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Susan C Antón

Biographic Data

ID89699
NAMESusan C Antón
GIVEN NAMESSusan C
FAMILY NAMEAntón
SIGNATUREANTÓN S C
AFFILIATIONSNew York University
VERIFIEDNo
TOTAL WORKS36
TOTAL CITATIONS570
AUTHOR COUNT36
EDITOR COUNT0
FIRST PUBLICATION YEAR1989
LATEST PUBLICATION YEAR2023
H-INDEX12
  • Making meaning from fragmentary fossils

    Open Access•Susan Antón, Susan C Antón et al.•ARTICLE•Journal of Human Evolution•2023•Cited by: 12•References: 288

  • JHE 50th anniversary

    Open Access•Susan Antón, Susan C Antón•ARTICLE•Journal of Human Evolution•2022•Cited by: 1•References: 11

  • Dmanisi Hominins and Archaeology

    Open Access•H Pontzer, Susan Antón et al.•CHAPTER•Encyclopedia of Global Archaeology•2020

  • Homo erectus

    Open Access•Emily R Middleton, Susan Antón et al.•CHAPTER•Encyclopedia of Global Archaeology•2020

  • Homo ergaster

    Open Access•Susan Antón, Susan C Antón et al.•CHAPTER•Encyclopedia of Global Archaeology•2020

  • Increasing Diversity in Evolutionary Anthropological Sciences-the Ideas Program

    Open Access•Ripan S Malhi, Susan Antón et al.•ARTICLE•American Anthropologist•2019•Cited by: 3•References: 6

  • Race and diversity in U.S. Biological Anthropology

    Open Access•Susan Antón, Susan C Antón et al.•ARTICLE•American Journal of Physical…•2018•Cited by: 32•References: 12

    Biological Anthropology studies the variation and evolution of living humans, non‐human primates, and extinct ancestors and for this reason the field should be in an ideal position to attract scientists from a variety of backgrounds who have different views and experiences. However, the origin and history of the discipline, anecdotal observations, self‐reports, and recent surveys suggest the field has significant barriers to attracting scholars o…

  • The Many Faces of Early Homo

    Open Access•Susan Antón, Susan C Antón•ARTICLE•General Anthropology•2018•Cited by: 1•References: 7

  • Evolution of early Homo

    Open Access•Susan Antón, Susan C Antón et al.•ARTICLE•Science•2014

    Background Until recently, the evolution of the genus Homo has been interpreted in the context of the onset of African aridity and the expansion of open grasslands. Homo erectus was considered to be a bona fide member of the genus Homo , but opinions diverged on the generic status of earlier, more fragmentary fossils traditionally attributed to Homo habilis and Homo rudolfensis . Arguments about generic status of these taxa rested on inferred sim…

  • New fossils from Koobi Fora in northern Kenya confirm taxonomic diversity in early Homo

    Open Access•Meave G Leakey, Fred Spoor et al.•ARTICLE•Nature•2012

  • EarlyHomo

    Susan Antón, Susan C Antón•ARTICLE•Current Anthropology•2012•Cited by: 53•References: 116

    The origin of Homo is argued to entail niche differentiation resulting from increasing terrestriality and dietary breadth relative to the better known species of Australopithecus (A. afarensis, A. anamensis, A. africanus). I review the fossil evidence from ∼2.5 to 1.5 Ma in light of new finds and analyses that challenge previous inferences. Minimally, three cranial morphs of early Homo (including Homo erectus) exist in eastern Africa (1.9-1.4 Ma)…

  • Human Biology and the Origins ofHomo

    Leslie C Aiello, Susan Antón et al.•ARTICLE•Current Anthropology•2012•Cited by: 16•References: 65

    New fossil discoveries relevant to the origin of Homo have overturned conventional wisdom about the nature of the australopiths and early Homo, and particularly Homo erectus (including Homo ergaster). They have eroded prior assumptions about the differences between these genera and complicated interpretations for the origin and evolution of Homo. This special issue surveys what is now known about the fossil evidence and the environmental context …

  • Origins and Evolution of GenusHomo

    Susan Antón, Susan C Antón et al.•ARTICLE•Current Anthropology•2012•Cited by: 65•References: 107

