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Regional variation in the terminal Pleistocene and early Holocene radiocarbon record of eastern North America

Published online by Cambridge University Press:  20 January 2017

D. Shane Miller*
Affiliation:
School of Anthropology, University of Arizona, 1009 East South Campus Drive, P.O. Box 210030, Tucson, AZ 85721, USA
Joseph A.M. Gingerich
Affiliation:
Department of Anthropology (MRC-112), Paleoindian Program, NMNH Smithsonian Institution, Washington, DC 20560, USA
*
*Corresponding author. E-mail addresses:[email protected] (D.S. Miller),[email protected] (J.A.M. Gingerich).

Abstract

In this paper we use radiocarbon dates to evaluate the signature of the Younger Dryas Chronozone (YDC) in eastern North America. Using an approach that examines radiocarbon dates by region, we argue that the northeastern United States shows a better overall representation of radiocarbon dates when compared to the Mid-Atlantic and Southeast. These data result in a peak in summed probability distributions during the YDC, which is often interpreted as evidence of population growth. Further examination of these distributions, however, illustrates that differential standard deviations, varying sample size, and the effect of taphonomic and research biases likely overwhelm any demographic signatures in our study sample. Consequently, the frequency of radiocarbon dates by itself is insufficient for understanding the relationship between climate, culture and demography in eastern North America.

Type
Research Article
Copyright
University of Washington

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References

Adovasio, J.M., Gunn, J.D., Donahue, J., and Stuckenrath, R. Meadowcroft Rockshelter, 1977: an overview. American Antiquity 43, (1978). 632651.Google Scholar
Adovasio, J.M., Donohue, J., Guilday, J.E., Stuckenrath, R., Gunn, J.D., and Johnson, W.C. Meadowcroft Rockshelter and the peopling of the new world. Shutler, R.S. Early Man in the New World. (1983). Sage Publications, Beverly Hills. 163190.Google Scholar
Adovasio, J.M., Donahue, J., and Carlisle, R.C. Meadowcroft Rockshelter and the Pleistocene/Holocene Transition in Southwest Pennsylvania. Genoways, H.H., and Dawson, M.R. Contributions in Quaternary Vertebrate Paleontology: A. Memorial to John E. Guilday in, (1984). Carnegie Museum of Natural History, Pittsburgh. 347369.Google Scholar
Adovasio, J.M., Pedler, D., Donahue, J., and Stuckenrath, R. No vestiges of a beginning nor prospect for an end: two decades of debate on Meadowcroft Rockshelter. Bonnichsen, R., and Turnmire, K.L. Ice Age Peoples of North America Environments, Origins, and Adaptations of the First Americans. (1999). Center for the Study of the First Americans, Oregon State University, Corvallis. 416431.Google Scholar
Alley, R. Wally was right: predictive ability of the North Atlantic ‘Conveyor Belt’ hypothesis for abrupt climate change. Annual Review of Earth and Planetary Sciences 35, (2007). 241272.Google Scholar
Anderson, D.G. Paleoindian colonization of Eastern North America: a view from the Southeastern United States. Tankersley, K., and Isaac, B. Early Paleoindian Economies of Eastern North America. Research in Economic Anthropology, Supplement 5, (1990). JAI Press, Greenwich. 163216.Google Scholar
Anderson, D.G. Climate and culture change in Prehistoric and Early Historic Eastern North America. Archaeology of Eastern North America 29, (2001). 143186.Google Scholar
Anderson, D.G. Pleistocene human occupation of the Southeastern United States: research directions for the early 21st century. Bonnichsen, R., Lepper, B.T., Stanford, D., and Waters, M.R. Paleoamerican Origins: Beyond Clovis. (2005). Texas A&M University Press, College Station. 2942.Google Scholar
Anderson, D.G., and Faught, M.K. Paleoindian artifact distributions: evidence and implications. Antiquity 74, (2000). 507513.CrossRefGoogle Scholar
Anderson, D.G., Brose, D., Dincauze, D.F., Shott, M.J., and Waldbauer, R. Earliest Americans theme study for the eastern United States. Seibert, M. (2004). Department of the Interior, National Park Service, Washington, D.C.Google Scholar
