Книга Мир до нас: Новый взгляд на происхождение человека - Том Хайэм
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См.: Глава 2, примечание 42.
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Kaifu, Y., Baba, H. and Aziz, F. 2006. Indonesian Homo erectus and Modern Human Origins in Australasia: New Evidence from the Sambungmacan Region, Central Java. In Y. Tomida et al. (eds.), Proceedings of the 7th and 8th Symposia on Collection Building and Natural History Studies in Asia and the Pacific Rim, National Science Museum Monographs (34), Tokyo: National Science Museum, pp. 289–94.
277
Delson, E. et al. 2001. The Sambungmacan 3 Homo erectus Calvaria: A Comparative Morphometric and Morphological Analysis. Anatomical Record 262: 380–97.
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Turney, C. S. M. et al. 2020. Late Survival of Multiple Hominin Species in Island Southeast Asia. Статья находится на стадии отправки в научное издание.
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Browning, S. R. et al. 2018. Analysis of Human Sequence Data Reveals Two Pulses of Archaic Denisovan Admixture. Cell 173(1): 53–61.
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Lawson, D. J., van Dorp, L. and Falush, D. 2018. A Tutorial on How Not to Over-Interpret STRUCTURE and ADMIXTURE Bar Plots. Nature Communications 9(3258).
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Sagan, C. 2006. The Varieties of Scientific Experience: A Personal View of the Search for God, ed. A. Druyan. Harmondsworth: Penguin.
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Sutikna, T. et al. 2018. The Spatio-Temporal Distribution of Archaeological and Faunal Finds at Liang Bua (Flores, Indonesia) in Light of the Revised Chronology for Homo floresiensis. Journal of Human Evolution 124: 52–72.
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Tucci, S. et al. 2018. Evolutionary History and Adaptation of a Human Pygmy Population of Flores Island, Indonesia. Science 361: 511–16.
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Gravina, B., Mellars, P. and Ramsey, C. 2005. Radiocarbon Dating of Interstratified Neanderthal and Early Modern Human Occupations at the Châtelperronian Type-Site. Nature 438: 51–6; Zilhão, J. et al. 2008. Grotte des Fées (Châtelperron): History of Research, Stratigraphy, Dating, and Archaeology of the Châtelperronian Type-Site. PalaeoAnthropology 2008: 1–42; Riel-Salvatore, J., Miller, A. E. and Clark, G. A. 2008. An Empirical Evaluation of the Case for a Châtelperronian-Aurignacian Interstratification at Grotte des Fées de Châtelperron. World Archaeology 40(4): 480–92.
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Finlayson, C. et al. 2008. Gorham's Cave, Gibraltar – The Persistence of a Neanderthal Population. Quaternary International 181(1): 64–71
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Finlayson, C. et al. 2006. Late Survival of Neanderthals at the Southernmost Extreme of Europe. Nature 443: 850–53.
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Banks, W. E. et al. 2008. Neanderthal Extinction by Competitive Exclusion. PLoS ONE 3(12): e3972.
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Wood, R. E. et al. 2013. Radiocarbon Dating Casts Doubt on the Late Chronology of the Middle to Upper Palaeolithic Transition in Southern Iberia. Proceedings of the National Academy of Sciences 110(8): 2781–6.
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Pinhasi, R. et al. 2011. Revised Age of Late Neanderthal Occupation and the End of the Middle Paleolithic in the Northern Caucasus. Proceedings of the National Academy of Sciences 108(21): 8611–16.
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Higham, T. F. G. 2011. European Middle and Upper Palaeolithic Radiocarbon Dates are Often Older Than They Look: Problems with Previous Dates and Some Remedies. Antiquity 85(327): 235–49.
291
Higham, T. F. G. et al. 2014. The Timing and Spatiotemporal Patterning of Neanderthal Disappearance. Nature 512: 306–9.
292
Trinkaus, E., Constantin, S. and Zilhão, J. (eds.). 2013. Life and Death at the Peştera cu Oase: A Setting for Modern Human Emergence in Europe. Oxford: Oxford University Press.
