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Published online by Cambridge University Press:  06 August 2009

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Climate Change in Prehistory
The End of the Reign of Chaos
, pp. 322 - 339
Publisher: Cambridge University Press
Print publication year: 2005

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References

Aksu, A. E., Hiscott, R. N., Mudie, P. J.et al. (2002). Persistent Holocene outflow from Black Sea to Eastern Mediterranean contradicts Noah's flood hypothesis. GSA Today, 12, 4–10.2.0.CO;2>CrossRefGoogle Scholar
Allen, J. R. M., Brandt, U., Brauer, A.et al. (1999). Rapid environmental changes in southern Europe during the last glacial period. Nature 400, 740–743.CrossRefGoogle Scholar
Alley, R. B., Meese, D. A., Shuman, C. A.et al. (1993). Abrupt increase in Greenland snow accumulation at the end of the Younger Dryas event. Nature, 362, 527–529.CrossRefGoogle Scholar
Alroy, J. (2001). A multispecies overkill simulation of the end-Pleistocene megafaunal mass extinction. Science, 292, 1893–1896.CrossRefGoogle ScholarPubMed
Ambrose, S. H. (1998). Late Pleistocene human population bottlenecks, volcanic winter, and differentiation of modern humans. Journal of Human Evolution, 34, 623–651.CrossRefGoogle Scholar
Ammerman, A. J. & Cavalli-Sforza, L. L. (1984) The Neolithic Transition and the Genetics of Populations in Europe (Princeton: Princeton Univ. Press).CrossRefGoogle Scholar
Angel, J. L. (1984). Health as a crucial factor in the changes from hunting to developed farming in the eastern Mediterranean. In Cohen, M. N. & Armelagos, G. J., eds. Paleopathology at the Origins of Agriculture (proceedings of a conference held in 1982). (Orlando: Academic Press) pp. 51–73.Google Scholar
Arnold, N. S., Andel, T. H. & Valen, V. (2002). Extent and dynamics of the Scandinavian ice-sheet during Oxygen Isotope Stage 3 (60 000 – 30 000 yr BP)Quaternary Research, 57, 38–48.CrossRefGoogle Scholar
Baillie, M. G. L. (1995). A Slice Through Time: Dendrochronology and Precision Dating. (London: Batsford).Google Scholar
Baillie, M. (1999). Exodus to Arthur: Catastrophic Encounters with Comets. (London: Batsford).Google Scholar
Balter, M. (2001). Did plaster hold Neolithic society together?Science, 294, 2278–2281.CrossRefGoogle ScholarPubMed
Bar-Yosef, O. (1986). The walls of Jericho: An alternative interpretation. Current Anthropology, 27, 57–62.CrossRefGoogle Scholar
Bar-Yosef, O.(1998). The Natufian culture in the Levant: Threshold to the origins of agriculture. Evolutionary Anthropology, 6, 159–179.3.0.CO;2-7>CrossRefGoogle Scholar
Bar-Yosef, O.(2002). The Upper Paleolithic Revolution. Annual Review of Anthropology 31, 363–393.CrossRefGoogle Scholar
Barber, D. C., Dyke, A., Hillaire-Marcel, C.et al. (1999). Forcing of the cold event of 8,200 years ago by catastrophic drainage of Laurentide lakes. Nature, 400, 344–348.CrossRefGoogle Scholar
Barnosky, A. D., Bell, C. J., Emslie, S. D.et al. (2004a). Exceptional record of mid-Pleistocene vertebrates helps differentiate climatic from anthropogenic ecosystem perturbations. Proceedings of the National Academy of Sciences, 101, 9297–9302.CrossRefGoogle Scholar
Barnosky, A. D., Koch, P. L., Feranec, R. S., Wing, S. L. & Shabel, A. B. (2004b). Assessing the causes of late Pleistocene extinctions on the continents. Science, 306, 70–75.CrossRefGoogle Scholar
Bartov, Y., Goldstein, S. L., Stein, M. & Enzel, Y. (2003). Catastrophic arid episodes in the Eastern Mediterranean linked to North Atlantic Heinrich events. Geology, 31, 439–442.2.0.CO;2>CrossRefGoogle Scholar
Blunier, T. & Brook, E. J. (2001). Timing of millennial-scale climate change in Antarctica and Greenland during the last glacial period. Science, 291, 109–112.CrossRefGoogle ScholarPubMed
Bond, G., Heinrich, H., Broecker, W.et al. (1992). Evidence for massive discharges of icebergs into the North Atlantic Ocean during the last glacial period. Nature, 360, 245–249.CrossRefGoogle Scholar
Bond, G. C. & Lotti, R. (1995). Iceberg discharges into the North Atlantic on millennial time scales during the last deglaciation. Science, 267, 1005–1010.CrossRefGoogle Scholar
Bond, G., Showers, W., Cheseby, M.et al. (1997). A pervasive millennial-scale cycle in North Atlantic Holocene and Glacial climates. Science, 278, 1257–1265.CrossRefGoogle Scholar
Bond, G., Kromer, B., Beer, J.et al. (2001). Persistent solar influence on North Atlantic climate during the Holocene. Science, 294, 2130–2136.CrossRefGoogle ScholarPubMed
Bonfils, C., Noblet-Decoudre, N., Braconnot, P. & Joussaume, S. (2001). Hot desert albedo and climate change: Mid-Holocene monsoon in North Africa. Journal of Climate, 14, 3724–3737.2.0.CO;2>CrossRefGoogle Scholar
Bonsall, C., Machlin, M. G., Payton, R. W. & Boroneant, A. (2002). Climate, floods and river gods: environmental change and the Meso-Neolithic transition in southeast Europe. Before Farming, 4, 1–14.CrossRefGoogle Scholar
Bosch, E., Calafell, F., Cornas, D.et al. (2001). High-resolution analysis of human Y-chromosome variation shows a sharp discontinuity and limited gene flow between Northwestern Africa and the Iberian Peninsula. American Journal of Human Genetics, 68, 1019–1029.CrossRefGoogle Scholar
Bowler, J. M., Johnston, H., Olley, J. M.et al. (2003). New ages for human occupation and climatic change at Lake Mungo, Australia. Nature, 421, 837–840.CrossRefGoogle ScholarPubMed
Broecker, W. S. (1995). Chaotic climate. Scientific American, 267, No. 11, 44–50.Google Scholar
Brown, M. D., Hosseini, S. H., Torroni, A.et al. (1998). mtDNA haplogroup X: an ancient link between Europe/West Asia and North America?American Journal of Human Genetics, 63, 1852–1861.CrossRefGoogle Scholar
Burns, S. J., Fleitmann, D., Matter, A., Kramers, J. & Al-Subbary, A. A. (2003). Indian Ocean climate and an absolute chronology over Dansgaard/Oeschger events 9 to 13. Science, 301, 1365–1367.CrossRefGoogle ScholarPubMed
Burroughs, W. J. (1997). Does the Weather Really Matter? (Cambridge: Cambridge University Press).CrossRefGoogle Scholar
Burroughs, W. J.(1998). Degrees of damage. Journal of the Royal Horticultural Society, 123, 22–25.Google Scholar
Cambridge Encyclopaedia of Earth Sciences (1982), Smith, D. G., ed. (Cambridge: Cambridge University Press).Google Scholar
Cann, R. L., Stoneking, M. & Wilson, A. C. (1987). Mitochondrial DNA and human evolution. Nature, 325, 31–36.CrossRefGoogle ScholarPubMed
Cavalli-Sforza, L. L. (1997). Genes, peoples, and languages. Proceedings of the National Academy of Sciences USA, 94, 7719–7724.CrossRefGoogle ScholarPubMed
Cavalli-Sforza, L. L.(2000). Genes, People and Languages. (London: Penguin Press).Google Scholar
Cavalli-Sforza, L. L., Menozzi, P. & Piazza, A. (1993). Demic expansions and human evolution. Science, 259, 639–646.CrossRefGoogle ScholarPubMed
Chikhi, L., Nichols, R. A., Barbujani, G. & Beaumont, M. A. (2002). Y genetic data support the Neolithic demic diffusion model. Proceedings of the National Academy of Sciences USA, 99, 11008–11013.CrossRefGoogle Scholar
Clark, P. U., Alley, R. B., Keigwin, C. D.et al. (1996). Origin of the first glacial meltwater pulse following the last glacial maximum. Paleoceanography, 11, 563–577.CrossRefGoogle Scholar
Clausen, H. B., Hammer, C. U., Hvidberg, C. S.et al. (1997). A comparison of the volcanic records from the Greenland Ice Core Project and Dye 3 Greenland ice cores. Journal of Geophysical Research, 102, 26707–26723.CrossRefGoogle Scholar
CLIMAP Project Members (1976). The surface of the ice-age Earth. Science 191, 1131–1137.CrossRef
CLIMAP (1981). Seasonal reconstruction of the Earth's surface at the last glacial maximum. Geological Society of America, Map and Chart Series, Vol. C36.