Anderson, D.G., Meeks, S.C., Goodyear, A.C., and Miller, D.S. Southeastern data inconsistent with Paleoindian demographic reconstruction. Proceedings of the National Academy of Sciences 105, (2008). E108 CrossRefGoogle ScholarPubMed
Anderson, D.G., Goodyear, A.C., Stafford, T.W., Kennett, J., and West, A. Potential human population decline/reorganization during the Younger Dryas in North America (ABSTRACT). American Geophysical Union Fall Meeting. (2009). Google Scholar
Anderson, D.G., Miller, D.S., Yerka, S.J., Gillam, J.C., Johanson, E.N., Anderson, D.T., Goodyear, A.C., and Smallwood, A.M. PIDBA (Paleoindian Database of the Americas) 2010: current status and findings. Archaeology of Eastern North America 38, (2010). 118.Google Scholar
Anderson, D.G., Goodyear, A.C., Kennett, J., and West, A. Multiple lines of evidence for a possible human population decline during the early Younger Dryas. Quaternary International 242, (2011). 570583.Google Scholar
Asch Sidell, N. Paleoethnobotanical indicators of subsistence and settlement change in the Northeast. New York State Museum Bulletin 496, (1999). 241263.Google Scholar
Ballenger, J.A.M., and Mabry, J.B. Temporal frequency distributions of alluvium in the American Southwest: taphonomic, paleohydraulic, and demographic implications. Journal of Archaeological Science 38, (2011). 13141325.Google Scholar
Bamforth, D., and Grund, B. Radiocarbon calibration curves, summed probability distributions, and early Paleoindian population trends in North America. Journal of Archaeological Science 39, 6 (2012). 17681774.Google Scholar
Barker, G., and Broster, J.B. The Johnson Site (40Dv400): a dated Paleoindian and early Archaic occupation in Tennessee's Central Basin. Journal of Alabama Archaeology 42, (1996). 97153.Google Scholar
Bement, L.C., and Carter, B.J. Jake Bluff: bison hunting on the Southern Plains North America. American Antiquity 75, 4 (2010). 907934.Google Scholar
Boldurian, A.T., and Cotter, J.L. Clovis Revisited: New Perspectives on Paleoindian Adaptations from Blackwater Draw, New Mexico. (1999). University Museum, University of Pennsylvania, Philadelphia.CrossRefGoogle Scholar
Bolian, C.E. The Early and Middle Archaic of the Lakes Region, New Hampshire. Occasional Publications in Northeastern Anthropology 7, (1980). 115134.Google Scholar
Bonnichsen, R., and Will, R.F. Radiocarbon chronology of Northeastern Paleoamerican sites; discriminating natural and human burn features. Bonnichsen, R., and Turnmire, K.L. Ice Age Peoples of North America: Environments, Origins, and Adaptations of the First Americans. (1999). Center for the Study of the First Americans, Oregon State University, Corvallis. 395415.Google Scholar
Bradbury, A.P., and Creasman, S.D. Spatial analysis and site structure of the early archaic occupation of the Hart Site (15LA183), Lawrence County, Kentucky. Southeastern Archaeology 27, (2008). 3144.Google Scholar
Bradley, J., Speiss, A., Boisverty, R., and Boudreau, J. What's the point? Modal forms and attributes of Paleoindian bifaces in the New England-Maritimes Region. Archaeology of Eastern North America 36, (2008). Google Scholar
Brennan, L.A. A compilation of fluted points of Eastern North America by count and distribution: an AENA Project. Archaeology of Eastern North America 10, (1982). 2746.Google Scholar
Bronk Ramsey, C. Bayesian analysis of radiocarbon dates. Radiocarbon 51, (2009). 337360.Google Scholar
Brookes, S.O. The Hester Site: an Early Archaic occupation in Monroe County, Mississippi. Archaeology Report 5, (1979). Mississippi Department of Archives and History, Google Scholar
Brose, D.S. Archaeological investigation at the Paleo Crossing Site, a Paleoindian occupation in Medina County, Ohio. Dancy, W.S. The First Discovery of America: Archaeological Evidence of the Early Inhabitants of the Ohio Area. (1994). Ohio Archaeological Council, Columbus. 6176.Google Scholar
Broster, J.B., Norton, M.R., Hulan, R., and Durham, E. Paleoamerican and Early Archaic occupations of the Widimeier Site (40Dv9), Davidson County, Tennessee. Current Research in the Pleistocene 25, (2008). 6465.Google Scholar
