Skip to main content

ETHNOS_APP

Home • Search • Journals • List 0

Divergent otolithic systems in the inner ear of Paranthropus robustus and Australopithecus africanus

Bibliographic Data

ID5708484
AuthorsChristopher M Smith (0000-0001-9259-1079, American Museum of Natural History, corresponding author), Ashley S Hammond (0000-0001-8444-0553, American Museum of Natural History), Alessandro Urciuoli (0000-0002-6265-8962, Universitat Autonòma de Barcelona), J Braga (0000-0002-8483-076X, University of the Witwatersrand), Amélie Beaudet (0000-0002-9363-5966, Centre National de la Recherche Scientifique), M Cazenave (0000-0001-7194-5958, Max Planck Institute for Evolutionary Anthropology), Jeffrey T Laitman (0000-0002-9629-946X, Icahn School of Medicine at Mount Sinai), Sergio Almécija (0000-0003-1373-1497, Universitat Autonòma de Barcelona)
Year2025
Volume199
Pages103624
Publication date2025-02-01
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueJournal of Human Evolution (JOURNAL)
Journal identifiersISSN: 0047-2484 • E-ISSN: 1095-8606
PublisherElsevier BV (PUBLISHER)
DOI10.1016/j.jhevol.2024.103624
PMID39675267
OpenAlexW4405356895
LanguageEN
References cited51

The bony labyrinth of the inner ear houses the sensory end-organs responsible for balance (otolithic system in the utricle and saccule, and semicircular canal system) and hearing (cochlea). Study of the bony labyrinth has revealed considerable morphological diversity in the hominin lineage (semicircular canals and cochleae) and aided in reconstructing essential aspects of primate evolution, including positional behavior, audition, and phylogenic affinities. However, evidence of evolutionary change in the hominin otolithic system remains elusive. Such morphological variation in these gravitoinertial sensory end-organs may suggest functional differences as their geometry is linked with positional behavior. We approach the question of evolutionary morphological change in the hominin otolithic system by examining bony vestibule morphology in two South African hominin taxa Paranthropus robustus (n = 9) and Australopithecus africanus (n = 6), compared to extant hominids (Pongo pygmaeus, Gorilla gorilla, Pan troglodytes, and Homo sapiens). We use landmark-based shape analyses of 78 extant hominid inner ears by means of virtual three-dimensional models derived from micro-CT scans. Thirty bony landmarks were chosen to approximate otolithic organ morphology and relative configuration. Results show a distinctive morphology in P. robustus compared to A. africanus and extant hominids. Specifically, P. robustus exhibits anterolateral-posteromedial compression in bony otolithic organ structure, reducing the size of the saccule and vestibular aqueduct. In contrast, A. africanus exhibits a modern-human-like otolithic system. This newfound morphological diversity identifies unique bony features of the P. robustus inner ear which 1) offers potential evidence for differential positional behavior between P. robustus and A. africanus and 2) presents osteological markers to be used in taxonomic identification of P. robustus remains and in future assessments of Paranthropus classification

Australopithecus · Biology · Inner ear · Anatomy · Bat Biology and Ecology Studies · Evolution and Paleontology Studies · Morphological variations and asymmetry

  • Fossils, feet and the evolution of human bipedal locomotion

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

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

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

  • Bipedalism in Orrorin tugenensis revealed by its femora

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

  • The Lower Limb and Mechanics of Walking in Australopithecus sediba

    Open Access•Jeremy M Desilva, Jeremy Desilva et al.•Science•2013

  • Implications of early hominid labyrinthine morphology for evolution of human bipedal locomotion

    Open Access•Fred Spoor, B Wood et al.•Nature•1994

  • The Great Divides

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

  • The Mousterian Legacy

    Erik Trinkaus•The Mousterian legacy•1983

  • The Evolution of Zinjanthropus boisei

    Open Access•Paul J Constantino, Paul Constantino et al.•Evolutionary Anthropology Issues…•2007