Clottes, J., Chauvet, J.-M., Bounel-Deschanps, E.et al. (1995). Les peintures paléolithiques de la Grotte Chauvet Pont d'Arc, à Vallon Pont d'Arc (Ardèche, France). Compte Rendu de l' Academie des Sciences Paris, 320, 1133–1140.Google Scholar
Clottes, J. (2002). Palaeolithic art in France. Adoranter, Scandinavian Society for Prehistoric Art, pp. 5–19.
Conard, N. J. (2003). Palaeolithic ivory sculptures from southwestern Germany and the origins of figurative art. Nature, 426, 830–832.CrossRefGoogle ScholarPubMed
Coope, G. R., Lemdahl, G., Lowe, J. J. & Walkling, A. (1998). Temperature gradients in northern Europe during the last glacial–Holocene transition (14–9 14C kyr BP) interpreted from coleopteran assemblages. Journal of Quaternary Science, 13, 419–433.3.0.CO;2-D>CrossRefGoogle Scholar
Coukell, A. (2001). Spellbound: Could mysterious figures lurking in Australian rock art be the world's oldest shamans? New Scientist, 19 May 2001, 34–37.
Cremaschi, M. & di Lernia, S. (1999). Holocene climatic changes and cultural dynamics in the Libyan Sahara. African Archaeological Review, 16, no 4. (See also, conference abstracts Environmental Catastrophes and Recoveries in the Holocene. 29 August–2 September 2002, Department of Geography & Earth Sciences, Brunel University, Uxbridge, United Kingdom.)
Cruciani, F., Santolamazza, P., Sher, P.et al. (2002). A back migration from Asia to sub-Saharan Africa is supported by high-resolution analysis of human Y-chromosome haplotypes. American Journal of Human Genetics 70, 1197–1214.CrossRefGoogle ScholarPubMed
Cullen, H. M., Kaplan, A., Arkin, P. A. & deMenocal, P. B. (2002). Impact of North Atlantic Oscillation on Middle Eastern climate and streamflow. Climate Change, 55, 315–338.CrossRefGoogle Scholar
Dansgaard, W. & Oeschger, H. (1989). In The Environmental Record in Glaciers and Ice Sheets, Oeschger, H. & Langway, C. C. eds. (Chichester: Wiley), pp. 287–318.Google Scholar
Davis, B. A. S., Brewer, S., Stevenson, A. C.et al. (2003). The temperature of Europe during the Holocene reconstructed from pollen data. Quaternary Science Reviews, 20, 1701–1706.CrossRefGoogle Scholar
Dayton, L. (2001). Mass extinctions pinned on ice age hunters. Science, 292, 1819.CrossRefGoogle ScholarPubMed
deMenocal, P. D. (2001). Cultural responses to climate change during the late Holocene. Science, 292, 667–673.CrossRefGoogle ScholarPubMed
deMenocal, P. D., Ortiz, J., Guilderson, T. & Sarnthein, M. (2000). Coherent high- and low-latitude climate variability during the Holocene warm period. Science, 288, 2198–2202.CrossRefGoogle ScholarPubMed
d'Errico, F., Henshilwood, C., Lawson, G.et al. (2003). Archaeological evidence of the emergence of language, symbolism, and music – An alternative multidisciplinary perspective. Journal of World Prehistory, 17, 1–70.CrossRefGoogle Scholar
Deser, C., Walsh, J. E. & Timlin, M. S. (1999). Arctic sea ice variability in the context of recent atmospheric circulation trends. Journal of Climate, 13, 617–633.2.0.CO;2>CrossRefGoogle Scholar
Diamond, J. (1987). The worst mistake in the history of the human race. Discover, 64–66.Google Scholar
Dickson, B., Yashayaev, I., Meincke, J.et al. (2002). Rapid freshening of the deep North Atlantic Ocean over the last four decades. Nature, 416, 832–837.CrossRefGoogle Scholar
di Lernia, S. (2001). Dismantling dung: delayed use of food resources among early Holocene foragers of the Libyan Sahara. Journal of Anthropological Archaeology, 20, 408–441.CrossRefGoogle Scholar
Dillehay, T. D. (1997). Monte Verde: A Late Pleistocene Settlement in Chile, Vol. 2: The Archaeological Context and Interpretation. (Washington DC: Smithsonian Institution Press).Google Scholar
Dillehay, T. D.(2000). The Settlement of the Americas: A New Prehistory. Basic Books: New York.Google Scholar
Dorale, J. A., Edwards, R. L., Ito, E. & Gonzalez, L. A. (1998). Climate and vegetation history of the Midcontinent from 75 to 25 ka: A speleothem record from Crevice Cave, Missouri, USA. Science, 282, 1871–1874.CrossRefGoogle ScholarPubMed
Elias, S. A. (1999). Mid-Wisconsin seasonal temperatures reconstructed from fossil beetle assemblages in eastern North America: comparisons with other proxy records from the Northern Hemisphere. Journal of Quaternary Science, 14, 255–262.3.0.CO;2-X>CrossRefGoogle Scholar
Emiliani, C. (1955), Pleistocene temperatures, Journal of Geology, 63, 538–578.CrossRefGoogle Scholar
Enzel, Y., Ely, L. L., Mishra, S.et al. (1999). High-resolution Holocene environmental changes in the Thar Desert, Northwestern India. Science, 284, 125–128.CrossRefGoogle ScholarPubMed
Eshed, V., Gopher, A., Gage, T. B., & Herkovitz, I. (2003). Has the transition to agriculture reshaped the demographic structure of prehistoric populations? New evidence from the Levant. American Journal Physical Anthropology 124, 315–329.CrossRefGoogle Scholar
European Project for Ice Coring in Antarctica (EPICA) Community Members (2004). Eight glacial cycles from an Antarctic ice core. Nature, 429, 623–628.CrossRef
Excoffier, L. & Schneider, S. (1999). Why hunter-gatherer populations do not show signs of Pleistocene demographic expansions. Proceedings of the National Academy of Sciences USA, 96, 10597–10602.CrossRefGoogle Scholar
Ferguson, R. B. (2003). The birth of war. Natural History, July–August.