Broster, J., Norton, M.R., Miller, D.S., Tune, J.W., and Baker, J.D. Tennessee's Paleoindian record. Gingerich, J.A.M. In The Eastern Fluted Point Tradition. (2013). University of Utah Press, Salt Lake. 299314.Google Scholar
Broyles, B.J. Preliminary report: the St. Albans Site (46KA27), Kanawha County. The West Virginia Archaeologist 19, (1966). 143.Google Scholar
Buchanan, B. The effects of sample bias on Paleoindian fluted point recovery in the United States. North American Archaeologist 24, (2003). 311338.Google Scholar
Buchanan, B., Collard, M., and Edinborough, K. Paleoindian demography and the extraterrestrial impact hypothesis. Proceedings of the National Academy of Sciences 105, (2008). 11,65111,654.Google Scholar
Buchanan, B., Hamilton, M., Edinborough, K., O'Brien, M.J., and Collard, M. A comment on Steele's (2010) “Radiocarbon dates as data: quantitative strategies for estimating colonization front speeds and event densities.”. Journal of Archaeological Science 38, (2011). 21162122.Google Scholar
Byers, D.S. Radiocarbon dates from the Bull Brook Site, Massachusetts. American Antiquity 24, 4 (1959). 427429.Google Scholar
Carr, K.W. Core reconstructions and community patterning at the Fifty Site. Journal of Middle Atlantic Archaeology 2, (1986). 7992.Google Scholar
Carr, K.W. The Early Archaic Period in Pennsylvania. Pennsylvania Archaeologist 68, 2 (1998). 4269.Google Scholar
Cavallo, J.A. Turkey Swamp: a Late Paleo-Indian Site in New Jersey's Coastal Plain. Archaeology of Eastern North America 9, (1981). 118.Google Scholar
Chamberlain, T.C. The method of multiple working hypotheses. Science 15, (1890). 9296.Google Scholar
Chapman, J. The Archaic Period in the Lower Little Tennessee River Valley: radiocarbon dates. Tennessee Anthropologist 1, (1976). 112.Google Scholar
Childress, W., and Blanton, D.B. A radiocarbon date from a deeply buried stratum yielding a plano-like projectile point from the Smith Mountain Site in Virginia. Current Research in the Pleistocene 14, (1997). 1214.Google Scholar
Clausen, C.J., Cohen, A.D., Emiliani, C., Holman, J.A., and Stipp, J.J. Little Salt Spring, Florida: a unique underwater site. Science 203, (1979). 609614.Google Scholar
Collard, M., Buchanan, B., and Edinborough, K. Reply to Anderson et al., Jones, Kennett and West, Culleton, and Kennett et al.: further evidence against the extraterrestrial impact hypothesis. Proceedings of the National Academy of Sciences 105, (2008). E112 CrossRefGoogle Scholar
Collard, M., Buchanan, B., Hamilton, M., and O'Brian, M. Testing hypotheses about Early Paleoindians with radiocarbon dates. Paper Presented at the 76th Annual Meeting for the Society for American Archaeology, Sacramento, California. (2011). Google Scholar
Collins, M.B. Wilson Leonard: An 11,000-Year Archaeological Record of Hunter-Gatherers in Central Texas. (1998). Texas Archaeological Research Laboratory, University of Texas, Austin.Google Scholar
Cramér, H. Mathematical Methods of Statistics. (1946). Princeton University Press, Princeton.Google Scholar
Crook, M.R. Jr. Rae's Creek: A Multicomponent Archaeological Site at the Fall Line along the Savannah River. (1990). Department of Anthropology, Georgia State University, Atlanta.Google Scholar
Culleton, B.J. Crude demographic proxy reveals nothing about Paleoindian population. Proceedings of the National Academy of Sciences 105, (2008). E111 Google Scholar
Curran, M.L. The Whipple Site and Paleoindian tool assemblage variation: a comparison of intrasite structuring. Archaeology of Eastern North America 12, (1984). 540.Google Scholar
Curran, M.L. Paleoindians in the Northeast: the problem of dating fluted point sites. The Review of Archaeology 17, (1996). 211.Google Scholar
Curran, M.L. Exploration, Colonization and Settling In: The Bull Brook Phase, Antecedents, and Descendants. Levine, M.A., Sassaman, K.E., and Nassaney, M.S. The Archaeological Northeast. (1999). Bergin and Garvey, Westport. 324.Google Scholar