    Recent fossil and archaeological finds have complicated our interpretation of the origin and early evolution of genus Homo. Using an integrated data set from the fossil record and contemporary human and nonhuman primate biology, we provide a fresh perspective on three important shifts in human evolutionary history: (1) the emergence of Homo, (2) the transition between non-erectus early Homo and Homo erectus, and (3) the appearance of regional var…

  • Modern human origins

    Open Access•Susan Antón, Susan C Antón et al.•ARTICLE•Journal of Human Evolution•2011•Cited by: 9

  • The calvaria of Sangiran 38, Sendangbusik, Sangiran Dome, Java

    Open Access•Etty Indriati, Susan Antón et al.•ARTICLE•HOMO•2010•Cited by: 18•References: 32

  • Framing the Question

    Susan Antón, Susan C Antón•CHAPTER•Primate Craniofacial Function and…•2008

  • Earliest Indonesian facial and dental remains from Sangiran, Java

    Open Access•Etty Indriati, Susan Antón et al.•ARTICLE•Anthropological Science•2008•Cited by: 24•References: 19

    Sangiran 27 represents the only facial skeleton of Homo erectus so far known, and is thought to have derived from the earliest Pleistocene sediments of the Sangiran Formation, Java. We here describe in detail this cranial specimen, and provide comparisons with broadly contemporaneous fossils of western Asia and Africa. Sangiran 27 is a highly mineralized partial cranium with a well-preserved postcanine maxillary dentition, and includes portions o…

  • Defining Homo erectus

    Susan Antón, Susan C Antón et al.•CHAPTER•Handbook of paleoanthropology•2007

  • The face of Olduvai Hominid 12

    Open Access•Susan Antón, Susan C Antón•ARTICLE•Journal of Human Evolution•2004•Cited by: 15•References: 20

  • Early Dispersals of Homo from Africa

    Susan Antón, Susan C Antón et al.•ARTICLE•Annual Review of Anthropology•2004•Cited by: 141•References: 70

    The worldwide distribution of our species, Homo sapiens, has its roots in the early Pleistocene epoch. However, evidence has been sufficient only in the past decade to overcome the conventional wisdom that hominins had been restricted to Africa until about 800,000 years ago. Indeed, the idea that hominin dispersal was technologically mediated, and thus must correlate with changes in stone tool technology seen at the Olduwan/Acheulean transition, …

  • Sambungmacan 3 and cranial variation in Asian Homo erectus

    Open Access•Susan Antón, Susan C Antón et al.•ARTICLE•Journal of Human Evolution•2002

  • Evolutionary significance of cranial variation in Asian Homo erectus

    Open Access•Susan Antón, Susan C Antón•ARTICLE•American Journal of Physical…•2002•Cited by: 56•References: 50

    Homo erectus inhabited a wide geographic area of Asia, ranging from 40° north latitude in China to 8° south latitude in island Southeast Asia. Yet variation within Asian H. erectus and its relation to ecological and temporal parameters have been little studied. I synthesize the revised radiometric chronologies for hominid sites in Asia and their relation to new oxygen isotope curves (proxies for climatic fluctuations and landbridge connections). …

  • Dmanisi and dispersal

    Open Access•Leo Gabunia, Susan Antón et al.•ARTICLE•Evolutionary Anthropology Issues…•2001

  • Prehistoric radio‐ulnar synostosis

    Open Access•Susan Antón, Susan C Antón et al.•ARTICLE•International Journal of…•2000

    Proximal radio-ulnar synostosis (RUS) may occur congenitally, either as an isolated condition or as part of a syndrome, or it may occur as a secondary complication of forearm trauma. We provide a key for the differential diagnosis of congenital versus traumatic RUS, and for differentiation between types of congenital RUS. Congenital cases (CRUS) include absence of fracture, radial head abnormalities, radial shaft bowing, and absence of a sigmoid …

  • Macaque Pterygoid Muscles

    Open Access•Susan Antón, Susan C Antón•ARTICLE•International Journal of…•2000•Cited by: 11•References: 39

