Skip to main content

ETHNOS_APP

Home • Search • Journals • List 0

Femoral neck structure and function in early hominins

Bibliographic Data

ID8313680
AuthorsC B Ruff (0000-0002-2932-3634, Johns Hopkins University, corresponding author), Ryan Higgins (Center for Functional Anatomy and Evolution Johns Hopkins University School of Medicine Baltimore MD 21111)
Year2013
Volume150
Issue4
Pages512-525
Publication date2013-04-01
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueAmerican Journal of Physical Anthropology (JOURNAL)
Journal identifiersISSN: 0002-9483 • E-ISSN: 1096-8644
PublisherWiley (PUBLISHER • GB)
DOI10.1002/ajpa.22214
PMID23341246
OpenAlexW2065882147
LanguageEN
Citations received26
References cited85

All early (Pliocene–Early Pleistocene) hominins exhibit some differences in proximal femoral morphology from modern humans, including a long femoral neck and a low neck‐shaft angle. In addition, australopiths ( Au. afarensis , Au. africanus , Au. boisei , Paranthropus boisei ), but not early Homo , have an “anteroposteriorly compressed” femoral neck and a small femoral head relative to femoral shaft breadth. Superoinferior asymmetry of cortical bone in the femoral neck has been claimed to be human‐like in australopiths. In this study, we measured superior and inferior cortical thicknesses at the middle and base of the femoral neck using computed tomography in six Au. africanus and two P. robustus specimens. Cortical asymmetry in the fossils is closer overall to that of modern humans than to apes, although many values are intermediate between humans and apes, or even more ape‐like in the midneck. Comparisons of external femoral neck and head dimensions were carried out for a more comprehensive sample of South and East African australopiths ( n = 17) and two early Homo specimens. These show that compared with modern humans, femoral neck superoinferior, but not anteroposterior breadth, is larger relative to femoral head breadth in australopiths, but not in early Homo . Both internal and external characteristics of the australopith femoral neck indicate adaptation to relatively increased superoinferior bending loads, compared with both modern humans and early Homo . These observations, and a relatively small femoral head, are consistent with a slightly altered gait pattern in australopiths, involving more lateral deviation of the body center of mass over the stance limb. Am J Phys Anthropol, 2013. © 2013 Wiley Periodicals, Inc

Biological evolution · Biology · Femoral head · Femoral neck · Femur · Hominidae · Anatomy · Bone health and osteoporosis research · Forensic Anthropology and Bioarchaeology Studies · Paleontology · Pleistocene-Era Hominins and Archaeology

  • Comparability of CT and μCT ‐Extracted Femoral Diaphyseal Data in Primates

    Open Access•Alessandra Vecino Gazabón, Ashley S Hammond et al.•American Journal of Biological…•2026

  • Body, Evolution of

    Open Access•C B Ruff•International Encyclopedia of the…•2015

  • Limb Bone Structural Proportions and Locomotor Behavior in A.L. 288-1 ("Lucy")

    Open Access•C B Ruff, M Loring Burgess et al.•PLoS ONE•2016

  • The Early Hominin Foot

    Open Access•Jeremy M Desilva, Jeremy Desilva et al.•Developments in Primatology:…•2022

  • The Neandertal (Krapina and Regourdou 1), fossil modern human (Chancelade 1) and extant human patella

    Open Access•M Cazenave, Davorka Radovčić et al.•Paléo•2020

  • Sensitivity of musculoskeletal models to variation in muscle architecture parameters

    Open Access•P A Kramer, Elen M Feuerriegel et al.•Evolutionary Human Sciences•2022

  • The estimation and evolution of hominin body mass

    Open Access•C B Ruff, B Wood•Evolutionary Anthropology Issues…•2023

  • Postcranial evidence does not support habitual bipedalism in Sahelanthropus tchadensis

    Open Access•M Cazenave, M Pina et al.•Journal of Human Evolution•2024

  • Energetic cost of walking in fossil hominins

    Open Access•Marco Vidal‐cordasco, A Mateos et al.•American Journal of Physical…•2017

  • Body mass estimation from knee breadth, with application to early hominins

    Open Access•Nicole Squyres, C B Ruff•American Journal of Physical…•2015

  • Biomechanical and taxonomic diversity in the Early Pleistocene in East Africa

    Open Access•Julia Aramendi, Audax Mabulla et al.•Journal of Human Evolution•2024

  • Calcar femorale variation in extant and fossil hominids

    Open Access•M Cazenave, T L Kivell et al.•Journal of Human Evolution•2022

  • Nature and relationships of Sahelanthropus tchadensis

    Open Access•R Macchiarelli, Aude Bergeret-Medina et al.•Journal of Human Evolution•2020