Custer, J.F., Watson, S.C., and Bailey, D.N. Data Recovery Investigations of the West Water Street Site, 36Cn175, Lock Haven, Clinton County, Pennsylvania. Report submitted to the U.S. Army Corps of Engineers, Baltimore District. (1994). University of Delaware, Newark.Google Scholar
Daniel, I.R., and Goodyear, A.C. An Update on the North Carolina Fluted-Point Survey. Current Research in the Pleistocene 23, (2006). 99101.Google Scholar
Daniel, I.R. Jr., Seramur, K.C., Potts, T.L., and Jorgenson, M.W. Searching a sand dune: shovel testing the Barber Creek Site. North Carolina Archaeology 57, (2008). 128.Google Scholar
Dansie, A., and Jerrems, W. More bits and pieces: a new look at Lahontan chronology and human occupation. Bonnichsen, R., Lepper, B., Stanford, D.J., and Waters, M.R. Paleoamerican Origins: Beyond Clovis. (2005). Center for the Study of the First Americans, College Station. 5179.Google Scholar
Dejarnette, D.L., and Knight, V.J. LaGrange. Journal of Alabama archaeology 12, (1976). 160.Google Scholar
Dejarnette, D.L., Kurjack, E.B., and Cambron, J.W. Excavations at the Stanfield-Worley Bluff Shelter. Journal of Alabama archaeology 8, (1962). 1124.Google Scholar
Dent, R.J. Paleoindian of the Upper Delaware Valley: revisiting Shawnee-Minisink and nearby sites. Carr, K.W., and Adovasio, J.M. Ice Age Peoples of Pennsylvania. (2002). The Pennsylvania Historical and Museum Commission, Harrisburg. 5178.Google Scholar
Deter-Wolf, A., Tune, J.W., and Broster, J.B. Excavations and dating of Late Pleistocene and Paleoindian deposits at Coats-Hines, Williamson County Tennessee. Tennessee Archaeology 5, 2 (2011). 142156.Google Scholar
Doran, G.H. The Windover radiocarbon chronology. Doran, G.H. Windover. (2002). University Press of Florida, Gainesville.Google Scholar
Doran, G.H., and Dickel, D.N. Radiometric chronology fo the Archaic Windover archaeological site (8-Br-246). Florida Anthropologist 41, (1988). 365380.Google Scholar
Dunbar, J.S. Pleistocene-Early Holocene climate change: chronostratigraphy and geoclimate of the Southeast US. Webb, S.J. First Floridians and Last Mastadons: The Page-Ladson Site in the Aucilla River. (2006). Springer Press, The Netherlands. 103158.Google Scholar
Dunbar, J.S., and Vojnovski, P. Early Floridians and Late Mega Mammals: some technological and dietary evidence from four North Florida Paleoindian sites. Walker, R., and Driskell, B.N. Foragers in the Terminal Pleistocene in North America. (2007). University of Nebraska Press, Lincoln. 166202.Google Scholar
Dunnell, R.C. The role of the southeast in American archaeology. Southeastern Archaeology 9, (1990). 1122.Google Scholar
Elliott, D.T., Ledbetter, R.J., and Gordon, E.A. Data recovery at Lover's lane, Phinizy Swamp, and the Old Dike Sites Bobby Jones Expressway Extension Corridor Augusta, Georgia. (1994). Southeastern Archeological Services, Inc., Athens, Georgia.Google Scholar
Ellis, C.J., Carr, D.H., and Loebel, T.J. The Younger Dryas and Late Pleistocene peoples of the Great Lakes Region. Quaternary International 242, (2011). 534535.Google Scholar
Eren, M.I. Paleoindian stability during the Younger Dryas in the North America Lower Great Lakes. Shea, J., and Lieberman, D. Transitions in Prehistory: Papers in Honor of Ofer Bar-Yosef. (2009). Harvard University American School of Prehistoric Research Press, Cambridge. 385417.Google Scholar
Faught, M.K. Archaeological roots of human diversity in the new world: a compilation of accurate and precise radiocarbon ages from the earliest sites. American Antiquity 73, (2008). 670698.Google Scholar
Faught, M.K., Hornum, M.B., Goodwin, R.C., Carter, B., and Webb, S.D. The Earliest-Holocene Tool Assemblages from Northern Florida with Stratigraphically Controlled Radiocarbon Estiates (Sites 8LE2105 and 8JE591). Current Research in the Pleistocene 20, (2003). 1618.Google Scholar
Fiedel, S.J. Older than we thought: implications of corrected dates for Paleoindians. American Antiquity 64, (1999). 95116.Google Scholar
Fiedel, S.J. The mysterious onset of the Younger Dryas. Quaternary International 242, (2011). 262266.Google Scholar
