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Marc R Meyer

Datos Biográficos

ID3072491
NOMBREMarc R Meyer
NOMBRESMarc R
APELLIDOMeyer
FIRMAMEYER M R
AFILIACIONESChaffey College
ORCID0000-0002-3938-0173
VERIFICADOSí
TOTAL DE OBRAS16
TOTAL DE CITAS79
TOTAL COMO AUTOR16
TOTAL COMO EDITOR0
PRIMER AÑO DE PUBLICACIÓN2015
AÑO MÁS RECIENTE DE PUBLICACIÓN2025
ÍNDICE H5
  • Re-evaluating Omo 105-7, a provisional hominin last lumbar vertebra from the Lower Omo Basin (Plio-Pleistocene) of Ethiopia

    Open Access•Xue Wang, Marc R Meyer et al.•ARTICLE•Journal of Human Evolution•2025•Referencias: 19

  • Knuckle-walking in Sahelanthropus? Locomotor inferences from the ulnae of fossil hominins and other hominoids

    Open Access•Marc R Meyer, Jason P Jung et al.•ARTICLE•Journal of Human Evolution•2023•Citada por: 4•Referencias: 193

    Because the ulna supports and transmits forces during movement, its morphology can signal aspects of functional adaptation. To test whether, like extant apes, some hominins habitually recruit the forelimb in locomotion, we separate the ulna shaft and ulna proximal complex for independent shape analyses via elliptical Fourier methods to identify functional signals. We examine the relative influence of locomotion, taxonomy, and body mass on ulna co…

  • The Multi-Period Settlement Dali in Southeastern Kazakhstan

    T R Hermes, Paula N Doumani Dupuy et al.•ARTICLE•Asian perspectives•2021

    Archaeological excavations at the Dali site complex located in southeastern Kazakhstan provide a rich picture of Bronze Age life spanning from the early third to late second millennia b.c. Nearly ten years of research at the site have produced an abundant assemblage of architectural remains, ritual and burial contexts, human and animal ancient DNA, and evidence for related economic practices and other material forms (ceramics, metallurgy). A syst…

  • Is ulna curvature in the StW 573 ('Little Foot') Australopithecus natural or pathological

    Open Access•Isabella Araiza, Marc R Meyer et al.•ARTICLE•Journal of Human Evolution•2021•Citada por: 2•Referencias: 41

  • The Spine of Early Pleistocene Homo

    Open Access•Marc R Meyer, A Williams et al.•CHAPTER•Spinal Evolution•2019

  • The Spine of Australopithecus

    Open Access•A Williams, Scott A Williams et al.•CHAPTER•Spinal Evolution•2019

  • Earliest axial fossils from the genus Australopithecus

    Open Access•Marc R Meyer, A Williams et al.•ARTICLE•Journal of Human Evolution•2019•Citada por: 3•Referencias: 102

  • Neck function in early hominins and suspensory primates

    Open Access•Marc R Meyer, Charles Woodward et al.•ARTICLE•American Journal of Physical…•2018•Citada por: 6•Referencias: 147

    OBJECTIVES: Uncinate processes are protuberances on the cranial surface of subaxial cervical vertebrae that assist in stabilizing and guiding spinal motion. Shallow uncinate processes reduce cervical stability but confer an increased range of motion in clinical studies. Here we assess uncinate processes among extant primates and model cervical kinematics in early fossil hominins. MATERIALS AND METHODS: We compare six fossil hominin vertebrae with…

  • New fossil remains of Homo naledi from the Lesedi Chamber, South Africa

    Open Access•John Hawks, M Elliott et al.•ARTICLE•eLife•2017

    The Rising Star cave system has produced abundant fossil hominin remains within the Dinaledi Chamber, representing a minimum of 15 individuals attributed to Homo naledi. Further exploration led to the discovery of hominin material, now comprising 131 hominin specimens, within a second chamber, the Lesedi Chamber. The Lesedi Chamber is far separated from the Dinaledi Chamber within the Rising Star cave system, and represents a second depositional …

  • The vertebrae and ribs of Homo naledi

    Open Access•A Williams, Scott A Williams et al.•ARTICLE•Journal of Human Evolution•2017•Citada por: 27•Referencias: 65

  • The cervical spine of Australopithecus sediba

    Open Access•Marc R Meyer, A Williams et al.•ARTICLE•Journal of Human Evolution•2017•Citada por: 14•Referencias: 90

  • Conclusion

    Open Access•Yohannes Haile-Selassie, Bruce Latimer et al.•CHAPTER•Postcranial Anatomy of…•2016