  • Articular scaling and body mass estimation in platyrrhines and catarrhines

    Open Access•Jonathan M G Perry, Siobhán B Cooke et al.•Journal of Human Evolution•2018

  • Trabecular organization of the proximal femur in Paranthropus robustus

    Open Access•M Cazenave, Anna Oettlé et al.•Journal of Human Evolution•2021

  • Femoral neck cortical bone distribution of dryopithecin apes and the evolution of hominid locomotion

    Open Access•M Pina, David M Alba et al.•Journal of Human Evolution•2019

  • Femoral neck and shaft structure in Homo naledi from the Dinaledi Chamber (Rising Star System, South Africa)

    Open Access•Lukas Friedl, Alex G Claxton et al.•Journal of Human Evolution•2019

  • Lower limb articular scaling and body mass estimation in Pliocene and Pleistocene hominins

    Open Access•C B Ruff, M Loring Burge et al.•Journal of Human Evolution•2018

  • First articulating os coxae, femur, and tibia of a small adult Paranthropus robustus from Member 1 (Hanging Remnant) of the Swartkrans Formation, South Africa

    Open Access•T R Pickering, M Cazenave et al.•Journal of Human Evolution•2025

  • Cortical bone distribution in the femoral neck of Paranthropus robustus

    Open Access•M Cazenave, J Braga et al.•Journal of Human Evolution•2019

  • The thigh and leg of Homo naledi

    Open Access•D Marchi, Christopher Scott Walker et al.•Journal of Human Evolution•2017

  • Femoral neck cortical bone distribution in Nacholapithecus from the Middle Miocene of Kenya

    Open Access•Yuma Tomizawa, M Pina et al.•Journal of Human Evolution•2025

  • Challenges and perspectives on functional interpretations of australopith postcrania and the reconstruction of hominin locomotion

    Open Access•M Cazenave, T L Kivell•Journal of Human Evolution•2023

  • The pectoral girdle of StW 573 ('Little Foot') and its implications for shoulder evolution in the Hominina

    Open Access•Kristian J Carlson, David J Green et al.•Journal of Human Evolution•2021

  • Ardipithecus ramidus postcrania from the Gona Project area, Afar Regional State, Ethiopia

    Open Access•Scott W Simpson, Naomi E Levin et al.•Journal of Human Evolution•2019

  • Locomotor Economy and Foraging Ecology in Hominins

    M Vidal-Cordasco, Marco Vidal‐cordasco et al.•Journal of Anthropological Research•2021

  • Moment coefficients of skewness in the femoral neck cortical bone distribution of BAR 1002’00

    Open Access•Adam J Kuperavage, H J Sommer et al.•HOMO•2010

  • Fossils, feet and the evolution of human bipedal locomotion

    Open Access•William E H Harcourt‐smith, Leslie C Aiello•Journal of Anatomy•2004

  • Early Hominin Foot Morphology Based on 1.5-Million-Year-Old Footprints from Ileret, Kenya

    Open Access•Michael James Bennett, John W K Harris et al.•Science•2009

  • A new hominin foot from Ethiopia shows multiple Pliocene bipedal adaptations

    Open Access•Yohannes Haile-Selassie, Beverly Z Saylor et al.•Nature•2012

  • Lower Pliocene Hominid Remains from Sterkfontein

    Open Access•T C Partridge, Darryl E Granger et al.•Science•2003

  • Bipedalism in Orrorin tugenensis revealed by its femora

    Open Access•Martin Pickford, Brigitte Senut et al.•Comptes Rendus Palevol•2002

  • The Pelvis and Femur of Ardipithecus ramidus

    Open Access•C Owen Lovejoy, Gen Suwa et al.•Science•2009

  • Evolution of Human Walking

    C Owen Lovejoy•Scientific American•1988

  • A Partial Pelvis of Australopithecus sediba

    Open Access•Job M Kibii, E Churchill et al.•Science•2011

  • Chimpanzee Bipedalism

    Open Access•FARISH A JENKINS•Science•1972

  • Postcranial Remains of Homo erectus from Bed IV, Olduvai Gorge, Tanzania

    Open Access•M H Day•Nature•1971

  • Orrorin tugenensis Femoral Morphology and the Evolution of Hominin Bipedalism

    Open Access•Brian G Richmond, William L Jungers•Science•2008

  • Complete Fourth Metatarsal and Arches in the Foot of Australopithecus afarensis