Fleitmann, D., Burns, S. J., Mudelsee, M.et al. (2003). Holocene forcing of the Indian Monsoon recorded in a stalagmite from Southern Oman. Science, 300, 1737–1739.CrossRefGoogle Scholar
Florineth, D. & Schluchter, C. (1999). Alpine evidence for atmospheric circulation patterns in Europe during the Last Glacial Maximum. Quaternary Research, 54, 295–308.CrossRefGoogle Scholar
Foreman, S. L., Oglesby, R. & Webb, R. S. (2001). Temporal and spatial patterns of Holocene dune activity on the Great Plains of North America: megadroughts and climate links. Global and Planetary Change, 29, 1–29.CrossRefGoogle Scholar
Frich, P., Alexander, L. V., Della-Marta, P.et al. (2002). Observed coherent changes in climatic extremes during the second half of the twentieth century. Climate Research, 19, 193–212.CrossRefGoogle Scholar
Gagan, M. K., Ayliffe, L. K., Scott-Gagan, H., et al. (2002). Coral reconstruction of abrupt tropical cooling 8,000 years ago. Geochimica et Cosmochimica Acta, 66, A255 (abstract).Google Scholar
Gallup, J. L. & Sachs, J. E. (2000). The Economic Burden of Malaria. Centre for International Development, Harvard University, Working Paper No 52.Google Scholar
Gallup, J. L., Sachs, J. E. & Mellinger, A. (1999). Geography and Economic Development. Centre for International Development, Harvard University, Working Paper No 1.Google Scholar
Gamble, C. (1999). The Palaeolithic Societies of Europe. (Cambridge: Cambridge University Press).Google Scholar
Gasse, F. (2000). Hydrological changes in the African tropics since the Last Glacial Maximum. Quaternary Science Reviews, 18, 189–211.CrossRefGoogle Scholar
Genty, D., Blamart, D., Ouahdi, R.et al. (2003). Precise dating of Dansgaard – Oeschger climate oscillations in western Europe stalagmite data. Nature, 421, 833–837.CrossRefGoogle ScholarPubMed
Gray, R. D. & Atkinson, Q. D. (2003). Language-tree divergence times support the Anatolian theory of Indo-European origin. Nature, 426, 435–439.CrossRefGoogle ScholarPubMed
Grayson, D. K. (1998). Confirming antiquity in the Americas. Science, 282, 1425–1426.CrossRefGoogle Scholar
Greenberg, J. & Merritt, R. (1992). Linguistic origins of Native Americans. Scientific American, November 1992, 94–99.CrossRefGoogle Scholar
Greenberg, J., Turner, C. & Zegura, E. (1986). The settlement of the Americas: a comparison of the linguistic, dental and genetic evidence. Current Anthropology 27, 477–497.CrossRefGoogle Scholar
Greenland Ice Core Project (GRIP) Members (1993). Climate instability during the last interglacial period recorded in the GRIP ice core. Nature, 364, 203–207.CrossRef
Grimm, E. C., Jacobson, G. L., Watts, W. A.et al. (1993). A 50,000-year record of climate oscillations from Florida and its temporal correlation with the Heinrich events. Science, 261, 198–200.CrossRefGoogle ScholarPubMed
Grootes, P. M., Stuiver, M., White, J. W. C.et al. (1993). Comparison of oxygen isotope records from the GISP 2 and GRIP Greenland ice cores. Nature, 366, 552–554.CrossRefGoogle Scholar
Guiot, J. (1997). Back at the last interglacial. Nature, 388, 25–27.CrossRefGoogle Scholar
Guthrie, R. D. (1990). The Frozen Fauna of the Mammoth Steppe: The Story of Blue Babe. (Chicago: University of Chicago Press).Google Scholar
Haas, J. (2001). Warfare and the evolution of culture. In Archaeology at the Millennium, Feinmann, G. M. & Price, T. D., eds. (New York: Kluwer/Plenum). pp. 329–350.CrossRefGoogle Scholar
Hakkinen, S. & Rhines, P. (2004). Decline of subpolar North Atlantic circulation during the 1990s. Science, 304, 555–559.CrossRefGoogle ScholarPubMed
Hanotte, O., Bradley, D. G., Ochieng, J. W.et al. (2002). African pastoralism: Imprints of origins and migrations. Science, 296, 336–338.CrossRefGoogle ScholarPubMed
Harpending, H. & Rogers, A. (2000). Genetic perspectives on human origins and differentiation. Annual Reviews of Genomics and Human Genetics 1, 361–385.CrossRefGoogle Scholar
Harpending, H. C., Sherry, S. T., Rogers, A. R. & Stoneking, M. (1993). The genetic structure of ancient human populations. Current Anthropology, 34, 483–496.CrossRefGoogle Scholar
Harpending, H. C., Batzer, M. A., Gurven, M.et al. (1998). Genetic traces of ancient demography. Proceedings of the National Academy of Sciences USA, 95, 1961–1967.CrossRefGoogle ScholarPubMed
Haas, J. (2002). Warfare and the evolution of culture. In Archaeology at the Millennium, Feinmann, G. & Price, D., eds. (New York, Plenum).Google Scholar
Haug, G. H., Hughen, K. A., Peterson, L. C.et al. (2001). Southward migration of the Intertropical Convergence Zone through the Holocene. Science, 293, 1304–1308.CrossRefGoogle ScholarPubMed
Haug, G. H., Genther, D., Peterson, L. C.et al. (2003). Climate and the collapse of Maya civilisation. Science, 299, 1731–1735.CrossRefGoogle Scholar
Heinrich, H. (1988). Origin and consequences of cyclic ice rafting in the northeast Atlantic Ocean during the past 130,000 years. Quaternary Research, 29, 142–152.CrossRefGoogle Scholar
Henshilwood, C. S.et al. (2002). Emergence of modern human behavior: Middle Stone Age engravings from South Africa. Science, 296, 1278–1280.CrossRefGoogle Scholar
Henshilwood, C. S.et al. (2004). Middle Stone Age shell beads from South Africa. Science, 304, 404.CrossRefGoogle ScholarPubMed
Hewitt, G. (2000). The genetic legacy of the Quaternary ice ages. Nature, 405, 907–913.CrossRefGoogle ScholarPubMed
Hillman, G. R., Hedges, R., Moore, A.et al. (2001). New evidence of late glacial cereal cultivation at Abu Hureyra on the Euphrates. The Holocene, 11, 383–393.CrossRefGoogle Scholar
Hodell, D. A., Curtis, J. H. & Brenner, M. (1995). Possible role of climate in the collapse of Classic Maya civilization. Nature 375, 391–394.CrossRefGoogle Scholar
Hodell, D. A., Kanfoush, A., Shemesh, A.et al. (2001). Abrupt cooling of Antarctic surface waters and sea ice extension in the South Atlantic sector of the Southern Ocean at 5000 cal yr BP. Quaternary Research, 56, 191–198.CrossRefGoogle Scholar
Hugen, K., Lehman, S., Southon, J.et al. (2004). 14C activity and global carbon changes over the last 50,000 years. Science, 303, 202–207.CrossRefGoogle Scholar
Hurrell, J. W. (1995). Decadal trends in the North Atlantic Oscillation: Regional temperatures and precipitation, Science, 269, 676–678.CrossRefGoogle ScholarPubMed
