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Tony Djubiantono

Dados Biográficos

ID3072352
NOMETony Djubiantono
PRENOMESTony
SOBRENOMEDjubiantono
ASSINATURADJUBIANTONO T
AFILIAÇÕESNational Brain Centre
VERIFICADONão
TOTAL DE OBRAS18
TOTAL DE CITAÇÕES421
TOTAL COMO AUTOR18
TOTAL COMO EDITOR0
PRIMEIRO ANO DE PUBLICAÇÃO1991
ANO MAIS RECENTE DE PUBLICAÇÃO2015
ÍNDICE H8
  • Position of the posterior skullcap fragment from Sendang Klampok (Sangiran Dome, Java, Indonesia) among the Javanese Homo erectus record

    Open Access•Dominique Grimaud-Hervé, Antoine Balzeau et al.•ARTICLE•Quaternary International•2015•Citada por: 2•Referências: 43

  • Pedo-sedimentary dynamics of the Sangiran dome hominid bearing layers (Early to Middle Pleistocene, central Java, Indonesia)

    Open Access•Boris Brasseur, François Sémah et al.•ARTICLE•Quaternary International•2014•Citada por: 6•Referências: 14

  • Preliminary U-series and Thermoluminescence dating of excavated deposits in Liang Bua sub-chamber, Flores, Indonesia

    Open Access•Emma J St Pierre, Kira Westaway et al.•ARTICLE•Journal of Archaeological Science•2012•Citada por: 6•Referências: 7

  • Prehistoric occupation at the rock shelter of Liang Abu, eastern Borneo

    Open Access•François‐xavier Ricaut, B Sugiyanto et al.•ARTICLE•Antiquity Project Gallery•2011

  • Approche paléopédologique de l’environnement des hominidés fossiles du dôme de Sangiran (Java central, Indonésie)

    Boris Brasseur, François Sémah et al.•ARTICLE•Quaternaire•2011•Referências: 10

    Les épaisses séries volcano-sédimentaires fossilifères à Java central (Indonésie) dans la région du dôme de Sangiran (unités de Kalibeng, Pucangan, Grenzbank, Kabuh et Notopuro) se sont mises en place durant tout le Quaternaire et représentent une succession d’environnements marins, côtiers puis terrestres. Les paléosols inclus dans ces séries permettent de décrire différentes facettes des paysages anciens qui se sont succédé lors des périodes de…

  • Craniofacial morphology of Homo floresiensis

    Open Access•Yousuke Kaifu, Hisao Baba et al.•ARTICLE•Journal of Human Evolution•2011•Citada por: 39•Referências: 102

  • Posterior deformational plagiocephaly properly explains the cranial asymmetries in LB1

    Open Access•Yousuke Kaifu, Tsuyoshi Kaneko et al.•ARTICLE•American Journal of Physical…•2010•Citada por: 5•Referências: 7

  • Landscapes and Hominids' environments

    Open Access•Anne-Marie Sémah, Anne‐marie Sémah et al.•ARTICLE•Quaternary International•2009•Citada por: 34•Referências: 6

  • Brief communication

    Open Access•Yousuke Kaifu, Hisao Baba et al.•ARTICLE•American Journal of Physical…•2009•Citada por: 10•Referências: 37

    If the holotype of Homo floresiensis , LB1, suffered from a severe developmental pathology, this could undermine its status as the holotype of a new species. One of the proposed pathological indicators that still remains untested is asymmetric distortion in the skull of LB1 (Jacob et al.: Proc Natl Acad Sci USA 103 (2006) 13421–13426). Here, we present evidence that LB1 exhibits antemortem craniofacial deformities that are consistent with posteri…

  • Descriptions of the upper limb skeleton of Homo floresiensis

    Open Access•G Larson, S G Larson et al.•ARTICLE•Journal of Human Evolution•2009•Citada por: 90•Referências: 35

  • Descriptions of the lower limb skeleton of Homo floresiensis

    Open Access•William L Jungers, G Larson et al.•ARTICLE•Journal of Human Evolution•2009•Citada por: 83•Referências: 50

