinhard, Ella, de Torres, Trinidad, and O’Neil, James R. 1996 18O/l6O Ratios of Cave Bear Tooth Enamel: A Record of Climate Variability During the Pleistocene. Palaeogeography, Palaeoclimatology, Palaeoecology 126:4559.Google Scholar
Sanders, William T., Parsons, Jeffrey, and Santley, Robert S. 1979 The Basin of Mexico. Academic Press, New York.Google Scholar
Sempowski, Martha L., and Spence, Michael 1994 Mortuary Practices and Skeletal Remains at Teotihuacan. Urbanization at Teotihuacan, Mexico, vol. 3. Series edited by René Millon. University of Utah Press, Salt Lake City.Google Scholar
Serrano, Carlos, Pimienta, Martha, and Gallardo, Alfonso 1991 Los entierros del Templo de Quetzalcoatl. Patrón de distribución por edad y sexo. Arqueología 6:5367.Google Scholar
Serrano, Carlos, Pimienta, Martha, and Gallardo, Alfonso 1997 Mutilaciones e incrustaciones dentarias en un entierro colectivo del Templo de Quetzalcóatl, Teotihuacan. Estudios de Antropología Biológica 6:295308.Google Scholar
Shemesh, Aldo 1990 Crystallinity and Diagenesis of Sedimentary Apatites. Geochimica et Cosmochimica Acta 54:24332438.CrossRefGoogle Scholar
Shemesh, Aldo Kolodny, Yehoshua, and Luz, Boaz 1983 Oxygen Isotopic Variations in Phosphate of Biogenic Apatites: II. Phosphoritic Rocks. Earth and Planetary Science Letters 64:405416.Google Scholar
Song, Rhan Ju 1997 Developmental Defects of Enamel in the Maya of Altun Ha, Belize: Implications for Ancient Maya Childhood Health. Unpublished Master’s thesis, Department of Anthropology, Trent University.Google Scholar
Spence, Michael W. 1989 Excavaciones recientes en Tlailotlacan, el barrio oaxaqueño de Teotihuacan. Arqueología 5:82104.Google Scholar
Spence, Michael W. 1992 Tlailotlacan, a Zapotec Enclave in Teotihuacan. In Art, Ideology and the City of Teotihuacan, edited by Janet C. Berlo. pp. 5988. Dumbarton Oaks, Washington, D.C.Google Scholar
Steinhauser, Ferdinand 1979 Climatic Atlas of North and Central America. World Map Organization, UNESCO. Cartographia, Budapest, Hungary.Google Scholar
Storey, Rebecca 1992 Life and Death in the Ancient City of Teotihuacan. University of Alabama Press, Tuscaloosa.Google Scholar
Stuart-Williams, Hilary LeQ., and Schwarcz, Henry P. 1995 Oxygen Isotope Analysis of Silver Orthophosphate Using a Reaction with Bromine. Geochimica et Cosmochimica Acta 58:38373841.Google Scholar
Stuart-Williams, Hilary LeQ., and Schwarcz, Henry P. 1997 Oxygen Isotope Determination of Climatic Variation using Phosphate from Beaver Bone, Tooth Enamel and Dentine. Geochimica et Cosmochimica Acta 61:25392550.CrossRefGoogle Scholar
Stuart-Williams, Hilary LeQ., Schwarcz, Henry P., White, Christine D., and Spence, Michael W. 1998 The Isotopic Composition and Diagenesis of Human Bone from Teotihuacan and Oaxaca, Mexico. Palaeogeography, Palaeoclimatology, Palaeoecology 126:114.Google Scholar
Sugiyama, Saburo 1989 Burials Dedicated to the Old Temple of Quetzalcoatl at Teotihuacan, Mexico. American Antiquity 54:85106.CrossRefGoogle Scholar
Sugiyama, Saburo 1993 Worldview Materialized in Teotihuacan, Mexico. Latin American Antiquity 4:103129.Google Scholar
Sugiyama, Saburo 1995 Mass Human Sacrifice and Symbolism of the Feathered Serpent Pyramid in Teotihuacan, Mexico. Unpublished Ph.D. Dissertation, Department of Anthropology, Arizona State University, Tempe.Google Scholar
Taube, Karl A. 1992 The Temple of Quetzalcoatl and the Cult of Sacred War at Teotihuacan. Res 21:5387.Google Scholar
Ubelaker, Douglas H. 1978 Human Skeletal Remains: Excavation, Analysis and Interpretation. Taraxacum, Washington, DC. Google Scholar
White, Christine D., Spence, Michael W., Hilary Le-Q, Stuart-Williams, and Schwarcz, Henry P. 1998 Oxygen Isotopes and the Identification of Geographical Origins: The Valley of Oaxaca versus the Valley of Mexico. Journal of Archaeological Science 25:643655.Google Scholar
White, Christine D., Longstaffe, Fred J., Spence, Michael W., and Law, Kimberley R. 2000a Teotihuacan State Representation at Kaminaljuyú: Evidence from Oxygen Isotopes. Journal of Anthropological Research 56:535558.Google Scholar
White, Christine D., Spence, Michael W., and Longstaffe, Fred J. 2000b The Identification of Foreigners in Mortuary Contexts using Oxygen-Isotope Ratios: Some Mesoamerican Examples. Paper presented at American Association of Physical Anthropologists, San Antonio.Google Scholar
White, Christine D., Spence, Michael W., Longstaffe, Fred J., Rattray, Evelyn C., and Law, Kimberley R. 2000c Un análisis de las proporciones de los isótopos del oxígeno en los entierros del barrio de los commerciantes. Segunda Mesa Redonda de Teotihuacan del Centra de Estudios Teotihuacanos. IN PRESS, Mexico.Google Scholar
White, Christine D., Longstaffe, Fred J., and Law, Kimberley R. 2001 Revisiting the Teotihuacan Connection at Altun Ha: Oxygen Isotope Analysis of Tomb f-8/1. Ancient Mesoamerica 12:6572.Google Scholar
Williams, Jocelyn 2000 The People Who Ate the Sea: Stable Isotopic Analysis of Diet at Marco Gonzalez and San Pedro, Belize. Unpublished Master’s thesis, Department of Anthropology, The University of Western Ontario.Google Scholar
Wright, Lori E., and Schwarcz, Henry P. 1996 Infra-red and Isotopic Evidence for Diagenesis of Bone Apatite at Dos Pilas, Guatemala. Journal of Archaeological Science 23:933944.Google Scholar
Williams, Jocelyn 1998 Stable Carbon and Oxygen Isotopes in Human Tooth Enamel: Identifying Breastfeeding and Weaning in Prehistory. American Journal of Physical Anthropology 106:118.Google Scholar
Williams, Jocelyn 1999 Correspondence Between Stable Carbon, Oxygen and Nitrogen Isotopes in Human Tooth Enamel and Dentine: Infant Diets and Weaning at Kaminaljuyú. Journal of A rchaeological Science 26:11591170.Google Scholar
Wright, Lori E., and White, Christine 1996 Human Biology in the Classic Maya Collapse: Evidence from Paleopathology and Paleodiet. Journal of World Prehistory 10:147198.Google Scholar
Yurtsever, Yuecel, and Gat, Joel R. 1981 Atmospheric Waters. In Stable Isotope Hydrology: Deuterium and Oxygen-18 in the Water Cycle, Technical Report Series, no. 210, edited by Joel R. Gat and Roberto Gonfiantini, pp 103142, International Atomic Energy Agency, Vienna.Google Scholar