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Late Pleistocene Human Friction Skin Prints from Pendejo Cave, New Mexico

Published online by Cambridge University Press:  20 January 2017

Donald Chrisman
Affiliation:
Andover Foundation for Archaeological Research, Box 83, Andover, MA 01810
Richard S. MacNeish
Affiliation:
Andover Foundation for Archaeological Research, Box 83, Andover, MA 01810
Jamshed Mavalwala
Affiliation:
Department of Anthropology, University of Toronto, Toronto, Ontario, Canada M5S 1A1
Howard Savage
Affiliation:
Department of Anthropology, University of Toronto, Toronto, Ontario, Canada M5S 1A1

Abstract

In the excavation of Pendejo Cave (FB 9366) near Orogrande, New Mexico, 16 friction skin imprints were found in five stratified zones on clay nodules, baked at over 120°C. After careful analysis, expert dermatoglyphologists determined that these imprints had positive primate characteristics. The imprints are probably of human origin, since no other primates are known to have existed in prehistoric New Mexico. Eight of the imprints occurred in three well-dated zones falling in the late Pleistocene. These zones have direct radiocarbon dates between 12,000 and 37,000 B.P. In addition to their association with radiocarbon determinations, the prints come from three of 24 stratified zones, intensively studied by geologists and pedologists, that are dated in sequence by 34 other radiocarbon determinations acquired from four different laboratories. The imprints are associated with a column of over 35,000 paleontological specimens and more than 15,000 botanical remains. These specimens indicate Pleistocene changes and supply evidence of human transportation and modification of various materials. The prints are also associated with artifacts, ecofacts, features of human construction, and human remains. The imprint specimens therefore provide evidence of Pleistocene human occupation in the New World.

Resumen

Resumen

En la excavatión de la Cueva Pendejo (FB 9366) cerca de Orogrande, Nuevo México, se encontraron 16 huellas de fricción de piel en nódulos de arcilla cocidos a más de 120°C, en cinco zonas estratificadas. Un análisis detallado realizado por dermatoglifólogos determinó que estas huellas tienen caracteristícas de primates. En otras palabras, estas huellas probablemente son de origen humano, debido a que no existieron otros primates en Nuevo México prehistórico. Ocho de las huellas ocurrieron en tres zonas que datan del Pleistoceno tardío. Estas zonas tienen fechados radiocarbónicos entre 12.000 y 37.000 a.P. Además de su asociación con fechados radiocarbónicos, las huellas se originan en tres de las 24 zonas estratificadas fechadas en secuencia por otras 34 determinaciones radiocarbónicas y obtenidas de cuatro laboratorios diferentes. Las huellas estdn asociadas con una columna paleontológica, estudiada en detalle por geólogos y pedólogos, de más de 35.000 especímenes y más de 15.000 restos botánicos, los cuales indican cambios en el Pleistoceno y proveen evidencia de transporte humano y/o modification de varios materiales. Las huellas estdn asociadas con artefactos, ecofactos, rasgos de constructión humana, y restos humanos. Estas huellas, por lo tanto, son evidencia de occupatión humana del Pleistoceno en el Nuevo Mundo.

