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Paleolimnology and Prehistory

Published online by Cambridge University Press:  20 January 2017

John DeCosta
Affiliation:
Wayne State University, Detroit, Michigan
Claude N. Warren
Affiliation:
Wayne State University, Pocatello, Idaho

Abstract

Archaeologists have failed to use all available data relevant to climatic changes and other environmental factors necessary for the reconstruction of paleoclimates. This neglect has fostered the continuance of significant problems of reconstruction and interpretation in archaeology. Paleolimnology can be helpful in elucidating some of these problems. Research of this sort has already provided valuable evidence for the advent of agricultural man in Austria, as well as providing data for the reconstruction of paleoclimates in other areas. While pollen analysis has traditionally been used as an indication of climatic change, certain aquatic micro-organisms manifest a more rapid and subtle response to slight climatic changes. Paleolimnological evidence can provide important data for paleoclimatic reconstruction in archaeology.

Type
Research Article
Copyright
Copyright © The Society for American Archaeology 1967

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References

Bonatti, E. 1961 I sedimenti del lago di Monterosi. Experimentia, 17, pp. 2523. Birkhäuser Verlag, Basel.Google Scholar
Broecker, Wallace S. and Orr, Phil C. 1958 Radiocarbon Chronology of Lake Lahontan and Lake Bonneville. Geological Society of America Bulletin, Vol. 69, pp. 100932. New York.Google Scholar
Bryan, Alan and Gruhn, Ruth 1964 Problems Relating to the Neothermal Climatic Sequence. American Antiquity, vol. 29. No. 3, pp. 30715. Salt Lake City.Google Scholar
Bryce, Derek 1962 Cheronomidae (Diptera) from Fresh Water Sediments, with Special References to Malham Tarn (Yorks). Transactions of Society of British Entomologists, Vol. 15, pp. 4154. London.Google Scholar
Cowgill, U. and Hutchinson, G. E. 1963 El Bajo de Santa Fe. Transactions of the American Philosophical Society, n.s., Vol. 53, Pt. 7, pp. 151. Philadelphia.CrossRefGoogle Scholar
Cowgill, U. and Hutchinson, G. E. 1964 Cultural entrophication in Lago di Monterosi during Roman Antiquity. Verhandlungen der Internationalen Vereinigungfür Theoretische und Angewande Limnologie, pp. 6445. Stuttgart.Google Scholar
DeCosta, John 1964 Latitudinal Distribution of Chydorid Cladocera in the Mississippi Valley, Based on Their Remains in Surficial Lake Sediments. Investigations of Indiana Lakes and Streams, Vol. 6, pp. 65101. Department of Zoology, University of Indiana and Indiana Department of Conservation, Division of Fish and Game, Bloomington.Google Scholar
Enbysk, Betty Joyce 1956 Vertebrates and Mollusca from Lind Coulee, Washington. In “Archaeology of the Lind Coulee Site,” by R. D. Daugherty, pp. 26778. Proceedings of the American Philosophical Society, Vol. 100, No. 3. Philadelphia.Google Scholar
Fjerdingstad, E. 1954 The Subfossil Algae Flora of the Lake Bøiling Sø and its Limnological Interpretation. Det. Kongelige Danke Viderskabernes Selskab, Biologiske Skrifter, Bind 7, mr. 6, pp. 156. Copenhagen.Google Scholar
Frey, David G. 1955 Langsee: A History of Meromixis. Memorie Dell’ Instituto haliano Di Idrobiologia, Supp. Vol. 8, pp. 14164. Milan.Google Scholar
