Drimolen cranium DNH 155 documents microevolution in an early hominin species
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D. Strait | A. Herries | J. Ledogar | G. Schwartz | Amanda L. Smith | G. Boschian | C. Mongle | Jesse M. Martin | A. Leece | Stephanie E. Baker | Simon Neubauer
[1] Justin W. Adams,et al. Contemporaneity of Australopithecus, Paranthropus, and early Homo erectus in South Africa , 2020, Science.
[2] Hominin Postcranial Remains from Sterkfontein, South Africa, 1936-1995 , 2020 .
[3] S. Benazzi,et al. A 3.8-million-year-old hominin cranium from Woranso-Mille, Ethiopia , 2019, Nature.
[4] Justin W. Adams,et al. Elemental signatures of Australopithecus africanus teeth reveal seasonal dietary stress , 2019, Nature.
[5] D. Strait,et al. Expanded character sampling underscores phylogenetic stability of Ardipithecus ramidus as a basal hominin. , 2019, Journal of human evolution.
[6] B. Wood,et al. Evolution of the modern human brain. , 2019, Progress in brain research.
[7] D. Strait,et al. U–Pb-dated flowstones restrict South African early hominin record to dry climate phases , 2018, Nature.
[8] A. Herries,et al. The first bone tools from Kromdraai and stone tools from Drimolen, and the place of bone tools in the South African Earlier Stone Age , 2018, Quaternary International.
[9] F. Eynaud,et al. A two-million-year-long hydroclimatic context for hominin evolution in southeastern Africa , 2018, Nature.
[10] P. Gunz,et al. The evolution of modern human brain shape , 2018, Science Advances.
[11] Reporting for specific materials, systems and methods , 2018 .
[12] U. Toom,et al. New crinoids from the Baltic region (Estonia): fossil tip‐dating phylogenetics constrains the origin and Ordovician–Silurian diversification of the Flexibilia (Echinodermata) , 2017 .
[13] David F. Wright,et al. Bayesian estimation of fossil phylogenies and the evolution of early to middle Paleozoic crinoids (Echinodermata) , 2017, Journal of Paleontology.
[14] B. Richmond,et al. The Biomechanics of Bony Facial “Buttresses” in South African Australopiths: An Experimental Study Using Finite Element Analysis , 2017, The Anatomical Record.
[15] C. K. Brain,et al. New early Pleistocene hominin teeth from the Swartkrans Formation, South Africa. , 2016, Journal of human evolution.
[16] F. Ronquist,et al. Ecology, Evolution and Organismal Biology Publications Ecology, Evolution and Organismal Biology Total-evidence Dating under the Fossilized Birth–death Process , 2022 .
[17] M. Christopher Dean,et al. Reconstructed Homo habilis type OH 7 suggests deep-rooted species diversity in early Homo , 2015, Nature.
[18] Michael A. Berthaume,et al. The Feeding Biomechanics and Dietary Ecology of Paranthropus boisei , 2015, Anatomical record.
[19] J. Cheverud,et al. Characterizing the Evolutionary Path(s) to Early Homo , 2014, PloS one.
[20] Tanja Stadler,et al. Bayesian Inference of Sampled Ancestor Trees for Epidemiology and Fossil Calibration , 2014, PLoS Comput. Biol..
[21] J. Huelsenbeck,et al. The fossilized birth–death process for coherent calibration of divergence-time estimates , 2013, Proceedings of the National Academy of Sciences.
[22] Justin W. Adams,et al. Clarifying the context, dating and age range of the Gondolin hominins and Paranthropus in South Africa. , 2013, Journal of human evolution.
[23] G. P. Rightmire,et al. A Complete Skull from Dmanisi, Georgia, and the Evolutionary Biology of Early Homo , 2013, Science.
[24] C. K. Brain,et al. New hominid fossils from Member 1 of the Swartkrans formation, South Africa. , 2012, Journal of human evolution.
[25] P. Gunz,et al. Endocranial volume of Australopithecus africanus: new CT-based estimates and the effects of missing data and small sample size. , 2012, Journal of human evolution.
[26] Maxim Teslenko,et al. MrBayes 3.2: Efficient Bayesian Phylogenetic Inference and Model Choice Across a Large Model Space , 2012, Systematic biology.
[27] A. Herries,et al. Australopithecus sediba at 1.977 Ma and Implications for the Origins of the Genus Homo , 2011, Science.
[28] A. Pyron,et al. Divergence time estimation using fossils as terminal taxa and the origins of Lissamphibia. , 2011, Systematic biology.
[29] J. Kramers,et al. Contemporary flowstone development links early hominin bearing cave deposits in South Africa , 2011 .
[30] J. Moggi-Cecchi,et al. Early hominin dental remains from the Plio-Pleistocene site of Drimolen, South Africa. , 2010, Journal of human evolution.
[31] K. Carlson,et al. Australopithecus sediba: A New Species of Homo-Like Australopith from South Africa , 2010, Science.
[32] C. K. Brain,et al. Newly discovered fossil- and artifact-bearing deposits, uranium-series ages, and Plio-Pleistocene hominids at Swartkrans cave, South Africa. , 2009, Journal of human evolution.
[33] P. Gunz,et al. The pattern of endocranial ontogenetic shape changes in humans , 2009, Journal of anatomy.
[34] T. Saxena. The Species Concept , 2009 .
[35] B. Wood,et al. The Homo floresiensis cranium (LB1): Size, scaling, and early Homo affinities , 2008, Proceedings of the National Academy of Sciences.