Next
  • Early Dispersals of Homo from Africa

    Susan Antón, Susan C Antón et al.•ARTICLE•Annual Review of Anthropology•2004•Cited by: 141•References: 70

    The worldwide distribution of our species, Homo sapiens, has its roots in the early Pleistocene epoch. However, evidence has been sufficient only in the past decade to overcome the conventional wisdom that hominins had been restricted to Africa until about 800,000 years ago. Indeed, the idea that hominin dispersal was technologically mediated, and thus must correlate with changes in stone tool technology seen at the Olduwan/Acheulean transition, …

  • Origins and Evolution of GenusHomo

    Susan Antón, Susan C Antón et al.•ARTICLE•Current Anthropology•2012•Cited by: 65•References: 107

    Recent fossil and archaeological finds have complicated our interpretation of the origin and early evolution of genus Homo. Using an integrated data set from the fossil record and contemporary human and nonhuman primate biology, we provide a fresh perspective on three important shifts in human evolutionary history: (1) the emergence of Homo, (2) the transition between non-erectus early Homo and Homo erectus, and (3) the appearance of regional var…

  • Evolutionary significance of cranial variation in Asian Homo erectus

    Open Access•Susan Antón, Susan C Antón•ARTICLE•American Journal of Physical…•2002•Cited by: 56•References: 50

    Homo erectus inhabited a wide geographic area of Asia, ranging from 40° north latitude in China to 8° south latitude in island Southeast Asia. Yet variation within Asian H. erectus and its relation to ecological and temporal parameters have been little studied. I synthesize the revised radiometric chronologies for hominid sites in Asia and their relation to new oxygen isotope curves (proxies for climatic fluctuations and landbridge connections). …

  • Intentional cranial vault deformation and induced changes of the cranial base and face

    Open Access•Susan Antón, Susan C Antón•ARTICLE•American Journal of Physical…•1989•Cited by: 54•References: 34

    Three morphologically distinct populations of Peruvian crania (n = 130) were metrically analysed to quantify changes resulting from intentional artificial vault deformation. Two of these samples are artificially deformed (anteroposterior [AP] and circumferential [C] types). Measurements taken from lateral radiographs demonstrated that alternative forms of the cranial base angle (N‐S‐Ba, planum angle, planum sphenoidale to plane of the clivus and …

  • EarlyHomo

    Susan Antón, Susan C Antón•ARTICLE•Current Anthropology•2012•Cited by: 53•References: 116

    The origin of Homo is argued to entail niche differentiation resulting from increasing terrestriality and dietary breadth relative to the better known species of Australopithecus (A. afarensis, A. anamensis, A. africanus). I review the fossil evidence from ∼2.5 to 1.5 Ma in light of new finds and analyses that challenge previous inferences. Minimally, three cranial morphs of early Homo (including Homo erectus) exist in eastern Africa (1.9-1.4 Ma)…

  • Artificial cranial deformation and fossil Australians revisited

    Open Access•Susan Antón, Susan C Antón et al.•ARTICLE•Journal of Human Evolution•1999•Cited by: 35

  • Race and diversity in U.S. Biological Anthropology

    Open Access•Susan Antón, Susan C Antón et al.•ARTICLE•American Journal of Physical…•2018•Cited by: 32•References: 12

    Biological Anthropology studies the variation and evolution of living humans, non‐human primates, and extinct ancestors and for this reason the field should be in an ideal position to attract scientists from a variety of backgrounds who have different views and experiences. However, the origin and history of the discipline, anecdotal observations, self‐reports, and recent surveys suggest the field has significant barriers to attracting scholars o…

  • Earliest Indonesian facial and dental remains from Sangiran, Java

    Open Access•Etty Indriati, Susan Antón et al.•ARTICLE•Anthropological Science•2008•Cited by: 24•References: 19

    Sangiran 27 represents the only facial skeleton of Homo erectus so far known, and is thought to have derived from the earliest Pleistocene sediments of the Sangiran Formation, Java. We here describe in detail this cranial specimen, and provide comparisons with broadly contemporaneous fossils of western Asia and Africa. Sangiran 27 is a highly mineralized partial cranium with a well-preserved postcanine maxillary dentition, and includes portions o…