Frey, David G. 1958 The Late-Glacial Cladoceran Fauna of a Small Lake. Archiv fur Hydrobiologie, Bd. 54, pp. 20975. Stuttgart.Google Scholar
Frey, David G. 1962 Cladocera from the Eemian Interglacial of Denmark. Journal of Paleontology, vol. 36. No. 6, pp. 113354. Washington.Google Scholar
Frey, David G. 1964 Remains of Animals in Quaternary Lake and Bog Sediments and Their Interpretation. Ergebrisse der Limnologie, Heft 2, pp. 1114. Stuttgart.Google Scholar
Goulden, Clyde E. 1964 The History of the Cladoceran Fauna of Esthwaite Water (England) and Its Limnological Significance. Archiv fur Hydrobiologie, Bd. 60:1, pp. 152. Stuttgart.Google Scholar
Hahn, Matthew and Hellerman, John 1961 The Diatoms. In “Paleoecology of the Llano Estacado,” edited by Fred Wendorf, pp. 98104. ublication No. 1 of the Fort Burgwin Research Center. The Museum of New Mexico Press, Santa Fe.Google Scholar
Hubbs, Carl L., Bien, George, and Suess, Hans E. 1960 La Jolla Natural Radiocarbon Measurements. Radiocarbon, Vol. 2, pp. 197223. New Haven.Google Scholar
Hubbs, Carl L., 1962 La Jolla Natural Radiocarbon Measurements, II. Radiocarbon, Vol. 4, pp. 20438. New Haven.Google Scholar
Hunt, C. B. 1956 A Skeptic’s View of Radiocarbon Dates. University of Utah Anthropological Papers, No. 26, pp. 3547. Salt Lake City.Google Scholar
Jennings, Jesse D. 1957 Danger Cave. Memoirs of the Society for American Archaeology, No. 14. Salt Lake City.Google Scholar
Jennings, Jesse D. 1964 The Desert West. In Prehistoric Man in the New World, edited by J. D. Jennings and E. Norbeck, pp. 14974. University of Chicago Press, Chicago.Google Scholar
Martin, Paul S. 1963 The Last 10,000 Years: A Fossil Record of the American Southwest. University of Arizona Press, Tucson.Google Scholar
Martin, Paul S., Schoenwetter, James, and Ames, B. C. 1961 Southwestern Palynology and Prehistory: The Last 10,000 Years. Geochronology Laboratories, University of Arizona, Tucson.Google Scholar
Nering, Lee G. 1956 Stratigraphic, Mechanical, Chemical, and Petrographic Analysis of the Lind Coulee Site. In “Archaeology of the Lind Coulee Site,” by R. D. Daugherty, pp. 2636. Proceedings of the American Philosophical Society, Vol. 100, No. 3. Philadelphia.Google Scholar
Patrick, R. 1938 The Occurrence of Flints and Extinct Animals in Pluvial Deposits Near Clovis, New Mexico. Part V. Diatom Evidence from the Mammoth Pit. Proceedings of the Philadelphia Academy of Natural Sciences, Vol. 90, pp. 1524. Philadelphia.Google Scholar
Pearson, R. G. 1962a The Coleoptera from a Late-Glacial Deposit at St. Bees, West Cumberland. Journal of Animal Ecology, Vol. 31, pp. 12950. Oxford.Google Scholar
Pearson, R. G. 1962b The Coleoptera from a Detritue Mud Deposit of Full-Glacial Age at Coloey Heath, near St. Albans. Proceedings of the Linnean Society of London, Vol. 173, Pt. 1, pp. 3755. London.CrossRefGoogle Scholar
Round, Frank 1957 The Late-Glacial and Post-Glacial Diatom Succession in the Kentmere Valley Deposit. The New Phytologist, Vol. 56, pp. 98126. Oxford.Google Scholar
Round, Frank 1961 The Diatoms of a Core from Esthwaite Water. The New Phytologist, Vol. 60, pp. 4359. Oxford.CrossRefGoogle Scholar
Stahl, John B. 1959 The Developmental History of the Chironomid and Chaoborus Faunas of Meyers Lake. Investigations of Indiana Lakes and Streams, Vol. 5, pp. 47102. Department of Zoology, University of Indiana and Indiana Department of Conservation, Division of Fish and Game, Bloomington.Google Scholar