  • The Primitive Wrist of Homo floresiensis and Its Implications for Hominin Evolution

    Open Access•M W Tocheri, C M Orr et al.•ARTICLE•Science•2007

    Whether the Late Pleistocene hominin fossils from Flores, Indonesia, represent a new species, Homo floresiensis, or pathological modern humans has been debated. Analysis of three wrist bones from the holotype specimen (LB1) shows that it retains wrist morphology that is primitive for the African ape-human clade. In contrast, Neandertals and modern humans share derived wrist morphology that forms during embryogenesis, which diminishes the probabil…

  • Phylogeny and ancient DNA of Sus provides insights into neolithic expansion in Island Southeast Asia and Oceania

    Open Access•Greger Larson, Thomas Cucchi et al.•ARTICLE•Proceedings of the National…•2007

    Human settlement of Oceania marked the culmination of a global colonization process that began when humans first left Africa at least 90,000 years ago. The precise origins and dispersal routes of the Austronesian peoples and the associated Lapita culture remain contentious, and numerous disparate models of dispersal (based primarily on linguistic, genetic, and archeological data) have been proposed. Here, through the use of mtDNA from 781 modern …

  • Homo floresiensis and the evolution of the hominin shoulder

    Open Access•G Larson, Susan G Larson et al.•ARTICLE•Journal of Human Evolution•2007•Citada por: 66•Referências: 63

  • The first hominid fossil recovered from West Java, Indonesia

    Open Access•Andrew Kramer, Andrew W Kramer et al.•ARTICLE•Journal of Human Evolution•2005•Citada por: 6•Referências: 3

  • Did Early Man reach Java during the Late Pliocene

    Open Access•François Sémah, Hassane Saleki et al.•ARTICLE•Journal of Archaeological Science•2000•Citada por: 62•Referências: 1

  • Did they also make stone tools

    Open Access•François Sémah, Anne‐marie Sémah et al.•ARTICLE•Journal of Human Evolution•1992•Citada por: 12•Referências: 2

  • [Years of Hominid Discovery in Java] Lower Pleistocene Marine-Continental Transitional Beds in the Solo Depression and Their Relation to the Environment of the Pucangan Hominids

    Open Access•Tony Djubiantono, François Sémah•ARTICLE•Bulletin of the Indo-Pacific…•1991

  • Descriptions of the upper limb skeleton of Homo floresiensis

    Open Access•G Larson, S G Larson et al.•ARTICLE•Journal of Human Evolution•2009•Citada por: 90•Referências: 35

  • Descriptions of the lower limb skeleton of Homo floresiensis

    Open Access•William L Jungers, G Larson et al.•ARTICLE•Journal of Human Evolution•2009•Citada por: 83•Referências: 50

  • Homo floresiensis and the evolution of the hominin shoulder

    Open Access•G Larson, Susan G Larson et al.•ARTICLE•Journal of Human Evolution•2007•Citada por: 66•Referências: 63

  • Did Early Man reach Java during the Late Pliocene

    Open Access•François Sémah, Hassane Saleki et al.•ARTICLE•Journal of Archaeological Science•2000•Citada por: 62•Referências: 1

  • Craniofacial morphology of Homo floresiensis

    Open Access•Yousuke Kaifu, Hisao Baba et al.•ARTICLE•Journal of Human Evolution•2011•Citada por: 39•Referências: 102

  • Landscapes and Hominids' environments

    Open Access•Anne-Marie Sémah, Anne‐marie Sémah et al.•ARTICLE•Quaternary International•2009•Citada por: 34•Referências: 6

  • Did they also make stone tools

    Open Access•François Sémah, Anne‐marie Sémah et al.•ARTICLE•Journal of Human Evolution•1992•Citada por: 12•Referências: 2

  • Brief communication

    Open Access•Yousuke Kaifu, Hisao Baba et al.•ARTICLE•American Journal of Physical…•2009•Citada por: 10•Referências: 37