Fiedel, S.J., and Kuzman, Y. Is more precise dating of Paleoindian expansion feasible?. Radiocarbon 52, 2–3 (2010). 337345.Google Scholar
Firestone, R.B. et al. Evidence for an extraterrestrial impact 12,900 years ago that contributed to the megafaunal extinctions and the Younger Dryas cooling. Proceedings of the National Academy of Sciences 104, (2007). 16,01616,021.Google Scholar
Frison, G.C. The Carter/Kerr-McGee Paleoindian Site: cultural resource management and archaeological research. American Antiquity 79, (1984). 288314.Google Scholar
Funk, R.E., and Wellman, B. Evidence of Early Holocene occupations in the Upper Susquehanna Valley, New York State. Archaeology of Eastern North America 12, (1984). 81109.Google Scholar
Futato, E. Radiocarbon dates from the Tennessee Valley of Northern Alabama. The Tennessee Archaeological Society Newsletter 22, (1977). 3542.Google Scholar
Gamble, C., Davies, W., Pettit, P., and Richards, M. Climate change and evolving human diversity in Europe during the Last Glacial. Philosophical Transactions of the Royal Society of London 359, (2004). 243254.Google Scholar
Gamble, C., Davies, W., Pettit, P., Hazelwood, L., and Richards, M. The archaeological and genetic foundations of the European population during the Late Glacial: implications for “Agricultural Thinking.”. Cambridge Archaeological Journal 15, (2005). 193223.Google Scholar
Gardner, W.M. The Flint Run Complex: pattern and process during the Paleo-Indian to Early Archaic. Gardner, William M. The Flint Run Paleoindian Complex: A Preliminary Report, 1971–1973 Seasons. (1974). Catholic University of America Archaeology Laboratory, Washington D.C. 547. (Occasional Publication No. 1) Google Scholar
Gingerich, J.A.M. Shawnee-Minisink Revisited: New Excavations of the Paleoindian Level. (2007). Anthropology, University of Wyoming, Laramie.Google Scholar
Gingerich, J.A.M. Down to seeds and stones: a new look at the subsistence remains from Shawnee-Minisink. American Antiquity 76, (2011). 127144.Google Scholar
Gingerich, J.A.M., and Waters, M.R. New dates from the Shawnee-Minisink Site, Pennsylvania. Current Research in the Pleistocene 24, (2007). 9092.Google Scholar
Goodyear, A.C. The Early Holocene occupation of the Southeastern United States: a geoarchaeological summary. Bonnichsen, R., and Turmire, K. Ice Age Peoples of North America. (1999). Oregon State University Press, Corvallis. 432481.Google Scholar
Goodyear, A.C. Recognizing the Redstone Fluted Point in the South Carolina Paleoindian Point Database. Current Research in the Pleistocene 23, (2006). 112114.Google Scholar
Gramly, R.M. The Vail Site: A Paleoindian Encampment in Maine. (1982). Buffalo Society of Natural Sciences, Buffalo, New York.Google Scholar
Gramly, R.M., and Funk, R.E. What is known and not known about the human occupation of the Northeastern United States until 10,000 B.P. Archaeology of Eastern North America 18 (1990). 531.Google Scholar
Griffin, J.W. Investigations in Russell Cave. (1974). U.S. Government Printing Office, Washington, D.C.Google Scholar
Hall, R., Roy, D., and Boling, D. Pleistocene migration routes in the Americas: human biological adaptations and environmental constraints. Evolutionary Anthroplogy 13, (2004). 132144.Google Scholar
Haynes, C.V. Jr. Fluted Points in the East and West. Archaeology of Eastern North America 83, (1983). 2426.Google Scholar
Haynes, C.V. Clovis, pre-clovis, climate change, and extinction. Robsen Bonnichsen, B.T.L., Stanford, Dennis, and Waters, Michael R. Paleoamerican Origins: Beyond Clovis. (2005). Center for the Study of the First Americans, Texas A&M University Press, College Station, Texas. 113132.Google Scholar
Haynes, C.V. Jr. Younger Dryas ‘Black Mats’ and the Rancholabrean termination in North America. Proceedings of the National Academy of Sciences 105, (2008). 65206525.Google Scholar
Haynes, C.V. Jr., Donahue, J., Jull, J.T., and Zabel, T.H. Application of accelerator dating to fluted point Paleoindian sites. Archaeology of Eastern North America 12, (1984). 184191.Google Scholar