  • The Paleobiology of Australopithecus

    Open Access•Kaye E Reed, John G Fleagle et al.•Paleobiology of Australopithecus•2013

  • The inner ear of the Paranthropus specimen DNH 22 from Drimolen, South Africa

    Open Access•Amélie Beaudet•American Journal of Physical…•2019

  • Basicranial anatomy of Plio‐Pleistocene hominids from East and South Africa

    Open Access•M C Dean, Christopher Dean et al.•American Journal of Physical…•1982

  • The position of the occipital condyles and of the face relative to the skull base in primates

    Open Access•Adolph H Schultz•American Journal of Physical…•1955

  • Variation of bony labyrinthine morphology in Mio−Plio−Pleistocene and modern anthropoids

    Open Access•Naoki Morimoto, Y Kunimatsu et al.•American Journal of Physical…•2020

  • Position and orientation of the foramen magnum in higher primates

    Open Access•S A Luboga, Samuel Luboga et al.•American Journal of Physical…•1990

  • Basicranial flexion, relative brain size, and facial kyphosis in nonhuman primates

    Open Access•Callum F Ro, Callum F Ross et al.•American Journal of Physical…•1993

  • Functional, morphogenetic and phylogenetic significance of conjunction between cardioid foramen magnum and enlarged occipital and marginal venous sinuses

    Open Access•Phillip V Tobias, Joel A Symons et al.•Archaeology in Oceania/Archæology…•1992

  • The bony labyrinth of Neanderthals

    Open Access•Fred Spoor, Jean-Jacques Hublin et al.•Journal of Human Evolution•2003

  • A comparative analysis of the vestibular apparatus in Epipliopithecus vindobonensis

    Open Access•Alessandro Urciuoli, C Zanolli et al.•Journal of Human Evolution•2021

  • Cochlear morphology of Indonesian Homo erectus from Sangiran

    Open Access•Alessandro Urciuoli, Jülide Kubat et al.•Journal of Human Evolution•2022

  • Locomotion and basicranial anatomy in primates and marsupials

    Open Access•Catalina I Villamil•Journal of Human Evolution•2017

  • A new partial temporal bone of a juvenile hominin from the site of Kromdraai B (South Africa)

    Open Access•J Braga, J Francis Thackeray et al.•Journal of Human Evolution•2013

  • Three-dimensional geometric morphometric analysis of the bony labyrinth of Xujiayao 6

    Open Access•Yameng Zhang, Alessandro Urciuoli et al.•Journal of Human Evolution•2024

  • 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

  • Effects of brain and facial size on basicranial form in human and primate evolution

    Open Access•M Bastir, A Rosas et al.•Journal of Human Evolution•2010

  • Foramen magnum position in bipedal mammals

    Gabrielle A Russo, E Christopher Kirk•Journal of Human Evolution•2013

  • A comparative study of the endocasts of OH 5 and SK 1585

    Open Access•Amélie Beaudet, Ralph Holloway et al.•Journal of Human Evolution•2021

  • The cochlea of the Sima de los Huesos hominins (Sierra de Atapuerca, Spain)

    Open Access•Mercedes Conde-Valverde, Ignacio Martínez et al.•Journal of Human Evolution•2019

  • The Neandertal vertebral column 1

    Open Access•Asier Gómez‐olivencia, Asier Gómez-Olivencia et al.•Journal of Human Evolution•2013

  • "The bony labyrinth of StW 573 ("Little Foot)

    Open Access•Amélie Beaudet, Ronald J Clarke et al.•Journal of Human Evolution•2019

  • The bony labyrinth of the middle Pleistocene Sima de los Huesos hominins (Sierra de Atapuerca, Spain)

    Open Access•Rolf Quam, Carlos Lorenzo et al.•Journal of Human Evolution•2016

  • Geometric morphometric analysis of the bony labyrinth of the Sima de los Huesos hominins

    Open Access•Alex D Velez, Rolf Quam et al.•Journal of Human Evolution•2023

Citation velocityhistorical
Highly citedNo

Tools

Open DOIOpen Access
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