Imbrie, J., Hays, J. D., Martinson, D. G. et al. (1984). The orbital theory of Pleistocene climate: Support from a revised chronology of the marine δ18O record. In Milankovitch and Climate, part 1, Berger, A., Reidel, D., eds. (Massachusetts: Norwell) pp. 269–305.CrossRefGoogle Scholar
Imbrie, J., Boyle, E. A., Clemens, S. C.et al. (1992). On the structure and origin of major glaciation cycles. 1. Linear responses to Milankovitch forcing. Paleoceanography, 7, 701–738.CrossRefGoogle Scholar
Imbrie, J., Berger, A., Boyle, E. A.et al. (1993). On the structure and origin of major glaciation cycles. 2. The 100,000 year cycle. Paleoceanography, 8, 699–735.CrossRefGoogle Scholar
Ingman, M. & Gyllensten, U. (2003). Mitochondrial genome variation and evolutionary history of Australian and New Guinean aborigines. Genome Research, 16, 1600–1606.CrossRefGoogle Scholar
Intergovernmental Panel on Climate Change (IPCC) (1990). Climate Change: The IPCC Scientific Assessment. Houghton, J. T., Jenkins, G. J. & Ephraums, G. G., eds. (Cambridge: Cambridge University Press).Google Scholar
Intergovernmental Panel on Climate Change (IPCC)(2001a). Climate Change 2001: The Scientific Basis, Houghton, J. T.et al., eds. (Cambridge: Cambridge University Press).Google Scholar
Intergovernmental Panel on Climate Change (IPCC)(2001b). Impacts, Adaptation and Vulnerabilities, MacCarthy, J. J.et al., eds. (Cambridge: Cambridge University Press).Google Scholar
John, P. R., Makova, K., Li, W. H.et al. (2003). DNA polymorphism and selection at the melanocortin-1 receptor gene in normally pigmented Southern African individuals. Annals of the New York Academy of Sciences, 994, 299–306.CrossRefGoogle ScholarPubMed
Joy, D. A., Feng, X., Mu, J.et al. (2003). Early origin and recent expansion of Plasmodium faliciparum. Science, 300, 318–321.CrossRefGoogle Scholar
Kappelman, J. (1997). They could be giants. Nature, 387, 126–127.CrossRefGoogle ScholarPubMed
Karlen, A. (1995). Plague's Progress. (London: Victor Gollancz).Google Scholar
Karner, D. B., Levine, J., Medeiros, B. P.et al. (2002). Constructing a stacked benthic δ18O record. Paleoceanography, 17(3), doi:10.1029/2001PA000667. (Data for this record can be found on http://jlevine.(lbl.gov/BenStack construct.html.)CrossRefGoogle Scholar
Kavoutas, A., Lynch-Stieglitz, J., Marchitto, T. M. & Sachs, J. P. (2002). El Niño-like patterns in ice age tropical Pacific sea surface temperature. Science, 297, 226–230.Google Scholar
Ke, Y.et al. (2001). African origin of modern humans in East Asia: a tale of 12,000 Y chromosomes. Science, 292, 1151–1153.CrossRefGoogle ScholarPubMed
Kirkby, P. T. (1995). Causes of short stature in coal-mining children, 1823–1850. Economic History Review, xlviii, 687–699.Google Scholar
Kitagawa, H. & Plicht, J. (1998). Atmospheric radiocarbon calibration to 45,000 yr BP: Late Glacial fluctuations and cosmogenic isotope production. Science, 279, 1187–1190.CrossRefGoogle Scholar
Kittler, R., Kayser, M. & Stoneking, M. (2003). Molecular evolution of Pediculus humanus and the origin of clothing. Current Biology, 13, 1414–1417.CrossRefGoogle ScholarPubMed
Klein, R. G. (2003). Whither Neanderthals?Science, 299, 1525–1527.CrossRefGoogle ScholarPubMed
Kremer, M. (1993). Population growth and technological change: One million BC to 1990. Quarterly Journal of Economics, 108, 681–716.CrossRefGoogle Scholar
Krings, M., Stone, A., Schmitz, R. W.et al. (1997). Neanderthal DNA sequences and the origin of modern humans. Cell, 90, 19–28.CrossRefGoogle Scholar
Krings, M., Salem, A. H., Bauer, K.et al. (1999). mtDNA analysis of Nile River Valley populations: a genetic corridor or barrier to migration?American Journal of Human Genetics, 64, 1166–1176.CrossRefGoogle ScholarPubMed
Krings, M., Capelli, C., Tschentscher, F.et al. (2000). Neanderthal DNA sequences and the origin of modern humans. Nature Genetics, 26, 144–146.CrossRefGoogle Scholar
Krom, M. D., Stanley, J. D., Cliff, R. A. & Woodward, J. C. (2002). Nile River sediment fluctuations over the past 7000 yr and their key role in sapropel development. Geology, 30, 71–74.2.0.CO;2>CrossRefGoogle Scholar
Kromer, B. & Spurk, M. (1998). Revision and tentative extension of the tree-ring based 14C calibration 9200–11, 955 cal BP. Radiocarbon, 40, 1117–1125.CrossRefGoogle Scholar
Kuhn, S. L., Stiner, M. C., Reese, D. S. & Gulec, E. (2001). Ornaments of the earliest Upper Paleolithic: New insights from the Levant. Proceedings of the National Academy of Sciences USA, 98, 7641–7646.CrossRefGoogle ScholarPubMed
Kutzbach, J. E. & Liu, Z. (1997). Response of the African monsoon to orbital forcing and ocean feedbacks in the Middle Holocene. Science, 278, 440–3.CrossRefGoogle Scholar
Lambeck, K. & Chappell, J. (2001). Sea level change through the last glacial cycle. Science, 292, 679–686.CrossRefGoogle ScholarPubMed
Lambeck, K., Esat, T. M. & Potter, E.-K. (2003). Links between climate and sea levels for the past three million years. Nature, 419, 199–206.CrossRefGoogle Scholar
Lell, J. T., Sukernik, R. I., Starikovskaya, Y. B., et al. (2002). The dual origin and Siberian affinities of Native American Y chromosomes. American Journal of Human Genetics, 70, 192–206.CrossRefGoogle ScholarPubMed
Leonard, J. A., Wayne, R. K. & Cooper, C. (2000). Population genetics of ice age brown bears. Proceedings of the National Academy of Sciences USA. 97, 1651–1654.CrossRefGoogle ScholarPubMed
Leonard, J. A.et al. (2002). Ancient DNA evidence for Old World origin of New World dogs. Science, 298, 1613–1615.CrossRefGoogle ScholarPubMed
Leuschner, D. C. & Sirocko, F. (2000). The low-latitude monsoon climate during Dansgaard–Oeschger cycles and Heinrich Events. Quaternary Science Reviews, 19, 243–254.CrossRefGoogle Scholar
Leverington, D. W., Mann, J. D. & Teller, J. M. (2002). Changes in the bathymetry and volume of Lake Agassiz between 9200 and 7700 14C BP. Quaternary Research, 57, 244–252.CrossRefGoogle Scholar
Lewis-Williams, D. (2002). The Mind in the Cave. (London: Thames & Hudson).Google Scholar
Lovvorn, M. B., Frison, G. C. & Tieszen, L. L. (2001). Paleoclimate and Amerindians: Evidence from stable isotopes and atmospheric circulationProceedings of the National Academy of Sciences USA, 98, 2485–2490.CrossRefGoogle ScholarPubMed
