Эволюция человека. Книга 3. Кости, гены и культура - читать онлайн книгу. Автор: Александр Владимирович Марков, Елена Наймарк cтр.№ 126

читать книги онлайн бесплатно
 
 

Онлайн книга - Эволюция человека. Книга 3. Кости, гены и культура | Автор книги - Александр Владимирович Марков , Елена Наймарк

Cтраница 126
читать онлайн книги бесплатно

Barton R. A., Harvey P. H. 2000. Mosaic evolution of brain structure in mammals // Nature. V. 405. P. 1055–1058.

Bednarik R., Beaumont P. 2012. Pleistocene engravings from Wonderwerk Cave, South Africa // Préhistoire, Art et Sociétés, Bulletin de la Société Préhistorique Ariège-Pyrénées. V. 65–66. P. 96–97.

Beier J. et al. 2018. Similar cranial trauma prevalence among Neanderthals and Upper Palaeolithic modern humans // Nature. V. 563. P. 686–690.

Benazzi S. et al. 2015. The makers of the Protoaurignacian and implications for Neandertal extinction // Science. V. 348. P. 793–796.

Berger L. R. et al. 2015. Homo naledi, a new species of the genus Homo from the Dinaledi Chamber, South Africa // eLife. V. 4. e09560.

Berger L. R. et al. 2017. Homo naledi and Pleistocene hominin evolution in subequatorial Africa // eLife. V. 6. e24234.

Berger T. D., Trinkaus E. 1995. Patterns of trauma among the Neandertals // Journal of Archaeological Science. V. 22. P. 841–852.

Berna F. et al. 2012. Microstratigraphic evidence of in situ fire in the Acheulean strata of Wonderwerk Cave, Northern Cape province, South Africa // PNAS. V. 109. P. 7593–7594.

Beyene Y. et al. 2013. The characteristics and chronology of the earliest Acheulean at Konso, Ethiopia // PNAS. V. 5. P. 1584–1591.

Bickerton D., Szathmary E. 2011. Confrontational scavenging as a possible source for language and cooperation // BMC Evolutionary Biology. V. 11. P. 261.

Bon F. 2006. A brief overview of Aurignacian cultures in the context of the industries of the transition from the Middle to the Upper Paleolithic / Bar-Yosef O., ZilhÃo J., eds. Towards the definition of the Aurignacian. Lisbon: Instituto Português de Arqueologia. P. 133–144.

Braun D. R. et al. 2010. Early hominin diet included diverse terrestrial and aquatic animals 1.95 Ma in East Turkana, Kenya // PNAS. V. 107. P. 10002–10007.

Brooks A. S. et al. 2018. Long-distance stone transport and pigment use in the earliest Middle Stone Age // Science. V. 360. P. 90–94.

Brown S. et al. 2016. Identification of a new hominin bone from Denisova Cave, Siberia using collagen fingerprinting and mitochondrial DNA analysis // Scientific Reports. V. 6. 23559.

Browning S. R. et al. 2018. Analysis of human sequence data reveals two pulses of archaic Denisovan admixture // Cell. V. 173. P. 1–9.

Brumm A. et al. 2010. Hominins on Flores, Indonesia, by one million years ago // Nature. V. 464. P. 748–752.

Brumm A. et al. 2016. Age and context of the oldest known hominin fossils from Flores // Nature. V. 534. P. 249–253.

Buckley M. 2018. Zooarchaeology by mass spectrometry (ZooMS) collagen fingerprinting for the species identification of archaeological bone fragments / Giovas C., LeFebvre M., eds. Zooarchaeology in practice. Cham: Springer. P. 227–247.

Burger J. et al. 2020. Low prevalence of lactase persistence in Bronze Age Europe indicates ongoing strong selection over the last 3,000 years // Current Biology. V. 30. P. 4307–4315.

Byrne R. W., Whiten A. 1988. Machiavellian intelligence: social expertise and the evolution of intellect in monkeys, apes and humans. Oxford: Clarendon Press.

Byrne R. W., Corp N. 2004. Neocortex size predicts deception rate in primates // Proceedings of the Royal Society B. V. 271. P. 1693–1699.

Callaway E. 2019. First portrait of mysterious Denisovans drawn from DNA // Nature. V. 573. P. 475–476.

Caro T. M., Hauser M. D. 1992. Is there teaching in nonhuman animals? // The Quarterly Review of Biology. V. 67. P. 151–174.

Caspari R., Lee S.-H. 2004. Older age becomes common late in human evolution // PNAS. V. 101. P. 10895–10900.

Cerling T. E. et al. 2013. Stable isotope-based diet reconstructions of Turkana Basin hominins // PNAS. V. 110. P. 10501–10506.

Chang C.-H. et al. 2015. The first archaic Homo from Taiwan // Nature Communications. V. 6. P. 6037.

Chen F. et al. 2019. A late Middle Pleistocene Denisovan mandible from the Tibetan Plateau // Nature. V. 569. P. 409–412.

Crews D. E. 2003. Human senescence: evolutionary and biocultural perspectives. Cambridge: Cambridge University Press.

Curtis J. T. et al. 2006. Dopamine and monogamy // Brain Research. V. 1126. P. 76–90.

Dabney J. et al. 2013. Complete mitochondrial genome sequence of a Middle Pleistocene cave bear reconstructed from ultrashort DNA fragments // PNAS. V. 110. P. 15758–15763.

Dear K. et al. 2019. Do “watching eyes” influence antisocial behavior? A systematic review & meta-analysis // Evolution and Human Behavior. V. 40. P. 269–280.

DeCasien A. R., Higham J. P. 2019. Primate mosaic brain evolution reflects selection on sensory and cognitive specialization // Nature Ecology & Evolution. V. 3. P. 1483–1493.

De Dreu C. K. et al. 2012. Oxytocin motivates non-cooperation in intergroup conflict to protect vulnerable in-group members // PLoS ONE. V. 7. e46751.

De Dreu C. K. 2016. Oxytocin conditions intergroup relations through upregulated in-group empathy, cooperation, conformity, and defense // Biological Psychiatry. V. 79. P. 165–173.

Deino A. L. et al. 2018. Chronology of the Acheulean to Middle Stone Age transition in eastern Africa // Science. V. 360. P. 95–98.

De Manuel M. et al. 2016. Chimpanzee genomic diversity reveals ancient admixture with bonobos // Science. V. 354. P. 477–481.

DÉtroit F. et al. 2019. A new species of Homo from the Late Pleistocene of the Philippines // Nature. V. 568. P. 181–186.

Devoogd T. et al. 1993. Relations between song repertoire size and the volume of brain nuclei related to song: comparative evolutionary analyses amongst oscine birds // Proceedings of the Royal Society B. V. 254. P. 75–82.

De Waal F. 2001. The ape and the sushi master: cultural reflections of a primatologist. New York: Basic Books.

DiMaggio E. N. et al. 2015. Late Pliocene fossiliferous sedimentary record and the environmental context of early Homo from Afar, Ethiopia // Science. V. 347. P. 1355–1359.

Dirks P. H. G. M. et al. 2015. Geological and taphonomic context for the new hominin species Homo naledi from the Dinaledi Chamber, South Africa // eLife. V. 4. e09561.

Dirks P. H. G. M. et al. 2017. The age of Homo naledi and associated sediments in the Rising Star Cave, South Africa // eLife. V. 6. e24231.

Вернуться к просмотру книги Перейти к Оглавлению Перейти к Примечанию