  • The Cervical Vertebrae of KSD-VP-1/1

    Open Access•Marc R Meyer•CHAPTER•Postcranial Anatomy of…•2016

  • Lucy's back

    Open Access•Marc R Meyer, A Williams et al.•ARTICLE•Journal of Human Evolution•2015•Citada por: 13•Referencias: 24

  • Spinal cord evolution in early Homo

    Open Access•Marc R Meyer, Martin Haeusler•ARTICLE•Journal of Human Evolution•2015•Citada por: 9•Referencias: 68

  • Author response

    L R Berger, John Hawks et al.•Citada por: 1

    Article Figures and data Abstract eLife digest Introduction Differential diagnosis Description Discussion Materials and methods References Decision letter Author response Article and author information Metrics Abstract Homo naledi is a previously-unknown species of extinct hominin discovered within the Dinaledi Chamber of the Rising Star cave system, Cradle of Humankind, South Africa. This species is characterized by body mass and stature similar…

  • The vertebrae and ribs of Homo naledi

    Open Access•A Williams, Scott A Williams et al.•ARTICLE•Journal of Human Evolution•2017•Citada por: 27•Referencias: 65

  • The cervical spine of Australopithecus sediba

    Open Access•Marc R Meyer, A Williams et al.•ARTICLE•Journal of Human Evolution•2017•Citada por: 14•Referencias: 90

  • Lucy's back

    Open Access•Marc R Meyer, A Williams et al.•ARTICLE•Journal of Human Evolution•2015•Citada por: 13•Referencias: 24

  • Spinal cord evolution in early Homo

    Open Access•Marc R Meyer, Martin Haeusler•ARTICLE•Journal of Human Evolution•2015•Citada por: 9•Referencias: 68

  • Neck function in early hominins and suspensory primates

    Open Access•Marc R Meyer, Charles Woodward et al.•ARTICLE•American Journal of Physical…•2018•Citada por: 6•Referencias: 147

    OBJECTIVES: Uncinate processes are protuberances on the cranial surface of subaxial cervical vertebrae that assist in stabilizing and guiding spinal motion. Shallow uncinate processes reduce cervical stability but confer an increased range of motion in clinical studies. Here we assess uncinate processes among extant primates and model cervical kinematics in early fossil hominins. MATERIALS AND METHODS: We compare six fossil hominin vertebrae with…

  • Knuckle-walking in Sahelanthropus? Locomotor inferences from the ulnae of fossil hominins and other hominoids

    Open Access•Marc R Meyer, Jason P Jung et al.•ARTICLE•Journal of Human Evolution•2023•Citada por: 4•Referencias: 193

    Because the ulna supports and transmits forces during movement, its morphology can signal aspects of functional adaptation. To test whether, like extant apes, some hominins habitually recruit the forelimb in locomotion, we separate the ulna shaft and ulna proximal complex for independent shape analyses via elliptical Fourier methods to identify functional signals. We examine the relative influence of locomotion, taxonomy, and body mass on ulna co…

  • Earliest axial fossils from the genus Australopithecus

    Open Access•Marc R Meyer, A Williams et al.•ARTICLE•Journal of Human Evolution•2019•Citada por: 3•Referencias: 102

  • Is ulna curvature in the StW 573 ('Little Foot') Australopithecus natural or pathological

    Open Access•Isabella Araiza, Marc R Meyer et al.•ARTICLE•Journal of Human Evolution•2021•Citada por: 2•Referencias: 41

  • Author response

    L R Berger, John Hawks et al.•Citada por: 1

    Article Figures and data Abstract eLife digest Introduction Differential diagnosis Description Discussion Materials and methods References Decision letter Author response Article and author information Metrics Abstract Homo naledi is a previously-unknown species of extinct hominin discovered within the Dinaledi Chamber of the Rising Star cave system, Cradle of Humankind, South Africa. This species is characterized by body mass and stature similar…

  • Lucy's back

    Open Access•Marc R Meyer, A Williams et al.•ARTICLE•Journal of Human Evolution•2015•Citada por: 13•Referencias: 24

  • Spinal cord evolution in early Homo

    Open Access•Marc R Meyer, Martin Haeusler•ARTICLE•Journal of Human Evolution•2015•Citada por: 9•Referencias: 68

  • Conclusion

    Open Access•Yohannes Haile-Selassie, Bruce Latimer et al.•CHAPTER•Postcranial Anatomy of…•2016