  • The calvaria of Sangiran 38, Sendangbusik, Sangiran Dome, Java

    Open Access•Etty Indriati, Susan Antón et al.•ARTICLE•HOMO•2010•Cited by: 18•References: 32

  • Human Biology and the Origins ofHomo

    Leslie C Aiello, Susan Antón et al.•ARTICLE•Current Anthropology•2012•Cited by: 16•References: 65

    New fossil discoveries relevant to the origin of Homo have overturned conventional wisdom about the nature of the australopiths and early Homo, and particularly Homo erectus (including Homo ergaster). They have eroded prior assumptions about the differences between these genera and complicated interpretations for the origin and evolution of Homo. This special issue surveys what is now known about the fossil evidence and the environmental context …

  • The face of Olduvai Hominid 12

    Open Access•Susan Antón, Susan C Antón•ARTICLE•Journal of Human Evolution•2004•Cited by: 15•References: 20

  • Tendon-associated bone features of the masticatory system in Neandertals

    Open Access•Susan Antón, Susan C Antón•ARTICLE•Journal of Human Evolution•1996•Cited by: 13

  • Making meaning from fragmentary fossils

    Open Access•Susan Antón, Susan C Antón et al.•ARTICLE•Journal of Human Evolution•2023•Cited by: 12•References: 288

  • Macaque Pterygoid Muscles

    Open Access•Susan Antón, Susan C Antón•ARTICLE•International Journal of…•2000•Cited by: 11•References: 39

  • Modern human origins

    Open Access•Susan Antón, Susan C Antón et al.•ARTICLE•Journal of Human Evolution•2011•Cited by: 9

  • The occipital torus and developmental age of Sangiran-3

    Open Access•Susan Antón, Susan C Antón et al.•ARTICLE•Journal of Human Evolution•1997•Cited by: 7•References: 9

  • Ana Manuku

    Open Access•David W Steadman, Susan Antón et al.•ARTICLE•Antiquity•2000•Cited by: 4•References: 10

    A deposit of dismembered and cooked human remains from Ana Manuku in the Cook Islands, Polynesia, provides evidence for ritual practices c. AD 1390-1470

  • Increasing Diversity in Evolutionary Anthropological Sciences-the Ideas Program

    Open Access•Ripan S Malhi, Susan Antón et al.•ARTICLE•American Anthropologist•2019•Cited by: 3•References: 6

  • JHE 50th anniversary

    Open Access•Susan Antón, Susan C Antón•ARTICLE•Journal of Human Evolution•2022•Cited by: 1•References: 11

  • The Many Faces of Early Homo

    Open Access•Susan Antón, Susan C Antón•ARTICLE•General Anthropology•2018•Cited by: 1•References: 7

  • Intentional cranial vault deformation and induced changes of the cranial base and face

    Open Access•Susan Antón, Susan C Antón•ARTICLE•American Journal of Physical…•1989•Cited by: 54•References: 34

    Three morphologically distinct populations of Peruvian crania (n = 130) were metrically analysed to quantify changes resulting from intentional artificial vault deformation. Two of these samples are artificially deformed (anteroposterior [AP] and circumferential [C] types). Measurements taken from lateral radiographs demonstrated that alternative forms of the cranial base angle (N‐S‐Ba, planum angle, planum sphenoidale to plane of the clivus and …

  • Tendon-associated bone features of the masticatory system in Neandertals

    Open Access•Susan Antón, Susan C Antón•ARTICLE•Journal of Human Evolution•1996•Cited by: 13

  • Endocranial hyperostosis in Sangiran 2, Gibraltar 1, and Shanidar 5

    Open Access•Susan Antón, Susan C Antón•ARTICLE•American Journal of Physical…•1997

    Sangiran hominid 2 (S-2), Gibraltar hominid 1 (G-1), and Shanidar hominid 5 (SH-5) exhibit previously undescribed bilateral, paramedian hyperostosis of the endocranial frontal squama that spares the frontal crest, sagittal sinus, and ectocranial surface. The hyperostosis is localized to the frontal (usually the middle third) and parietal and is consistent with a diagnosis of hyperostosis calvariae interna (HCI), inclusive of hyperostosis frontali…