Type
Reports
Copyright
Copyright © The Society for American Archaeology 1996

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References

References Cited

Adovasio, J. M, and Hyland, D. C. 1993 Paleo-Indian Perishables from Pendejo Cave: A Brief Summary. Paper presented at the 48th Annual Meeting of the Society for American Archaeology, St. Louis.Google Scholar
Berry, J. 1979 Ridge Detail in Nature. Fingerprint Whorld 1979: 1-8 . South Hatfield, Hertsfordshire, Great Britain.Google Scholar
Betancourt, J. 1977 Survey Report of 1977. Copies available from Environmental Office, Ft. Bliss, El Paso, Texas.Google Scholar
Clemons, R. 1992 Interpretation of Petrographic Analysis of Samples from Pendejo Cave. Manuscript on file with the Andover Foundation for Archaeological Research, Andover, Massachusetts.Google Scholar
Cummins, H., and Midlo, C. 1943 Fingerprints, Palms and Soles. Blakiston Company, Philadelphia.Google Scholar
Cummins, H., and Midlo, C. 1992 Excavation, Stratigraphy and Chronometrics of Pendejo Cave. Manuscript on file with Andover Foundation for Archaeological Research, Andover, Massachusetts.Google Scholar
Gile, L. H., Hawley, J. W. and Grossman, R. B. 1981 Soils and Geomorphology in the Basin and Range Area of Southern New Mexico-Guidebook to the Desert Project. Memoir 39. New Mexico Bureau of Mines and Mineral Resources, Socorro, New Mexico.Google Scholar
Gish, J. 1995 Preliminary Flotation and Pollen Results from Pendejo Cave, Otero County, New Mexico. Manuscript on file with Andover Foundation for Archaeological Research, Andover, Massachusetts.Google Scholar
Griffin, J. B. 1979 The Origin and Dispersion of American Indians in North America. In The First Americans: Origins, Affinities and Adaptations, edited by Laughlin, W. and Harper, A., pp. 4355. Gustav Fischer, New York.Google Scholar
Harris, A. 1992 Paleontology of Southern New Mexico and Pendejo Cave. Manuscript on file with Andover Foundation for Archaeological Research, Andover, Massachusetts.Google Scholar
Harris, E. C. 1989 Principles of Archaeological Stratigraphy. Academic Press, London.Google Scholar
Hawley, J. W. 1992 Geomorphic Setting and Late Quaternary History of Pluvial-lake Basins in the Southern New Mexico Region. Manuscript on file with the Andover Foundation for Archaeological Research, Andover, Massachusetts.Google Scholar
Haynes, C. V. 1967 Carbon 14 Dates and Early Man in the New World. In Pleistocene Extinctions: The Search for a Cause, edited by Martin, P. S. and Wright, H.E. pp 267-287. Yale University Press, New Haven, Connecticut.Google Scholar
Haynes, C. V. 1991 Geoarchaeological and Paleohydrological Evidence for a Clovis-age Drought in North America and Its Bearing on Extinctions. Quaternary Research 35: 438450.Google Scholar
Hiles, H. 1992 Plants of Pendejo Cave and the Modern Flora of Rough Canyon. Manuscript on file with Andover Foundation for Archaeological Research, Andover, Massachusetts.Google Scholar
McFaul, M. 1992 Pedalogical Studies of the Sediments of Pendejo Cave. Manuscript on file with Andover Foundation for Archaeological Research, Andover, Massachusetts.Google Scholar
MacNeish, R. S. 1992 The 1992 Excavations of Pendejo and Pintada Caves near Orogrande, New Mexico—An AFAR and Fort Bliss Archaeological Project. Manuscript on file with Andover Foundation for Archaeological Research, Andover, Massachusetts.Google Scholar
MacNeish, R. S., Cunnar, G., Jessop, G., and Wilner, P. 1993 A Summary of the Paleo-Indian Discoveries in Pendejo Cave near Orogrande, NM-The Annual Report of AFAR for 1993. Andover, Massachusetts.Google Scholar
MacNeish, R. S., Fowler, M., Cook, A., Peterson, F., Nelken, A. 1975 Excavation and Reconnaissance. In The Prehistory of the Tehuacan Valley, vol. 5, pp. 6972. University of Texas Press, Austin.Google Scholar
Martin, P. S. 1973 The Discovery of America. Science 179: 969174.Google Scholar
Mavalwala, J. 1977 Dermatoglyphics, Worldwide Bibliography. Mouton Press, The Hague, The Netherlands.CrossRefGoogle Scholar
Pavlish, L. A. 1994 Report, Neutron Activation Analyses of FB 9366-61285-337. Manuscript on file with Andover Foundation for Archaeological Research, Andover, Massachusetts.Google Scholar
Pettijohn, F. J., and Potter, P. E. 1964 Atlas and Glossary of Primary Structures. Springer Verlag, New York.Google Scholar
Raven, P. H., Evart, R. F., and Eichhorn, S. E. 1992 The Biology of Plants. Worth, New York.Google Scholar
Smith, P. E. L. 1976 Stone Age Man on the Nile. Scientific American 235: 3038.Google Scholar
Soffer, O., Vandiver, P., Klima, B., and Svoboda, J. 1993 The Pyrotechnology of Performance Art: Moravian Venuses and Wolverines. In Before Lascaux, edited by Knicht, H., A. Pike-Tay, and R. White, pp. 259264. CRC Press, Boca Raton, Florida.Google Scholar
Waters, M. R. 1985 Early Man in the New World: An Evaluation of the Radiocarbon Dated Pre-Clovis Sites in the Americas. In Environment and Extinctions, edited by Mead, J. I. and Meltzer, D.J. pp. 125143. Center for the Study of Early Man. University of Maine, Orono.Google Scholar