    If the holotype of Homo floresiensis , LB1, suffered from a severe developmental pathology, this could undermine its status as the holotype of a new species. One of the proposed pathological indicators that still remains untested is asymmetric distortion in the skull of LB1 (Jacob et al.: Proc Natl Acad Sci USA 103 (2006) 13421–13426). Here, we present evidence that LB1 exhibits antemortem craniofacial deformities that are consistent with posteri…

  • Pedo-sedimentary dynamics of the Sangiran dome hominid bearing layers (Early to Middle Pleistocene, central Java, Indonesia)

    Open Access•Boris Brasseur, François Sémah et al.•ARTICLE•Quaternary International•2014•Citada por: 6•Referências: 14

  • Preliminary U-series and Thermoluminescence dating of excavated deposits in Liang Bua sub-chamber, Flores, Indonesia

    Open Access•Emma J St Pierre, Kira Westaway et al.•ARTICLE•Journal of Archaeological Science•2012•Citada por: 6•Referências: 7

  • The first hominid fossil recovered from West Java, Indonesia

    Open Access•Andrew Kramer, Andrew W Kramer et al.•ARTICLE•Journal of Human Evolution•2005•Citada por: 6•Referências: 3

  • Posterior deformational plagiocephaly properly explains the cranial asymmetries in LB1

    Open Access•Yousuke Kaifu, Tsuyoshi Kaneko et al.•ARTICLE•American Journal of Physical…•2010•Citada por: 5•Referências: 7

  • Position of the posterior skullcap fragment from Sendang Klampok (Sangiran Dome, Java, Indonesia) among the Javanese Homo erectus record

    Open Access•Dominique Grimaud-Hervé, Antoine Balzeau et al.•ARTICLE•Quaternary International•2015•Citada por: 2•Referências: 43

  • [Years of Hominid Discovery in Java] Lower Pleistocene Marine-Continental Transitional Beds in the Solo Depression and Their Relation to the Environment of the Pucangan Hominids

    Open Access•Tony Djubiantono, François Sémah•ARTICLE•Bulletin of the Indo-Pacific…•1991

  • Did they also make stone tools

    Open Access•François Sémah, Anne‐marie Sémah et al.•ARTICLE•Journal of Human Evolution•1992•Citada por: 12•Referências: 2

  • Did Early Man reach Java during the Late Pliocene

    Open Access•François Sémah, Hassane Saleki et al.•ARTICLE•Journal of Archaeological Science•2000•Citada por: 62•Referências: 1

  • The first hominid fossil recovered from West Java, Indonesia

    Open Access•Andrew Kramer, Andrew W Kramer et al.•ARTICLE•Journal of Human Evolution•2005•Citada por: 6•Referências: 3

  • The Primitive Wrist of Homo floresiensis and Its Implications for Hominin Evolution

    Open Access•M W Tocheri, C M Orr et al.•ARTICLE•Science•2007

    Whether the Late Pleistocene hominin fossils from Flores, Indonesia, represent a new species, Homo floresiensis, or pathological modern humans has been debated. Analysis of three wrist bones from the holotype specimen (LB1) shows that it retains wrist morphology that is primitive for the African ape-human clade. In contrast, Neandertals and modern humans share derived wrist morphology that forms during embryogenesis, which diminishes the probabil…

  • Phylogeny and ancient DNA of Sus provides insights into neolithic expansion in Island Southeast Asia and Oceania

    Open Access•Greger Larson, Thomas Cucchi et al.•ARTICLE•Proceedings of the National…•2007

    Human settlement of Oceania marked the culmination of a global colonization process that began when humans first left Africa at least 90,000 years ago. The precise origins and dispersal routes of the Austronesian peoples and the associated Lapita culture remain contentious, and numerous disparate models of dispersal (based primarily on linguistic, genetic, and archeological data) have been proposed. Here, through the use of mtDNA from 781 modern …