Hemmings, C.A. An update on recent work at Sloth Hole (8JE121), Aucilla River, Jefferson County, Florida. Current Research in the Pleistocene 22, (2005). 4748.Google Scholar
Herbstritt, A reference for Pennsylvania radiocarbon dates. Pennsylvania Archaeologist 58, (1988). 129.Google Scholar
Hoffman, C. Radiocarbon dates from Massachusetts: an annotated listing, Bulletin of the Massachusetts. Archaeological Society 49, (1988). 2139.Google Scholar
Holliday, V.T., and Meltzer, D.J. The 12.9 k ET impact hypothesis and North American Paleoindians. Current Anthropology 51, (2010). 575607.Google Scholar
Inashima, P.Y. Establishing a radiocarbon date based framework for Northeastern Virginia Archeology. Quarterly Bulletin of the Archeological Society of Virginia 63, (2008). Google Scholar
Johnson, E., and Holliday, V.T. Archaeology and Late Quaternary environments of the Southern High Plains. Perttula, T.K. Prehistory of Texas. (2004). Texas A&M University Press, College Station. 283295.Google Scholar
Kitchel, N.R., and Boisvert, R. New radiocarbon date from the Colebrook Paleoindian site. New Hampshire Archaeological Society Newsletter 27, 1 (2011). 3 Google Scholar
Kuzmin, Y.V., and Keates, S.G. Dates are not just data: Paleolithic settlement patterns in Siberia derived from radiocarbon dates. American Antiquity 70, (2005). CrossRefGoogle Scholar
Larson, M.L., Kornfeld, M., and Frison, G.C. Hell Gap: A Stratified Paleoindian Campsite at the Edge of the Rockies. (2009). University of Utah Press, Salt Lake City.Google Scholar
Laub, R.S. The Paleoindian presence in the Northeast: a view from the Hiscock site. Carr, K.W., and Adovasio, J.M. Ice Age People of Pennsylvania. (2002). Pennsylvania Historical and Museum Commission, 105122.Google Scholar
Leigh, D.S. Late Pleistocene braided rivers of the Atlantic Coastal Plain, USA. Quaternary Science Reviews 23, (2004). 6584.Google Scholar
Leigh, D.S. Terminal Pleistocene braided to meandering transition in rivers of the Southeastern USA. Catena 66, (2006). 155160.CrossRefGoogle Scholar
Levine, M.A. Accomodating age: radiocarbon results and fluted point sites in Northeastern North America. Archaeology of Eastern North America 18, (1990). 3360.Google Scholar
Lothrop, J.C., Newby, P., Spiess, A., and Bradley, J. Paleoindians and the Younger Dryas in the New England-Maritimes Region. Quaternary International 242, (2011). 546569.Google Scholar
Lovvorn, M.B., Frison, G.C., and Tieszen, L.L. Paleoclimate and Amerindians: evidence from stable isotopes and atmospheric circulation. Proceedings of the National Academy of Sciences 98, (2001). 24852490.Google Scholar
MacDonald, G. Debert: a Paleo-Indian site in Central Nova Scotia. (1968). Persimmon Press, Buffalo.Google Scholar
Mann, H.B., and Whitney, D.R. On a test of whether one of two random variables is stochastically larger than the other. Annals of Mathematical Statistics 18, (1947). 5060.Google Scholar
Maslowski, R.F., Niquette, C.M., and Wingfield, D.M. The Kentucky, Ohio and West Virginia radiocarbon database. The West Virginia Archaeologist 47, (1995). 175.Google Scholar
Mason, R.J. The Paleo-Indian tradition in Eastern North America. Current Anthropology 3, (1962). 227228.Google Scholar
McAvoy, J.D., and McAvoy, L.D. Archaeological investigations of Site 44SX202, Cactus Hill, Sussex County, Virginia. Virginia Department of Historic Resources Research Report No. 8. (1997). Google Scholar
McAvoy, J.D., Baker, J.C., Feathers, J.K., Hodges, R.L., McWeeney, L.J., and Whyte, T.R. Summary of research at the Cactus Hill Archaeological Site, 44SX202, Sussex County, Virginia. Report Submitted to the National Geographic Society in Compliance with Stipulations of grant #6345-98. (2000). Google Scholar
McDonald, J.N. An Outline of the Pre-Clovis Archaeology of SV-2, Saltsville, Virginia, with Special Attention to a Bone Tool Dated 14,510 Yrs B.P. Jeffersonia 9, (2000). 160.Google Scholar
McPhee, R.D., Tikhonov, A.N., Mol, D., Marliave, C.d, van der Plict, H., Greenwood, A.D., Flemming, C., and Agenbroad, L. Radiocarbon chronologies and extinction dynamics of the Late Quaternary mammalian megafauna of the Taimyr Peninsula, Russian Federation. Journal of Archaeological Science 29, (2002). 10171042.Google Scholar