Lu, H., Liu, Z. X., Wu, N. Q.et al. (2002). Rice domestication and climatic change: phytolith evidence from East China. Boreas, 31, 378–385.CrossRefGoogle Scholar
Maca-Meyer, N., Gonzalez, A. M., Larruga, C.et al. (2001). Major genomic mitochondrial lineages delineate early human expansions. BMC Genetics, 2, 13.CrossRefGoogle ScholarPubMed
MacPhee, R. D. E. & Marx, P. A. (1999). Mammoths and microbes: Hyperdisease attacked the New World. Discovering Archaeology, September/October 1999, 54–59.Google Scholar
Mandryk, C. A. S., Josenhans, H., Fedje, D. W.et al. (2001). Late Quaternary palaeoenvironments in northwestern North America: Implications for inland versus coastal migrations routes. Quaternary Science Reviews, 20, 301–314.CrossRefGoogle Scholar
Magny, M., Begeot, C., Guiot, J. & Peyron, O. (2003). Contrasting patterns of hydrological changes in Europe in response to Holocene climate cooling phases. Quaternary Science Reviews, 22, 1589–1596.CrossRefGoogle Scholar
Manley, G. (1974). Central England Temperatures: monthly means 1659 to 1973. Quarterly Journal Royal Meteorological Society, 100, 389–405.CrossRefGoogle Scholar
Mann, M. E. & Jones, P. D. (2003). Global surface temperatures over the past two millennia. Geophysical Research Letters, 30, 1820, doi:10.1029/2003GL017814.CrossRefGoogle Scholar
Manning, S. W., Kromer, B., Kuniholm, P. I. & Newton, M. W. (2001). Anatolian tree-rings and a new chronology for the east Mediterranean Bronze-Iron Ages. Science, 294, 2532–2535.CrossRefGoogle Scholar
Manning, S. W., Kromer, B., Kuniholm, P. I. & Newton, M. W.(2003). Confirmation of near-absolute dating of east Bronze-Iron dendrochronology. Antiquity, 77, No. 295.Google Scholar
Marshall, J., Kushnir, Y., Battisti, D.et al. (2001). North Atlantic climate variability: Phenomena, impacts and mechanisms – a review. International Journal of Climatology, 21, 1863–1898.CrossRefGoogle Scholar
Masters, W. & McMillan, M. (2001). Climate and scale in economic growth. Journal of Economic Growth, 6, 167–186.CrossRefGoogle Scholar
Mayewski, P. A., Meeker, L. D., Twickler, M. S.et al. (1997). Major features and forcing of high-latitude northern hemisphere atmospheric circulation using a 110,000-year-long glaciochemical series. Journal of Geophysical Research, 102, 26,345–26,366.CrossRefGoogle Scholar
McBrearty, S. & Brooks, A. S. (2000). The revolution that wasn't: a new interpretation of the origins of modern human behaviour. Journal of Human Evolution, 39, 453–563.CrossRefGoogle Scholar
Mellars, P. (1994). The Upper Palaeolithic Revolution. In The Oxford Illustrated History of Prehistoric Europe. Cunliffe, B., ed. (Oxford: Oxford University Press) pp. 42–78.Google Scholar
Mellars, P.(2004). Neanderthals and the modern human colonisation of Europe. Nature, 432, 461–465.CrossRefGoogle Scholar
Meltzer, D. J. (2004). Peopling of North America, Development in Quaternary Science, 1, 539–564.Google Scholar
Merriwether, D. A., Rothhammer, F. & Ferrell, R. E. (1995). Distribution of the four-founding lineage haplotypes in Native Americans suggests a single wave of migration for the New World. American Journal of Physical Anthropology, 98, 411–430.CrossRefGoogle ScholarPubMed
Miller,, G. H.et al. (1999). Pleistocene extinction of Genyornis newtoni: human impact on Australian megafauna. Science, 282, 205–8.CrossRefGoogle Scholar
Mithen, S. J. (1994). The Mesolithic age. In The Oxford Illustrated History of Prehistoric Europe. Cunliffe, B., ed., (Oxford: Oxford University Press). pp. 79–135.Google Scholar
Mithen, S. J.(2003). After the Ice: A Global History 20,000–5000 BC. (London: Weidenfeld & Nicholas).Google Scholar
Mix, A. C., Bard, E. & Schneider, R. (2001). Environmental processes of the ice age: land, oceans, glaciers (EPILOG). Quaternary Science Reviews, 20, 627–657.CrossRefGoogle Scholar
Moberg, A., Sonechkin, D. M., Holmgren, K., Datsenko, D. M., & Karlén, W. (2005). Highly variable Northern Hemisphere temperatures reconstructed from low-and high-resolution proxy data. Nature, 433, 613–617.CrossRefGoogle ScholarPubMed
Nadel, D. & Werker, E. (1999). The oldest ever brush hut plant remains from Ohalo, Jordan Valley, Israel (19,000 BP). Antiquity, 73, 755–763.CrossRefGoogle Scholar
North Greenland Ice Core Project members. (2004). High-resolution record of Northern Hemisphere climate extending into the last interglacial period. Nature, 431, 147–155.CrossRef
O'Connell, J. F. (1999). Genetics, archaeology, and Holocene hunter-gatherers. Proceedings of the National Academy of Sciences USA, 96, 10,562–10,563.CrossRefGoogle ScholarPubMed
Olsson, O. (2001). The rise of Neolithic agriculture. Working Papers in Economics, No. 57, Göteborg University.Google Scholar
Oppenheimer, S. (2003). Out of Eden: The Peopling of the World. (London: Constable).Google Scholar
Orlova, L. A., Kuzmin, Y. V., Stuart, A. J. & Tikhonov, A. N. (2001). Chronology and environment of wooly mammoth (Mammuthus premigenius Blumenbach) extinction in northern Asia. The World of Elephants – International Congress, Rome, pp. 718–721.Google Scholar
Pääbo, S. (2003). The mosaic that is our genome. Nature, 421, 409–412.CrossRefGoogle ScholarPubMed
Pagel, M. & Mace, R. (2004). The cultural wealth of nations. Nature, 428, 275–278.CrossRefGoogle ScholarPubMed
Pavlov, P., Svendson, J. I. & Indrelid, S. (2001). Human presence in the European Arctic nearly 40,000 years ago. Nature, 413, 64–67.CrossRefGoogle ScholarPubMed
Peterson, L. C., Haug, G. H., Hughen, K. A. & Rohl, U. (2000). Rapid changes in the hydrologic cycle of the tropical Atlantic during the last glacial. Science, 290, 1947–1951.CrossRefGoogle ScholarPubMed
Petit, J. R., Jouzel, J., Raynaud, D.et al. (1999). Climate and atmospheric history of the past 420,000 years from the Vostok ice core, Antarctica. Nature, 399, 429–436.CrossRefGoogle Scholar
Piperno, D. R., Weiss, E., Holst, I. & Nadel, D. (2004). Processing of wild cereal grains in the Upper Palaeolithic revealed by starch grain analysis. Nature, 430, 670–673.CrossRefGoogle ScholarPubMed
Pitulko, V. V., Nikolsky, P. A., Girya, E. Yu. et al. (2004). The Yana River site: Humans in the Arctic before the last Glacial Maximum. Science, 303, 52–56.CrossRefGoogle ScholarPubMed
Prentice, I. C., Jolly, D. & BIOME 6000 participants (2000). Mid-Holocene and glacial-maximum geography of the northern continents and Africa. Journal of Biogeography, 27, 507–520.CrossRefGoogle Scholar