    Open Access•Carol V Ward, William H Kimbel et al.•Science•2011

  • Palaeoanthropological discoveries in the Middle Awash Valley, Ethiopia

    Open Access•J Desmond Clark, Berhane Asfaw et al.•Nature•1984

  • The Foot and Ankle of Australopithecus sediba

    Open Access•Bernhard Zipfel, Jeremy M Desilva et al.•Science•2011

  • Bivariate line‐fitting methods for allometry

    Open Access•David I Warton, Ian J Wright et al.•Biological Reviews•2006

  • The Great Divides

    Open Access•C Owen Lovejoy, Gen Suwa et al.•Science•2009

  • A Female Homo erectus Pelvis from Gona, Ethiopia

    Open Access•Scott W Simpson, Jay Quade et al.•Science•2008

  • The obstetric pelvis of A.L. 288-1 (Lucy)

    Open Access•R G Tague, C Owen Lovejoy•Journal of Human Evolution•1986

  • Functional Interpretation of the Laetoli Footprints

    Peter Schmid•From Biped to Strider•2004

  • Cross-sectional morphology of the SK 82 and 97 proximal femora

    Open Access•C B Ruff, Henry M Mchenry et al.•American Journal of Physical…•1999

  • Climbing to the top

    Open Access•Jack T Stern•Evolutionary Anthropology Issues…•2000

  • Long bone articular and diaphyseal structure in old world monkeys and apes. I

    Open Access•C B Ruff•American Journal of Physical…•2002

  • Long bone articular and diaphyseal structure in Old World monkeys and apes. II

    Open Access•C B Ruff•American Journal of Physical…•2003

  • Articular structure and function in Hylobates, Colobus , and Papio

    Open Access•Katherine L Rafferty, C B Ruff•American Journal of Physical…•1994

  • Relative limb strength and locomotion in Homo habilis

    Open Access•C B Ruff, Christopher Ruff•American Journal of Physical…•2009

  • Use of computed tomography in skeletal structure research

    Open Access•C B Ruff, Frank P Leo•American Journal of Physical…•1986

  • Revisiting the “midtarsal break”

    Open Access•Jeremy M Desilva, Jeremy Desilva•American Journal of Physical…•2010

  • The femur in early human evolution

    Open Access•Henry M Mchenry, Robert S Corruccini•American Journal of Physical…•1978

  • A preliminary anatomical diagnosis of the first Plio/Pleistocene hominid discoveries in the central Afar, Ethiopia

    Open Access•Donald C Johanson, D Carl Johanson et al.•American Journal of Physical…•1976

  • Limb joint surface areas and their ratios in Malagasy lemurs and other mammals

    Open Access•L R Godfrey, Michael R Sutherland et al.•American Journal of Physical…•1995

  • Electromyography of the gluteal muscles in Hylobates, Pongo , and pan

    Open Access•Jack T Stern, Jack T Stern Jack T Stern et al.•American Journal of Physical…•1981

  • Hominid footprints at laetoli

    Open Access•Tim D White, Gen Suwa•American Journal of Physical…•1987

  • Brief communication

    Open Access•M Pina, David M Alba et al.•American Journal of Physical…•2012

  • Body size prediction from juvenile skeletal remains

    Open Access•C B Ruff, Christopher Ruff•American Journal of Physical…•2007

  • The gait of Australopithecus

    Open Access•C Owen Lovejoy, Kingsbury G Heiple et al.•American Journal of Physical…•1973

  • Fossil Homo femur from Berg Aukas, northern Namibia

    Open Access•Frederick E Grine, William L Jungers et al.•American Journal of Physical…•1995

  • Morphology of the Pliocene partial hominid skeleton (A.L. 288‐1) from the Hadar formation, Ethiopia

    Open Access•Donald C Johanson, C Owen Lovejoy et al.•American Journal of Physical…•1982

  • The Maka femur and its bearing on the antiquity of human walking

    Open Access•C Owen Lovejoy, Richard S Meindl et al.•American Journal of Physical…•2002

  • Earliest complete hominin fifth metatarsal—Implications for the evolution of the lateral column of the foot

    Open Access•Bernhard Zipfel, Jeremy M Desilva et al.•American Journal of Physical…•2009