  • Homo floresiensis and the evolution of the hominin shoulder

    Open Access•G Larson, Susan G Larson et al.•ARTICLE•Journal of Human Evolution•2007•Citada por: 66•Referências: 63

  • Landscapes and Hominids' environments

    Open Access•Anne-Marie Sémah, Anne‐marie Sémah et al.•ARTICLE•Quaternary International•2009•Citada por: 34•Referências: 6

  • Brief communication

    Open Access•Yousuke Kaifu, Hisao Baba et al.•ARTICLE•American Journal of Physical…•2009•Citada por: 10•Referências: 37

    If the holotype of Homo floresiensis , LB1, suffered from a severe developmental pathology, this could undermine its status as the holotype of a new species. One of the proposed pathological indicators that still remains untested is asymmetric distortion in the skull of LB1 (Jacob et al.: Proc Natl Acad Sci USA 103 (2006) 13421–13426). Here, we present evidence that LB1 exhibits antemortem craniofacial deformities that are consistent with posteri…

  • Descriptions of the upper limb skeleton of Homo floresiensis

    Open Access•G Larson, S G Larson et al.•ARTICLE•Journal of Human Evolution•2009•Citada por: 90•Referências: 35

  • Descriptions of the lower limb skeleton of Homo floresiensis

    Open Access•William L Jungers, G Larson et al.•ARTICLE•Journal of Human Evolution•2009•Citada por: 83•Referências: 50

  • Posterior deformational plagiocephaly properly explains the cranial asymmetries in LB1

    Open Access•Yousuke Kaifu, Tsuyoshi Kaneko et al.•ARTICLE•American Journal of Physical…•2010•Citada por: 5•Referências: 7

  • Prehistoric occupation at the rock shelter of Liang Abu, eastern Borneo

    Open Access•François‐xavier Ricaut, B Sugiyanto et al.•ARTICLE•Antiquity Project Gallery•2011

  • Approche paléopédologique de l’environnement des hominidés fossiles du dôme de Sangiran (Java central, Indonésie)

    Boris Brasseur, François Sémah et al.•ARTICLE•Quaternaire•2011•Referências: 10

    Les épaisses séries volcano-sédimentaires fossilifères à Java central (Indonésie) dans la région du dôme de Sangiran (unités de Kalibeng, Pucangan, Grenzbank, Kabuh et Notopuro) se sont mises en place durant tout le Quaternaire et représentent une succession d’environnements marins, côtiers puis terrestres. Les paléosols inclus dans ces séries permettent de décrire différentes facettes des paysages anciens qui se sont succédé lors des périodes de…

  • Craniofacial morphology of Homo floresiensis

    Open Access•Yousuke Kaifu, Hisao Baba et al.•ARTICLE•Journal of Human Evolution•2011•Citada por: 39•Referências: 102

  • Preliminary U-series and Thermoluminescence dating of excavated deposits in Liang Bua sub-chamber, Flores, Indonesia

    Open Access•Emma J St Pierre, Kira Westaway et al.•ARTICLE•Journal of Archaeological Science•2012•Citada por: 6•Referências: 7

  • Pedo-sedimentary dynamics of the Sangiran dome hominid bearing layers (Early to Middle Pleistocene, central Java, Indonesia)

    Open Access•Boris Brasseur, François Sémah et al.•ARTICLE•Quaternary International•2014•Citada por: 6•Referências: 14

  • Position of the posterior skullcap fragment from Sendang Klampok (Sangiran Dome, Java, Indonesia) among the Javanese Homo erectus record

    Open Access•Dominique Grimaud-Hervé, Antoine Balzeau et al.•ARTICLE•Quaternary International•2015•Citada por: 2•Referências: 43

Geography (13 obras) · Pleistocene-Era Hominins and Archaeology (13 obras) · Geology (11 obras) · Paleontology (11 obras) · Archaeology (9 obras) · Biology (8 obras) · Evolution and Paleontology Studies (8 obras) · Forensic Anthropology and Bioarchaeology Studies (7 obras) · Homo erectus (6 obras) · Paleontology (6 obras)

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