Pulak, C. (1998). The Uluburun shipwreck: an overview. International Journal of Nautical Archaeology, 27, 188–224.CrossRefGoogle Scholar
Rahmstorf, S. (2003). Timing of abrupt climate change: a precise clock. Geophys. Res. Lett. 30, No. 10, 1510, doi 10.1029/2003GLO17115.CrossRefGoogle Scholar
Rahmstorf, S. & Alley, R. (2002). Stochastic resonance in glacial climate. Eos, 83, 129–135.CrossRefGoogle Scholar
Rampino, M. R. & Self, S. (1992). Volcanic winter and accelerated glaciation following the Toba super-eruption. Nature, 359, 50–52.CrossRefGoogle Scholar
Rana, B. K.et al. (1999). High polymorphism at the human melanocortin 1 receptor locus. Genetics, 151, 1547–1557.Google ScholarPubMed
Reed, D. L., Smith, V. S., Hammond, S. L., Rogers, A. R. & Clayton, D. H. (2004). Genetic analysis of lice supports direct contact between modern and archaic humans. PLoS Biology 2 (11): e340.CrossRefGoogle ScholarPubMed
Richards, M., Macauley, V., Hickey, E.et al. (2000). Tracing European founder lineages in the Near Eastern mtDNA pool. American Journal of Human Genetics, 67, 1251–1276.CrossRefGoogle ScholarPubMed
Richards, M. P., Pettitt, P. B., Stiner, M. C. & Trinkaus, E. (2001). Stable isotope evidence for increasing dietary breadth in the European mid-Upper Paleolithic. Proceedings of the National Academy of Sciences USA, 98, 6528–6532.CrossRefGoogle ScholarPubMed
Richards, M. P., Schulting, R. J. & Hedges, R. E. M. (2003). Sharp shift in diet at the onset of the Neolithic. Nature, 425, 366.CrossRefGoogle ScholarPubMed
Richerson, P. J., Boyd, R. & Bettinger, R. L. (2001). Was agriculture impossible during the Pleistocene but mandatory during the Holocene? A climate change hypothesis. American Antiquity, 66, 1–50.CrossRefGoogle Scholar
Roberts, R. G., Flannery, T., Aylifle, L.et al. (2001). New ages for the last Australian megafauna: continent-wide extinction about 46,000 years ago. Science, 292, 1888–1892.CrossRefGoogle ScholarPubMed
Rodbell, D. T., Seltzer, G. O., Anderson, D. M.et al. (1999). An ~15,000-year record of El Niño-driven alluviation in southwestern Ecuador. Science, 283, 516–520.CrossRefGoogle ScholarPubMed
Rogers, A. R. (2001). Order emerging from chaos in human evolutionary genetics. Proceedings of the National Academy of Sciences USA, 98, 779–780.CrossRefGoogle ScholarPubMed
Rohling, E. J., Fenton, M., Jorissen, F. J.et al. (1998). Magnitudes of sea-level low stands of the last 500,000 years. Nature, 394, 162–165.CrossRefGoogle Scholar
Rohling, E. J., Mayewski, P. A., Abu-Zied, R. H., Casford, J. S. L. & Hayes, A. (2002). Holocene atmosphere–ocean interactions: records from Greenland and the Aegean Sea. Climate Dynamics, 18, 587–593.Google Scholar
Rudgley, R. (1998) Lost Civilisations of the Stone Age (London: Century).Google Scholar
Ruff, C. B., Trinkhaus, E. & Holliday, T. W. (1997). Body mass and encephalization in Pleistocene Homo. Nature, 387, 173–6.CrossRefGoogle ScholarPubMed
Ryan, W. B. F. & Pitman, W. (1998). Noah's Flood. The Scientific Discoveries About the Event that Changed History (New York: Simon and Schuster).Google Scholar
Ryan, W. B. F., Pitman, W. C., Major, C. O.et al. (1997). The abrupt drowning of the Black Sea shelf. Marine Geology, 138, 119–126.CrossRefGoogle Scholar
Sablin, M. V. & Khlopachev, G. A. (2002). The earliest ice age dogs: Evidence from Eliseevichi 1. Current Anthropology, 43, 795–8.CrossRefGoogle Scholar
Sachs, J. E. (2000). Tropical underdevelopment. Centre for International Development, Harvard University, Working Paper No. 57.
Sahlins, M. (1972). Stone Age Economics (New York: Walter De Gruyter Inc.).Google Scholar
Sandweiss, D. H., Maasch, K. A. & Anderson, D. G. (2001). Variations in Holocene El Nino frequencies: climate records and cultural consequences in Ancient Peru. Geology, 7, 603–606.2.0.CO;2>CrossRefGoogle Scholar
Sarnthein, M., Pflaumann, U. & Weinelt, M. (2003). Past extent of sea ice in the northern North Atlantic inferred from foraminiferal paleotemperatures estimates. Paleoceanography, 18, 1047, doi:10.1029/2002PA000771.CrossRefGoogle Scholar
Savolainen, P., Zhang, Y. P., Luo, J., Lundeberg, J. & Leitner, T. (2002). Genetic evidence for an East Asian origin of domestic dogs. Science, 298, 1610–1613.CrossRefGoogle ScholarPubMed
Schiermeier, Q. (2004). Noah's flood. Nature 430, 718–719.CrossRefGoogle ScholarPubMed
Schulz, H., Rad, U. & Erlenkeuser, H. (1998). Correlation between Arabian Sea and Greenland climate oscillations in past 110,000 years. Nature, 393, 54–57.CrossRefGoogle Scholar
Schulz, H., Emeis, K.-C., Erlenkeuser, H.et al. (2002). The Toba volcanic event and interstadial/stadial climates at the marine isotopic stage 5 to 4 transition in the Northern Indian Ocean. Quaternary Research, 57, 22–31.CrossRefGoogle Scholar
Schuman, B. N., Bartlein, P. J., Logar, N.et al. (2002). Parallel climate and vegetation responses to the early Holocene collapse of the Laurentide Ice Sheet. Quaternary Science Reviews, 21, 1793–1805.CrossRefGoogle Scholar
Searls, D. B. (2003). Trees of life and language. Nature, 426, 391–392.CrossRefGoogle Scholar
Seielstad, M. T., Minch, E. & Cavalli-Sforza, L. L. (1998). Genetic evidence for a higher female migration rate in humans. Nature Genetics, 20, 278–280.CrossRefGoogle ScholarPubMed
Semino, O., Passarino, G., Oefner, P. J.et al. (2000). The genetic legacy of paleolithic Homo sapiens sapiens in extant Europeans: a Y chromosome perspective. Science, 290, 1155–1159.CrossRefGoogle ScholarPubMed
Shelach, G. (2000). The earliest Neolithic cultures of northeast China: recent discoveries and new perspectives on the beginning of agriculture. Journal of World Prehistory, 14, 363–413.CrossRefGoogle Scholar
Smith, B. D. (1997). Initial domestication of Curcurbita pepo in the Americas 10,000 years ago. Science, 276, 932–934.CrossRefGoogle Scholar
Smith, P. E. L. (1976). Stone-age man on the Nile. Scientific American, November, p. 30.CrossRefGoogle Scholar
Soffer, O., Adovasio, J. M. & Hyland, D. C. (2000). The “Venus” Figurines: textiles, basketry, gender, and status in the Upper Paleolithic. Current Anthropology, 41, 511–537.Google Scholar
Solis, R. S., Haas, J. & Creamer, W. (2001). Dating Caral, a preceramic site in the Supe Valley on the central coast of Peru. Science, 292, 723–6.CrossRefGoogle ScholarPubMed
