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Reference
- Ar. kadabba: WoldeGabriel, G. (2001). Geology and palaeontology of the Late Miocene Middle Awash valley, Afar rift, Ethiopia, Nature, 412, 175–178 DOI: 10.1038/35084058.
- Ar. ramidus: (2005). Early Pliocene hominids from Gona, Ethiopia, Nature, 433(7023), 301–305 DOI: 10.1038/nature03177; PMID 15662421.
- Au. anamensis/afarensis/deyiremeda: Haile-Selassie, Y. (2019). A 3.8-million-year-old hominin cranium from Woranso-Mille, Ethiopia, Nature, 573, 214–219 DOI: 10.1038/s41586-019-1513-8.
- Au. africanus lower, P. robustus upper, 'H. ergaster upper: Herries, A. I. R. (2020). Contemporaneity of Australopithecus, Paranthropus, and early Homo erectus in South Africa, Science, 368(6486) DOI: 10.1126/science.aaw7293.
- Au. africanus upper: Clarke, R. J. (2019). The skull of StW 573, a 3.67 Ma Australopithecus prometheus skeleton from Sterkfontein Caves, South Africa, Journal of Human Evolution, 134 DOI: 10.1016/j.jhevol.2019.06.005.
- P. robustus lower: Herries, A. I. R. (2009). A multi-disciplinary seriation of early Homo and Paranthropus bearing palaeocaves in southern Africa, Quaternary International, 202(1–2), 14–28 DOI: 10.1016/j.quaint.2008.05.017.
- H. ergaster lower: • Nepoznat parametar:
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• ParametarCitationClassnije dopušten u klasibook
• Parametarpagenije dopušten u klasibook - Au. bahrelghazali: (1995). The first australopithecine 2,500 kilometres west of the Rift Valley (Chad), Nature, 378(6554), 273–275 DOI: 10.1038/378273a0; PMID 7477344.
- Kenyanthropus platyops: (2001). New hominin genus from eastern Africa shows diverse middle Pliocene lineages, Nature, 410, 433–440 DOI: 10.1038/35068500; PMID 11260704.
- LD 350-1: Villmoare, B. (2015). Early Homo at 2.8 Ma from Ledi-Geraru, Afar, Ethiopia, Science, 347(6228), 1352–1355 DOI: 10.1126/science.aaa1343.
- P. aethiopicus/boisei: (2007). Paranthropus boisei: Fifty years of evidence and analysis, American Journal of Physical Anthropology, 134(Suppl 45) DOI: 10.1002/ajpa.20732; PMID 18046746.
- Au. garhi: (1999). Australopithecus garhi: a new species of early hominid from Ethiopia, Science, 284(5414), 629–635 DOI: 10.1126/science.284.5414.629; PMID 10213683.
- H. habilis: F. Spoor; P. Gunz; S. Neubauer; S. Stelzer; N. Scott; A. Kwekason; M. C. Dean (2015). Reconstructed Homo habilis type OH 7 suggests deep-rooted species diversity in early Homo', Nature, 519(7541), 83–86 DOI: 10.1038/nature14224; PMID 25739632.
- H. rudolfensis: Ungar, P. S. (2006). Diet in Early Homo: A Review of the Evidence and a New Model of Adaptive Versatility, Annual Review of Anthropology, 35 DOI: 10.1146/annurev.anthro.35.081705.123153.
- Au. sediba: Pickering, R. (2011). 'Australopithecus sediba at 1.977 Ma and Implications for the Origins of the Genus Homo', Science, 333(6048), 1421–1423 DOI: 10.1126/science.1203697.
- H. rhodesiensis upper: Clark, J. D. (1994). African Homo erectus: old radiometric ages and young Oldowan assemblages in the Middle Awash Valley, Ethiopia, Science, 264(5167), 1907–1910 DOI: 10.1126/science.8009220.
- H. rhodesiensis lower: Grün, R. (2020). Dating the skull from Broken Hill, Zambia, and its position in human evolution, Nature, 580, 372–375 DOI: 10.1038/s41586-020-2165-4.
- H. naledi: (2017). The age of Homo naledi and associated sediments in the Rising Star Cave, South Africa, eLife, 6, e24231 DOI: 10.7554/eLife.24231; PMID 28483040.
- H. sapiens: Richter, D. (2017). The age of the hominin fossils from Jebel Irhoud, Morocco, and the origins of the Middle Stone Age, Nature, 546(7657), 293–296 DOI: 10.1038/nature22335; PMID 28593967.