  • The Cervical Vertebrae of KSD-VP-1/1

    Open Access•Marc R Meyer•CHAPTER•Postcranial Anatomy of…•2016

  • New fossil remains of Homo naledi from the Lesedi Chamber, South Africa

    Open Access•John Hawks, M Elliott et al.•ARTICLE•eLife•2017

    The Rising Star cave system has produced abundant fossil hominin remains within the Dinaledi Chamber, representing a minimum of 15 individuals attributed to Homo naledi. Further exploration led to the discovery of hominin material, now comprising 131 hominin specimens, within a second chamber, the Lesedi Chamber. The Lesedi Chamber is far separated from the Dinaledi Chamber within the Rising Star cave system, and represents a second depositional …

  • The vertebrae and ribs of Homo naledi

    Open Access•A Williams, Scott A Williams et al.•ARTICLE•Journal of Human Evolution•2017•Citada por: 27•Referencias: 65

  • The cervical spine of Australopithecus sediba

    Open Access•Marc R Meyer, A Williams et al.•ARTICLE•Journal of Human Evolution•2017•Citada por: 14•Referencias: 90

  • Neck function in early hominins and suspensory primates

    Open Access•Marc R Meyer, Charles Woodward et al.•ARTICLE•American Journal of Physical…•2018•Citada por: 6•Referencias: 147

    OBJECTIVES: Uncinate processes are protuberances on the cranial surface of subaxial cervical vertebrae that assist in stabilizing and guiding spinal motion. Shallow uncinate processes reduce cervical stability but confer an increased range of motion in clinical studies. Here we assess uncinate processes among extant primates and model cervical kinematics in early fossil hominins. MATERIALS AND METHODS: We compare six fossil hominin vertebrae with…

  • The Spine of Early Pleistocene Homo

    Open Access•Marc R Meyer, A Williams et al.•CHAPTER•Spinal Evolution•2019

  • The Spine of Australopithecus

    Open Access•A Williams, Scott A Williams et al.•CHAPTER•Spinal Evolution•2019

  • Earliest axial fossils from the genus Australopithecus

    Open Access•Marc R Meyer, A Williams et al.•ARTICLE•Journal of Human Evolution•2019•Citada por: 3•Referencias: 102

  • The Multi-Period Settlement Dali in Southeastern Kazakhstan

    T R Hermes, Paula N Doumani Dupuy et al.•ARTICLE•Asian perspectives•2021

    Archaeological excavations at the Dali site complex located in southeastern Kazakhstan provide a rich picture of Bronze Age life spanning from the early third to late second millennia b.c. Nearly ten years of research at the site have produced an abundant assemblage of architectural remains, ritual and burial contexts, human and animal ancient DNA, and evidence for related economic practices and other material forms (ceramics, metallurgy). A syst…

  • Is ulna curvature in the StW 573 ('Little Foot') Australopithecus natural or pathological

    Open Access•Isabella Araiza, Marc R Meyer et al.•ARTICLE•Journal of Human Evolution•2021•Citada por: 2•Referencias: 41

  • Knuckle-walking in Sahelanthropus? Locomotor inferences from the ulnae of fossil hominins and other hominoids

    Open Access•Marc R Meyer, Jason P Jung et al.•ARTICLE•Journal of Human Evolution•2023•Citada por: 4•Referencias: 193

    Because the ulna supports and transmits forces during movement, its morphology can signal aspects of functional adaptation. To test whether, like extant apes, some hominins habitually recruit the forelimb in locomotion, we separate the ulna shaft and ulna proximal complex for independent shape analyses via elliptical Fourier methods to identify functional signals. We examine the relative influence of locomotion, taxonomy, and body mass on ulna co…

  • Author response

    L R Berger, John Hawks et al.•Citada por: 1

    Article Figures and data Abstract eLife digest Introduction Differential diagnosis Description Discussion Materials and methods References Decision letter Author response Article and author information Metrics Abstract Homo naledi is a previously-unknown species of extinct hominin discovered within the Dinaledi Chamber of the Rising Star cave system, Cradle of Humankind, South Africa. This species is characterized by body mass and stature similar…

  • Re-evaluating Omo 105-7, a provisional hominin last lumbar vertebra from the Lower Omo Basin (Plio-Pleistocene) of Ethiopia

    Open Access•Xue Wang, Marc R Meyer et al.•ARTICLE•Journal of Human Evolution•2025•Referencias: 19

Biology (14 obras) · Pleistocene-Era Hominins and Archaeology (14 obras) · Anatomy (12 obras) · Anatomy (10 obras) · Evolutionary biology (10 obras) · Paleontology (9 obras) · Primate Behavior and Ecology (9 obras) · Australopithecus (8 obras) · Biological evolution (8 obras) · Evolution and Paleontology Studies (8 obras)

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