Sparks, T. H. & Carey, P. D. (1995) The responses of species to climate over two centuries: an analysis of the Marsham phenological record. Journal of Ecology, 83, 321–329CrossRefGoogle Scholar
Spoetl, C. & Mangini, A. (2002). Stable isotopes in speleothems as proxies to past environmental changes in the Alps. Earth and Planetary Science Letters, 203, 507–518.Google Scholar
Stager, J. C. & Mayewski, P. A. (1997). Abrupt early to mid-Holocene climatic transition registered at the Equator and the poles. Science, 276, 1834–1836.CrossRefGoogle Scholar
Stanford, D. & Bradley, B. (2000). The Solutrean solution: did some ancient Americans come from Europe?Discovering Archaeology, 2, 54–55.Google Scholar
Starikovskaya, Y. B., Sukernik, R. I., Schurr, T. G.et al. (1998). mtDNA Diversity in Chukchi and Siberian Eskimos: implications for the genetic history of ancient Beringia and the peopling of the New World. American Journal of Human Genetics, 63, 1473–1491.CrossRefGoogle ScholarPubMed
Staubwasser, M., Sirocko, F., Grootes, P. M. & Segl, M. (2003). Climate change at the 4.2 ka BP termination of the Indus valley civilization and Holocene south Asian monsoon variability. Geophysical Research Letters, 30, 1425–8, doi:10.1029/2002GL016822.CrossRefGoogle Scholar
Stiner, M. C. (1999). Paleolithic population growth pulses evidenced by small animal exploitation. Science, 283, 190–194.CrossRefGoogle ScholarPubMed
Stiner, M. C.(2001). Thirty years on the ‘Broad Spectrum Revolution’ and paleolithic demography. Proceedings of the National Academy of Sciences USA, 98, 6993–6996CrossRefGoogle Scholar
Stiner, M. C. & Munro, N. D. (2002). Approaches to prehistoric diet breadth, demography and prey ranking systems in time and space. Journal of Archaeological Method and Theory, 9, 181–214.CrossRefGoogle Scholar
Stone, A. C. & Stoneking, M. (1998). mtDNA analysis of a prehistoric Oneota population: implications for the peopling of the New World. American Journal of Human Genetics, 62, 1153–1170.CrossRefGoogle ScholarPubMed
Stothers, R. B. (1984). Mystery cloud of AD 536. Nature, 307, 344–345.CrossRefGoogle Scholar
Street-Perrott, F. A., Holmes, J. A., Waller, M. P.et al. (2000). Drought and dust deposition in the West African Sahel: a 5500-year record from Kajemarum Oasis, northeastern Nigeria. Holocene, 10, 293–302.CrossRefGoogle Scholar
Stringer, C. (2000). Coasting out of Africa. Nature, 405, 24–27.CrossRefGoogle ScholarPubMed
Stringer, C. & Gamble, C. (1993). In Search of the Neanderthals (London: Thames & Hudson).Google Scholar
Stuart, A. J., Kosintsev, P. A., Higham, T. F. G. & Lister, A. M. (2004). Pleistocene to Holocene extinction dynamics in giant deer and woolly mammoth. Nature, 431, 684–689.CrossRefGoogle ScholarPubMed
Stuiver, M., Reimer, P. J., Bard, E.et al. (1998). INTCAL98 Radiocarbon age calibration, 24,000–0 cal BP. Radiocarbon, 40, 1041–1083.CrossRefGoogle Scholar
Suess, H. E. & Linick, T. W. (1990). The C record in bristlecone pine wood of the past 8000 years based on the dendrochronology of the late C. W. Ferguson. Philosophical Transactions of the Royal Society of London. A 330, 403–412.CrossRefGoogle Scholar
Sykes, B. (2002). The Seven Daughters of Eve (London: Bantam Press) pp. 167–184.Google Scholar
Taçon, P. & Chippendale, C. (1994). Australia's ancient warriors: changing depictions of fighting in the rock art of Arnhem Land, NT. Cambridge Archaeological Journal, 4, 211–248.CrossRefGoogle Scholar
Taçon, P. S. C. & Pardoe, C. (2002). Dogs make us human. Nature Australia 27, 52–61.Google Scholar
Tambets, K., Rootsi, S., Kivisild, T.et al. (2004). The western and eastern roots of the Saami – the story of genetic ‘outliers’ told by mitochondrial DNA and Y chromosomes. American Journal of Human Genetics 74, 661–682.CrossRefGoogle ScholarPubMed
Taylor, K. C., Lamorey, G. W., Doyle, G. A.et al. (1993). The ‘flickering switch’ of late Pleistocene climate change. Nature, 361, 432–436.CrossRefGoogle Scholar
Thompson, L. G., Davis, M. E., Mosley–Thompson, E.et al. (1998). A 25,000 year tropical climate history from Bolivian ice cores. Science, 282, 1858–1864.CrossRefGoogle ScholarPubMed
Thorpe, I. J. N. (2003). Anthropology, archaeology and the origin of warfare. World Archaeology, 35, 145–165.CrossRefGoogle Scholar
Thouveny, N., Beaulieu, J. L., Bonifay, E.et al. (1994). Climate variations in Europe over the past 140 kyr deduced from rock magnetism. Nature, 371, 503–506.CrossRefGoogle Scholar
Torroni, A., Schurr, T. G., Cabell, M. F.et al. (1993). Asian affinities and continental radiation of the four founding Native American mtDNAs. American Journal of Human Genetics, 53, 563–590.Google ScholarPubMed
Torroni, A., Bandelt, H. J., D'Urbano, L.et al. (1998). mtDNA analysis reveals a major Late Paleolithic population expansion from southwestern to northeastern Europe. American Journal of Human Genetics, 62, 1137–1152.CrossRefGoogle Scholar
Trinkhaus, E. & Shipman, P. (1993). The Neanderthals, Changing the Image of Mankind (London: Jonathan Cape).Google Scholar
Tudhope, A. W., Chilcott, C. P., Mc Culloch, M. T., et al. (2001). Variability in the El Niño–Southern Oscillation through a glacial–interglacial cycle. Science, 291, 1511–1517.CrossRefGoogle ScholarPubMed
Tzedakis, P. C., Lawson, I. T., Frogley, M. R.et al. (2002). Buffered tree population changes in a quaternary refugium: evolutionary implications. Science, 297, 2044–2047.CrossRefGoogle Scholar
Underhill, P. A., Shen, P., Lin, A. A.et al. (2000). Y chromosome sequence variation and the history of human populations. Nature Genetics. 26, 358–361.CrossRefGoogle ScholarPubMed
Usher, D. (2003). Political Economy (Oxford: Blackwell).CrossRefGoogle Scholar
Valladas, H., Clottes, J., Geneste, J. M.et al. (2001). Evolution of prehistoric cave art. Nature, 413, 479.CrossRefGoogle ScholarPubMed
Vallois, H. (1961). The social life of early man: The evidence of the skeletons. In Social Life of Early Man, Washburn, S., ed. (Chicago: Aldine).Google Scholar
van Engelen, A. F. V. & Nellestijn, J. W. (1995). Monthly, seasonal and annual means of the air temperature in tenths of centigrades in de Bilt, Netherlands, 1706–1995. KMNI (Dutch Meteorological Service) Report, Climatological Services Division.