McWeeney, L.J. Archaeological Settlment Patterns and Vegetation Dynamics in Southern New England in the Late Quaternary. (1994). Yale University, Google Scholar
Meeks, S.C., and Anderson, D.G. Evaluating the effect of the Younger Dryas on human population histories in the Southeastern United States. Eren, M. Hunter-Gatherer Behavior: Human Response During The Younger Dryas. (2012). Left Coast Press, Walnut Creek. 111138.Google Scholar
Meltzer, D.J. Late Pleistocene human adaptations in Eastern North America. Journal of World Prehistory 2, (1988). 153.Google Scholar
Meltzer, D.J. The First Peoples in a New World: Colonizing Ice Age America. (2009). University of California Press, Berkeley.Google Scholar
Meltzer, D.J., and Holliday, V.T. Wound North American Paleoindians have noticed the Younger Dryas age climate change?. Journal of World Prehistory 23, (2010). 141.Google Scholar
Miller, D.S., and Gingerich, J.A.M. Paleoindian Chronology and the Eastern Fluted Point Tradition. Gingerich, J.A.M. In The Eastern Fluted Point Tradition. (2013). University of Utah Press, Salt Lake. 937.Google Scholar
Moeller, R.W. 6LF21: A Paleoindian Site in Western Connecticut. (1980). American Indian Archaeological Institute, Washington, Connecticut.Google Scholar
Morlan, R.E. Canadian Archaeological Radiocarbon Database. http://www.canadianarchaeology.ca/ (2005). Google Scholar
Murphy, J.L., Dyer, D.L., and Walker, D.A. Prehistoric Elk remains from Cranberry Prairie, Mercer County, Ohio. Ohio Journal of Science 85, (1985). 112115.Google Scholar
Newby, P., Speiss, A., Shuman, B., and Leduck, P. A Paleoindian response to the Younger Dryas climate change. Quaternary Science Reviews 24, (2005). 141154.Google Scholar
Norton, M.R., and Boster, J.B. 40HS200: the Nuckolls Extension Site. Tennessee Anthropologist 17, (1992). 1332.Google Scholar
Norton, M.R., and Boster, J.B. Archaeological investigations at the Puckett Site (40SW228): a Paleoindian-Early Archaic occupation on the Cumberland River, Stewart County, Tennessee. Tennessee Anthropologist 18, (1993). 4558.Google Scholar
Peros, M.C., Munoz, S.E., Gajewski, K., and Viau, A.E. Prehistoric demography of North America inferred from radiocarbon data. Journal of Archaeological Science 37, (2010). 656664.Google Scholar
Peterson, J.B., Bartone, R.N., and Cox, B.J. The Varney Farm Site and the Late Paleoindian Period in Northeastern North America. Archaeology of Eastern North America 28, (2000). 113139.Google Scholar
Plackett, R.L. Karl Pearson and the chi-squared test. International Statistics Review 51, (1983). 5972.Google Scholar
Prasciunas, M.M. Mapping Clovis: projectile points, behavior, and bias. American Antiquity 76, (2011). 107126.Google Scholar
Puryear, K.A. The Late Pleistocene/Early Holocene vegetational history of the vail site. Michael Gramly, R. Palaeo-Americans and Palaeo-Environment at the Vail Sites, Maine. (2009). Persimmon Press, North Andover. 954.Google Scholar
Redmond, B., and Tankersley, K. Evidence of Early Paleoindian bone modification and use at the Sheriden Cave Site (33WY252), Wyandot County, Ohio. American Antiquity 70, 3 (2005). 503526.CrossRefGoogle Scholar
Robinson, B.S. A regional analysis of the Moorhead burial tradition: 8500–3700 B.P. Archaeology of Eastern North America 24, (1996). 95148.Google Scholar
Robinson, B.S., Ort, J.C., Eldridge, W.A., Burke, A.L., and Pelletier, B.G. Paleoindian aggregation and social context at Bull Brook. American Antiquity 74, (2009). 423447.Google Scholar
Sellet, F., Donohue, J., and Hill, M.G. The Jim Pitts site: a stratified Paleoindian site in the Black Hills of South Dakota. American Antiquity 74, (2009). 735758.Google Scholar
Shennan, S., and Edinborough, K. Prehistoric population history: from the Late Glacial to the Late Neolithic in Central and Northern Europe. Journal of Archaeological Science 34, (2007). 13391345.Google Scholar
Sherwood, S.C., Driskell, B.N., Randall, A.R., and Meeks, S.C. Chronology and stratigraphy at Dust Cave, Alabama. American Antiquity 69, (2004). 533534.Google Scholar