293
Trinkaus, E. et al. 2003. An Early Modern Human from the Peştera cu Oase, Romania. Proceedings of the National Academy of Sciences 100(20): 11231–6.
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Fu, Q. et al. 2015. An Early Modern Human from Romania with a Recent Neanderthal Ancestor. Nature 524(7564): 216–19.
295
Benazzi, S. et al. 2011. Early Dispersal of Modern Humans in Europe and Implications for Neanderthal Behaviour. Nature 479: 525–8.
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Hublin, J.-J. et al. 2020. Initial Upper Palaeolithic Homo sapiens from Bacho Kiro Cave, Bulgaria. Nature 581: 299–302.
297
Hajdinjak, M. et al. 2018. Reconstructing the Genetic History of Late Neanderthals. Nature 555: 652–6.
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Mellars, P. 2004. Neanderthals and the Modern Human Colonization of Europe. Nature 432: 461–5.
299
Giaccio, B. et al. 2017. High-Precision 14C and 40Ar/39Ar Dating of the Campanian Ignimbrite (Y-5) Reconciles the Time-Scales of Climatic-Cultural Processes at 40 ka. Scientific Reports 7(45940). https://doi.org/10.1038/srep45940.
300
Sinitsyn, A. A. 2003. A Palaeolithic 'Pompeii' at Kostenki, Russia. Antiquity 77(295): 9–14.
301
Golovanova, L. V. et al. 2010. Significance of Ecological Factors in the Middle to Upper Paleolithic Transition. Current Anthropology 51(5): 655–91.
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Black, B. A., Neely, R. R. and Manga, M. 2015. Campanian Ignimbrite Volcanism, Climate, and the Final Decline of the Neanderthals. Geology 43(5): 411–14.
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Underdown, S. 2008. A Potential Role for Transmissible Spongiform Encephalopathies in Neanderthal Extinction. Medical Hypotheses 71(1): 4–7.
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Whitfield, J. T. et al. 2008. Mortuary Rites of the South Fore and Kuru. Philosophical Transactions of the Royal Society B 363: 3721–4.
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Alpers, M. P. 2007. A History of Kuru. Papua and New Guinea Medical Journal 50(1–2): 10–19.
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Riel-Salvatore, J. 2008. Mad Neanderthal Disease? Some Comments on 'A Potential Role for Transmissible Spongiform Encephalopathies in Neanderthal Extinction'. Medical Hypotheses 71(3): 473–4.
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Valet, J.-P. and Valladas, H. 2010. The Laschamp-Mono Lake Geomagnetic Events and the Extinction of Neanderthal: A Causal Link or a Coincidence? Quaternary Science Reviews 29(27–8): 3887–93.
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Mellars, P. and French, J. C. 2011. Tenfold Population Increase in Western Europe at the Neandertal-to-Modern Human Transition. Science 333: 623–7.
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Dogandžić, T. and McPherron, S. P. 2013. Demography and the Demise of Neandertals: A Comment on 'Tenfold Population Increase in Western Europe at the Neandertal-to-Modern Human Transition'. Journal of Human Evolution 64: 311–13.
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Li, H. and Durbin, R. 2011. Inference of Human Population History from Individual Whole-Genome Sequences. Nature 475: 493–6.
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Prüfer, K. et al. 2014. The Complete Genome Sequence of a Neanderthal from the Altai Mountains. Nature 505(7481): 43–9.
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Meyer, M. et al. 2012. A High-Coverage Genome Sequence from an Archaic Denisovan Individual. Science 338: 222–6; Mafessoni, F. et al. 2020. A High-Coverage Neandertal Genome from Chagyrskaya Cave. bioRxiv 2020.03x2.988956. https://doi.org/10.1101/2020.03.12.988956.
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Оценить численность древней популяции чрезвычайно трудно. Наиболее тщательный анализ был представлен в работе: Bocquet-Appel, J-P. and Degioanni, A. 2013. Neanderthal Demographic Estimates. Current Anthropology 54(8): S202–13. Ее авторы, используя 9 различных сценариев вычисления, оценивают величину неандертальской популяции в интервале от 5000 до 70 000 особей. Из результатов более поздних работ, основанных на анализе ядерного генома,