Loon, H. & Rogers, J. C. (1978). Seesaw in winter temperatures between Greenland and Northern Europe. 1. General description. Monthly Weather Reviews, 106, 296–310.2.0.CO;2>CrossRefGoogle Scholar
Noordwijk, A. J. (2003). The earlier bird. Nature, 422, 29.CrossRefGoogle ScholarPubMed
Vartanyan, S. L., Garutt, V. E. & Sher, A. V. (1993). Holocene dwarf mammoths from Wrangel Island in the Siberian Arctic. Nature, 362, 337–340.CrossRefGoogle ScholarPubMed
Vasil'ev, S. A., Kuzmin, Y. V., Orlova, L. A. & Dementiev, V. N. (2002). Radiocarbon-based chronology of the Paleolithic in Siberia and its relevance to the peopling of the New World. Radiocarbon, 44, 503–530.CrossRefGoogle Scholar
Vigne, J. D., Guilaine, J., Debue, K.et al. (2004). Early taming of the cat in Cyprus. Science, 304, 259.CrossRefGoogle ScholarPubMed
Vila, C., Savolainen, P., Maldonado, J. E.et al. (1997). Multiple and ancient origins of the domestic dog. Science, 276, 1687–1689.CrossRefGoogle ScholarPubMed
Vila, C., Maldanado, E. & Wayne, R. K. (1999). Phylogenic relationships, evolution, and genetic diversity of the domestic dog. Journal of Heredity, 90, 71–77.CrossRefGoogle Scholar
Verrelli, B. C. & Tishkoff, S. A. (2004). Signatures of selection and gene conversion associated with human color vision variation. American Journal of Human Genetics, 75, 363–375.CrossRefGoogle ScholarPubMed
Grafenstein, U., Erlenkeuser, H., Braues, A.et al. (1999). A mid-European decadal isotope-climate record from 15,500 to 5000 years BP. Science, 284, 1684–1687.Google Scholar
Storch, H., Zorita, E., Jones, J., Dimitriev, Y., González-Rouco, F. & Tett, S. (2004). Reconstructing past climate from noisy data. Science, 306, 679–683.CrossRefGoogle Scholar
Walker, G. T. (1928). World Weather. Quarterly Journal Royal Meteorological Society, 54, 79–87.CrossRefGoogle Scholar
Wall, J. D. & Przeworski, M. (2000). When did the human population size start increasing?Genetics, 155, 1865–1874.Google ScholarPubMed
Wallace, D. C. & Torroni, A. (1992). American Indian prehistory as written in the mitochondrial DNA: a review. Human Biology, 64, 403–416.Google ScholarPubMed
Walter, R. C., Buffler, R. T, Bruggemann, J. H.et al. (2000). Early human occupation of the Red Sea coast of Eritrea during the last interglacial. Nature, 405, 65–69.CrossRefGoogle ScholarPubMed
Wang, Y. J., Cheng, H., Edwards, R. L.et al. (2001). A high-resolution absolute-dated Late Pleistocene monsoon record from Hulu Cave, China. Science, 294, 2345–2348.CrossRefGoogle ScholarPubMed
Weaver, A. J., Saenko, O. A, Clark, P. U., & Mitrovica, J. X. (2003). Meltwater pulse 1A from Antarctica as a trigger of the Bølling/Allerød warm interval. Science, 299, 1709–1713.CrossRefGoogle Scholar
Weiss, H. & Bradley, R. S. (2001). What drives societal collapse?Science, 291, 609–610.CrossRefGoogle ScholarPubMed
Weiss, H., Courty, M. A., Wetterstrom, W.et al. (1993). The genesis and collapse of third millennium North Mesopotamian civilization. Science, 261, 995–1004.CrossRefGoogle ScholarPubMed
Wells, R. S., Yuldasheva, N., Ruzibakiev, R.et al. (2001). The Eurasian heartland: a continental perspective on Y-chromosome diversity. Proceedings of the National Academy of Sciences USA, 98, 10244–10249.CrossRefGoogle ScholarPubMed
Wendorf, F. (1968). A Nubian Final Paleolithic graveyard near Jebel Sahaba, Sudan. In The Prehistory of Nubia (Dallas: Fort Burgwin Research Center and Southern Methodist University Press) pp. 791–953Google Scholar
Wendorf, F. & Schild, R. (1998). Nabta Playa and its role in northeastern African prehistory. Journal of Anthropological Archaeology, 17, 97–123.CrossRefGoogle Scholar
Wendorf, F., Schild, R., El Hadidi, N.et al. (1979). The use of barley in the Egyptian Late Paleolithic. Science, 205, 1341–1347.CrossRefGoogle ScholarPubMed
Wendorf, F., Schild, R., Close, A. E.et al. (1984). New radiocarbon dates on the cereals from Wadi Kubbaniya. Science, 225, 645–646.CrossRefGoogle ScholarPubMed
Wenke, R. J. (1999). Patterns in Prehistory: Humankind's First Three Million Years, 4th Edn. (Oxford: Oxford University Press).Google Scholar
White, T. D., Asfaw, B., Gusta, D.et al. (2003). Pleistocene Homo Sapiens from Middle Awash, Ethiopia. Nature, 423, 742–747.CrossRefGoogle ScholarPubMed
Whitlock, C. & Bartlein, P. J. (1997). Vegetation and climate change in northwestern America during the last 125 kyr. Nature, 388, 57–61.CrossRefGoogle Scholar
Wick, L., Lemcke, G. & Sturm, M. (2003). Evidence of late glacial and Holocene climatic change and human impact in eastern Anatolia: high-resolution pollen, charcoal, isotopic and geochemical records from the laminated sediments of Lake Van, Turkey. The Holocene, 13, 665–675.CrossRefGoogle Scholar
Wilson, A. C. & Cann, R. L. (1992). The recent African genesis of humans. Scientific American, April 1992, pp. 68–73.Google ScholarPubMed
Wilson, J. F.et al. (2001). Genetic evidence for different male and female roles during cultural transitions in the British Isles. Proceedings of the National Academy of Sciences USA, 98, 5078–5083.CrossRefGoogle ScholarPubMed
World Meteorological Organisation (WMO) (2003). Climate: Into the 21st Century, Burroughs, W. J., ed. (Cambridge: Cambridge University Press).Google Scholar
Yu, G., Chen, X., Ni, J.et al. (2000) Palaeovegetation of China: a pollen data-based synthesis for the mid-Holocene and last glacial maximum. Journal of Biogeography, 27, 635–664.CrossRefGoogle Scholar
Yu, Z. & Eicher, U. (1998). Abrupt climate oscillations during the last deglaciation in central North America. Science, 282, 2235–2238.CrossRefGoogle ScholarPubMed
Zazula, G. D., Froese, D. G., Schweger, C. E.et al. (2003). Ice-age steppe vegetation in east Beringia. Nature, 423, 603.CrossRefGoogle ScholarPubMed
Zeder, M. A. & Hesse, B. (2000). The initial domestication of goats (Capra hircus) in the Zagros mountains 10,000 years ago. Science, 287, 2254–2257.CrossRefGoogle ScholarPubMed

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