  • Endocranial hyperostosis in Sangiran 2, Gibraltar 1, and Shanidar 5

    Open Access•Susan Antón, Susan C Antón•ARTICLE•American Journal of Physical…•1997

    Sangiran hominid 2 (S-2), Gibraltar hominid 1 (G-1), and Shanidar hominid 5 (SH-5) exhibit previously undescribed bilateral, paramedian hyperostosis of the endocranial frontal squama that spares the frontal crest, sagittal sinus, and ectocranial surface. The hyperostosis is localized to the frontal (usually the middle third) and parietal and is consistent with a diagnosis of hyperostosis calvaria interna (HCI), inclusive of hyperostosis frontalis…

  • The occipital torus and developmental age of Sangiran-3

    Open Access•Susan Antón, Susan C Antón et al.•ARTICLE•Journal of Human Evolution•1997•Cited by: 7•References: 9

  • Developmental age and taxonomic affinity of the Mojokerto child, Java, Indonesia

    Open Access•Susan Antón, Susan C Antón•ARTICLE•American Journal of Physical…•1997•References: 47

    An increasing number of claims place hominids outside Africa and deep in Southeast Asia at about the same time that Homo erectus first appears in Africa. The most complete of the early specimens is the partial child's calvaria from Mojokerto (Perning I), Java, Indonesia. Discovered in 1936, the child has been assigned to Australopithecus and multiple species of Homo, including H. modjokertensis, and given developmental ages ranging from 1-8 years…

  • Bicoronal synostosis in a child from historic Omaha Cemetery 25DK10

    Open Access•Scott C Pedersen, Susan Antón et al.•ARTICLE•American Journal of Physical…•1998

    Fragmentary cranial remains of a child from a commingled burial in a historic Omaha Cemetery (AD 1780-1800) exhibit bony fusion between the frontal, parietals, and sphenoid. The child's remains are consistent with a developmental age between newborn and 6 months postnatal. Radiological and morphological analyses confirm that this individual exhibits osteological signs pathognomic of bicoronal sutural synostosis, including deformation of the later…

  • Bicoronal synostosis in a child from historic Omaha Cemetery 25DK10

    Open Access•Scott C Pedersen, Susan Antón et al.•ARTICLE•American Journal of Physical…•1998

    Fragmentary cranial remains of a child from a commingled burial in a historic Omaha Cemetery (AD 1780–1800) exhibit bony fusion between the frontal, parietals, and sphenoid. The child's remains are consistent with a developmental age between newborn and 6 months postnatal. Radiological and morphological analyses confirm that this individual exhibits osteological signs pathognomic of bicoronal sutural synostosis, including deformation of the later…

  • Cranial growth in Homo erectus

    Open Access•Susan Antón, Susan C Antón•ARTICLE•American Journal of Physical…•1999

  • Artificial cranial deformation and fossil Australians revisited

    Open Access•Susan Antón, Susan C Antón et al.•ARTICLE•Journal of Human Evolution•1999•Cited by: 35

  • Prehistoric radio‐ulnar synostosis

    Open Access•Susan Antón, Susan C Antón et al.•ARTICLE•International Journal of…•2000

    Proximal radio-ulnar synostosis (RUS) may occur congenitally, either as an isolated condition or as part of a syndrome, or it may occur as a secondary complication of forearm trauma. We provide a key for the differential diagnosis of congenital versus traumatic RUS, and for differentiation between types of congenital RUS. Congenital cases (CRUS) include absence of fracture, radial head abnormalities, radial shaft bowing, and absence of a sigmoid …

  • Macaque Pterygoid Muscles

    Open Access•Susan Antón, Susan C Antón•ARTICLE•International Journal of…•2000•Cited by: 11•References: 39

  • Ana Manuku

    Open Access•David W Steadman, Susan Antón et al.•ARTICLE•Antiquity•2000•Cited by: 4•References: 10

    A deposit of dismembered and cooked human remains from Ana Manuku in the Cook Islands, Polynesia, provides evidence for ritual practices c. AD 1390-1470