[36] J. Moggi-Cecchi,et al. Extended Male Growth in a Fossil Hominin Species , 2007, Science.
[37] K. de Queiroz,et al. Species concepts and species delimitation. , 2007, Systematic biology.
[38] D. Guatelli‐Steinberg,et al. Isotopic Evidence for Dietary Variability in the Early Hominin Paranthropus robustus , 2006, Science.
[39] Y. Rak,et al. Was Australopithecus anamensis ancestral to A. afarensis? A case of anagenesis in the hominin fossil record. , 2006, Journal of human evolution.
[40] Christopher A. Brown,et al. Dental microwear texture analysis shows within-species diet variability in fossil hominins , 2005, Nature.
[41] G. Wefer,et al. Linking desert evolution and coastal upwelling: Pliocene climate change in Namibia , 2005 .
[42] J. C. Redmond. The human fossil record; volume three: Brain endocasts, the paleoneurological evidence , 2005 .
[43] Y. Rak,et al. The skull of Australopithecus afarensis , 2005 .
[44] T. White,et al. Late Miocene Teeth from Middle Awash, Ethiopia, and Early Hominid Dental Evolution , 2004, Science.
[45] B. Wood,et al. Patterns of resource use in early Homo and Paranthropus. , 2004, Journal of human evolution.
[46] C. Boesch,et al. Social influences on ranging patterns among chimpanzees (Pan troglodytes verus) in the Taï National Park, Côte d'Ivoire , 2003 .
[47] Adoum H. Mahamat,et al. A new hominid from the Upper Miocene of Chad, Central Africa , 2002, Nature.
[48] P. Lewis. A likelihood approach to estimating phylogeny from discrete morphological character data. , 2001, Systematic biology.
[49] John P. Huelsenbeck,et al. MRBAYES: Bayesian inference of phylogenetic trees , 2001, Bioinform..
[50] Y. Coppens,et al. First hominid from the Miocene (Lukeino Formation, Kenya) , 2001 .
[51] O Hammer-Muntz,et al. PAST: paleontological statistics software package for education and data analysis version 2.09 , 2001 .
[52] A. Keyser. The Drimolen skull: the most complete australopithecine cranium and mandible to date , 2000 .
[53] B. Latimer,et al. Australopithecus garhi: a new species of early hominid from Ethiopia. , 1999, Science.
[54] R. Potts. Environmental hypotheses of hominin evolution. , 1998, American journal of physical anthropology.
[55] T. White,et al. Mandibular postcanine dentition from the Shungura Formation, Ethiopia: crown morphology, taxonomic allocations, and Plio-Pleistocene hominid evolution. , 1996, American journal of physical anthropology.
[56] Y. Coppens,et al. Australopithecus bahrelghazali, une nouvelle espèce d'Hominidé ancien de la région de Koro Toro (Tchad) , 1996 .
[57] A. Walker,et al. New four-million-year-old hominid species from Kanapoi and Allia Bay, Kenya , 1995, Nature.
[58] D. Strait,et al. New hominid fossils from Member 1 "Hanging Remnant", Swartkrans Formation, South Africa , 1994 .
[59] F. Grine,et al. New mandible of Paranthropus robustus from Member 1, Swartkrans Formation, South Africa , 1993 .
[60] F. Grine. New hominid fossils from the Swartkrans formation (1979-1986 excavations): craniodental specimens. , 1989, American journal of physical anthropology.
[61] B. Wood,et al. Analysis of the dental morphology of Plio-Pleistocene hominids. V. Maxillary postcanine tooth morphology. , 1988, Journal of Anatomy.
[62] R. Leakey,et al. 2.5-Myr Australopithecus boisei from west of Lake Turkana, Kenya , 1986, Nature.
[63] J. Darroch,et al. Canonical and principal components of shape , 1985 .
[64] J. Felsenstein. CONFIDENCE LIMITS ON PHYLOGENIES: AN APPROACH USING THE BOOTSTRAP , 1985, Evolution; international journal of organic evolution.
[65] S. J. Arnold,et al. Morphology, Performance and Fitness , 1983 .
[66] C. K. Brain. The Hunters or the Hunted?: An Introduction to African Cave Taphonomy , 1983, Geological Magazine.
[67] Y. Rak. The Australopithecine face , 1983 .
[68] Kathryn Cruxz-Uribe. The hunters or the hunted? An introduction to african cave taphonomy: C. K. Brain. University of Chicago Press, Chicago. 1981. x + 365 pp. $35.00 , 1982 .
[69] T D White,et al. A systematic assessment of early African hominids. , 1979, Science.
[70] G. Simpson. The Dentition of the Australopithecinae . Transvaal Museum Memoir No. 9. J. T. Robinson. Transvaal Museum, Pretoria, 1956. 179 pp. Illus. , 1957, Science.
[71] J. Robinson. The dentition of the Australopithecinae , 1956 .
[72] J. Robinson. The genera and species of the Australopithecinae. , 1954, American journal of physical anthropology.
[73] R. Broom,et al. Swartkrans ape-man, Paranthropus crassidens , 1952 .
[74] R. Broom. Another New Type of Fossil Ape-man , 1949, Nature.
[75] J. Huxley,et al. Systematics and the Origin of Species from the Viewpoint of a Zoologist , 1943 .
[76] E. Mayr. Systematics and the Origin of Species from the Viewpoint of a Zoologist , 1943 .