  • The shape of the early hominin proximal femur

    Open Access•Elizabeth H Harmon•American Journal of Physical…•2009

  • A hominine hip bone, KNM‐ER 3228, from East Lake Turkana, Kenya

    Open Access•M D Rose•American Journal of Physical…•1984

  • The locomotor anatomy of Australopithecus afarensis

    Open Access•Jack T Stern, Jack T Stern Jr et al.•American Journal of Physical…•1983

  • Biomechanics of the hip and birth in early Homo

    Open Access•C B Ruff•American Journal of Physical…•1995

  • Hominid lower limb bones recovered from the Hadar formation

    Open Access•C Owen Lovejoy, Donald C Johanson et al.•American Journal of Physical…•1982

  • Hominid upper limb bones recovered from the Hadar formation

    Open Access•C Owen Lovejoy, Donald C Johanson et al.•American Journal of Physical…•1982

  • Size and shape variation in the proximal femur of Australopithecus africanus

    Open Access•Elizabeth H Harmon, Elizabeth Harmon•Journal of Human Evolution•2009

  • New Australopithecus femora from East Rudolf, Kenya

    Open Access•Alan Walker•Journal of Human Evolution•1973

  • Femoral/humeral strength in early African Homo erectus

    Open Access•C B Ruff, Christopher Ruff•Journal of Human Evolution•2008

  • Biomechanical interpretation of the early hominid hip

    Open Access•Henry M Mchenry•Journal of Human Evolution•1975

  • Structural design of the femoral neck in primates

    Open Access•Katherine L Rafferty•Journal of Human Evolution•1998

  • "Body size, body proportions, and mobility in the Tyrolean "Iceman

    Open Access•C B Ruff, Brigitte M Holt et al.•Journal of Human Evolution•2006

  • Body proportions inAustralopithecus afarensisandA. africanusand the origin of the genusHomo

    Open Access•Henry M Mchenry, L R Berger•Journal of Human Evolution•1998

  • Cortical bone distribution in the femoral neck of strepsirhine primates

    Open Access•Brigitte Demes, William L Jungers et al.•Journal of Human Evolution•2000

  • The metabolic cost of walking in humans, chimpanzees, and early hominins

    Open Access•H Pontzer, D A Raichlen et al.•Journal of Human Evolution•2009

  • Recently identified postcranial remains of Paranthropus and Early Homo from Swartkrans Cave, South Africa

    Open Access•Randall L Susman, Darryl J De Ruiter et al.•Journal of Human Evolution•2001

  • Stw 441/465

    Open Access•Martin Häusler, L R Berger et al.•Journal of Human Evolution•2001

  • New postcranial fossils of Australopithecus afarensis from Hadar, Ethiopia (1990-2007)

    Open Access•Carol V Ward, William H Kimbel et al.•Journal of Human Evolution•2012

  • Body size and body shape in early hominins - implications of the Gona Pelvis

    Open Access•C B Ruff, Christopher Ruff•Journal of Human Evolution•2010

  • Palaeomagnetic analysis of the Sterkfontein palaeocave deposits

    Open Access•Andy I R Herries, John Shaw•Journal of Human Evolution•2011

  • A new reconstruction of Sts 14 pelvis (Australopithecus africanus) from computed tomography and three-dimensional modeling techniques

    Open Access•Christine Berge, Dionysis Goularas•Journal of Human Evolution•2010

  • New hominid fossils from Member 1 of the Swartkrans formation, South Africa

    Open Access•T R Pickering, Jason L Heaton et al.•Journal of Human Evolution•2012

  • Cortical bone distribution in the femoral neck of hominoids

    Open Access•James C Ohman, Todd J Krochta et al.•American Journal of Physical…•1997

  • A complete second metatarsal (StW 89) from Sterkfontein Member 4, South Africa

    Open Access•Jeremy M Desilva, Jeremy Desilva et al.•Journal of Human Evolution•2012

Unique citing works26
Citations per year2,36
Citation span2015 - 2026 (12)
Citation velocitycurrent
Highly citedNo
Citation typesNeutral: 25

Tools

Open DOISci-Hub
Ethnos_APP • Open Source Project • MIT License • Frontend v2.0.0 • Privacy and Cookies • API Documentation: api.ethnos.app/docs • API Source Code: GitHub • DOI: 10.5281/zenodo.17049435 • Frontend Source Code: GitHub • DOI: 10.5281/zenodo.17050053 • cruz.rio.br • Expectantes Misericordiae