  • Dmanisi and dispersal

    Open Access•Leo Gabunia, Susan Antón et al.•ARTICLE•Evolutionary Anthropology Issues…•2001

  • Sambungmacan 3 and cranial variation in Asian Homo erectus

    Open Access•Susan Antón, Susan C Antón et al.•ARTICLE•Journal of Human Evolution•2002

  • Evolutionary significance of cranial variation in Asian Homo erectus

    Open Access•Susan Antón, Susan C Antón•ARTICLE•American Journal of Physical…•2002•Cited by: 56•References: 50

    Homo erectus inhabited a wide geographic area of Asia, ranging from 40° north latitude in China to 8° south latitude in island Southeast Asia. Yet variation within Asian H. erectus and its relation to ecological and temporal parameters have been little studied. I synthesize the revised radiometric chronologies for hominid sites in Asia and their relation to new oxygen isotope curves (proxies for climatic fluctuations and landbridge connections). …

  • The face of Olduvai Hominid 12

    Open Access•Susan Antón, Susan C Antón•ARTICLE•Journal of Human Evolution•2004•Cited by: 15•References: 20

  • Early Dispersals of Homo from Africa

    Susan Antón, Susan C Antón et al.•ARTICLE•Annual Review of Anthropology•2004•Cited by: 141•References: 70

    The worldwide distribution of our species, Homo sapiens, has its roots in the early Pleistocene epoch. However, evidence has been sufficient only in the past decade to overcome the conventional wisdom that hominins had been restricted to Africa until about 800,000 years ago. Indeed, the idea that hominin dispersal was technologically mediated, and thus must correlate with changes in stone tool technology seen at the Olduwan/Acheulean transition, …

  • Defining Homo erectus

    Susan Antón, Susan C Antón et al.•CHAPTER•Handbook of paleoanthropology•2007

  • Framing the Question

    Susan Antón, Susan C Antón•CHAPTER•Primate Craniofacial Function and…•2008

  • Earliest Indonesian facial and dental remains from Sangiran, Java

    Open Access•Etty Indriati, Susan Antón et al.•ARTICLE•Anthropological Science•2008•Cited by: 24•References: 19

    Sangiran 27 represents the only facial skeleton of Homo erectus so far known, and is thought to have derived from the earliest Pleistocene sediments of the Sangiran Formation, Java. We here describe in detail this cranial specimen, and provide comparisons with broadly contemporaneous fossils of western Asia and Africa. Sangiran 27 is a highly mineralized partial cranium with a well-preserved postcanine maxillary dentition, and includes portions o…

  • The calvaria of Sangiran 38, Sendangbusik, Sangiran Dome, Java

    Open Access•Etty Indriati, Susan Antón et al.•ARTICLE•HOMO•2010•Cited by: 18•References: 32

  • Modern human origins

    Open Access•Susan Antón, Susan C Antón et al.•ARTICLE•Journal of Human Evolution•2011•Cited by: 9

  • New fossils from Koobi Fora in northern Kenya confirm taxonomic diversity in early Homo

    Open Access•Meave G Leakey, Fred Spoor et al.•ARTICLE•Nature•2012

  • EarlyHomo

    Susan Antón, Susan C Antón•ARTICLE•Current Anthropology•2012•Cited by: 53•References: 116

    The origin of Homo is argued to entail niche differentiation resulting from increasing terrestriality and dietary breadth relative to the better known species of Australopithecus (A. afarensis, A. anamensis, A. africanus). I review the fossil evidence from ∼2.5 to 1.5 Ma in light of new finds and analyses that challenge previous inferences. Minimally, three cranial morphs of early Homo (including Homo erectus) exist in eastern Africa (1.9-1.4 Ma)…

Pleistocene-Era Hominins and Archaeology (25 works) · Biology (22 works) · Geography (19 works) · Homo erectus (18 works) · Evolutionary biology (17 works) · Archaeology (15 works) · Forensic Anthropology and Bioarchaeology Studies (14 works) · Paleontology (14 works) · Paleontology (13 works) · Evolution and Paleontology Studies (12 works)

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