Speiss, A., and Willson, D. Michaud: a Paleoindian site in the New England maritimes region. The Maine Historic Preservation Commission and the Maine Archaeological Society, Augusta. (1987). Google Scholar
Speiss, A.E., Wilson, D., and Bradley, J. Paleoindian occupation in the New England-Maritimes region: beyond cultural ecology. Archaeology of Eastern North America 26, (1998). 201264.Google Scholar
Stanzeski, A. Four Paleoindian and Early Archaic sites in Southern New Jersey. Archaeology of Eastern North America 26, (1998). 4153.Google Scholar
Steele, J. Radiocarbon dates as data: quantitative strategies for estimating colonization front speeds and event densities. Journal of Archaeological Science 37, (2010). 20172030.Google Scholar
Steponaitis, V.P. Prehistoric archaeology of the southeastern U.S. Annual Review of Anthropology 15, (1986). 383393.Google Scholar
Stewart, R.M., Custer, J.F., and Kline, D. A deeply stratified archaeological and sedimentary sequence in the Delaware River Valley of the Middle Atlantic Region, United States. Geoarchaeology 6, (1991). 169182.Google Scholar
Strauss, L., and Goebel, T. Humans and Younger Dryas: dead end, short detour, or open road to the Holocene?. Quaternary International 242, (2011). 259261.Google Scholar
Surovell, T.A., and Brantingham, P.J. A note on the use of temporal frequency distributions in studies of prehistoric demography. Journal of Archaeological Science 34, (2007). 18681877.Google Scholar
Surovell, T.A., Finely, J., Smith, G.M., Brantingham, P.J., and Kelly, R.L. Correcting temporal frequency distributions for taphonomic bias. Journal of Archaeological Science 36, (2009). 17151724.Google Scholar
Tankersley, K.B., Vanderlaan, S., Holland, J.D., and Bland, S. Geochronology of the arc site: a Paleoindian habitation in the Great Lakes Region. Archaeology of Eastern North America 25, (1997). 3144.Google Scholar
Thulman, D. Freshwater availability as the constraining factor in the Middle Paleoindian occupation of North-Central Florida. Geoarchaeology 24, (2009). 243276.Google Scholar
Ugan, A., and Byers, D. Geographic and temporal trends in Proboscidean and human radiocarbon histories during the Late Pleistocene. Quaternary Science Review 26, (2007). 30583080.Google Scholar
Wagner, D.P. Pedology and geomorphology of the Depew Recreation Area. Inashima, P.Y. Geomorphology, Remote Sensing, and Archaeological Monitoring at Depew Recreation Area: Delaware Water Gap National Recreation Area, New Jersey. (1994). Department of the Interior, National Park Service, Denver Service Center, Eastern Team, Eastern Applied Archaeology Center Silver Spring, Maryland. 2090427800.Google Scholar
Wall, R.D. Deep testing and radiocarbon dates from the Barton Site (18AG3), Allegany County, Maryland. Maryland Archaeology 44, (2008). 14.Google Scholar
Walthall, J. Rockshelters and Hunter-Gatherer adaptation to the Pleistocene/Holocene transition. American Antiquity 63, (1998). 223238.Google Scholar
Waters, M.R. Clovis chronology and origins. Paper Presented at the 76th Annual Meeting for the Society for American Archaeology, Sacramento, California. (2011). Google Scholar
Waters, M.R., and Stafford, T.W. Redefining the Age of Clovis: implications for the peopling of the Americas. Science 315, (2007). 11221126.Google Scholar
Waters, M.R., Stafford, T.W., Redmond, B.G., and Tankersley, K.B. The Age of the Paleoindian Assemblage at Sheriden Cave, Ohio. American Antiquity 74, (2009). 107111.Google Scholar
Weninger, B., Jöris, O., and Danzeglocke, U. CalPal-2007. Cologne Radiocarbon Calibration and Palaeoclimate Research Package. (2007). Google Scholar
West, A., Anderson, D.G., Goodyear, A.C., and Stafford, T.W. Multiple lines of evidence for a human population decline during the initial Younger Dryas. Paper Presented at the 75th Annual Meeting of the Society for American Archaeology, St. Louis, Missouri. (2010). Google Scholar
Williams, A.N. The use of summed radiocarbon probability distributions in archaeology: a review of methods. Journal of Archaeological Science 39, (2012). 578589.Google Scholar