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The relationships among jaw‐muscle fiber architecture, jaw morphology, and feeding behavior in extant apes and modern humans

Dados Bibliográficos

ID8315529
AutoresA B Taylor (0000-0001-6647-5488, Department of Community and Family Medicine, Doctor of Physical Therapy Program Duke University School of Medicine Durham NC 27708, autor correspondente), Christopher J Vinyard (0000-0002-7355-5192, Department of Anatomy and Neurobiology Northeast Ohio Medical University Rootstown OH 44272‐0095)
Ano2013
Volume151
Fascículo1
Páginas120-134
Data de publicação2013-05-01
Peer ReviewedSim
Open AccessSim
TipoARTICLE
PeriódicoAmerican Journal of Physical Anthropology (JOURNAL)
Identificadores do periódicoISSN: 0002-9483 • E-ISSN: 1096-8644
EditoraWiley (PUBLISHER • GB)
DOI10.1002/ajpa.22260
PMID23553609
OpenAlexW1795804210
IdiomaEN
Citações recebidas12
Referências citadas70

The jaw‐closing muscles are responsible for generating many of the forces and movements associated with feeding. Muscle physiologic cross‐sectional area (PCSA) and fiber length are two architectural parameters that heavily influence muscle function. While there have been numerous comparative studies of hominoid and hominin craniodental and mandibular morphology, little is known about hominoid jaw‐muscle fiber architecture. We present novel data on masseter and temporalis internal muscle architecture for small‐ and large‐bodied hominoids. Hominoid scaling patterns are evaluated and compared with representative New‐ ( Cebus ) and Old‐World ( Macaca ) monkeys. Variation in hominoid jaw‐muscle fiber architecture is related to both absolute size and allometry. PCSAs scale close to isometry relative to jaw length in anthropoids, but likely with positive allometry in hominoids. Thus, large‐bodied apes may be capable of generating both absolutely and relatively greater muscle forces compared with smaller‐bodied apes and monkeys. Compared with extant apes, modern humans exhibit a reduction in masseter PCSA relative to condyle‐M 1 length but retain relatively long fibers, suggesting humans may have sacrificed relative masseter muscle force during chewing without appreciably altering muscle excursion/contraction velocity. Lastly, craniometric estimates of PCSAs underestimate hominoid masseter and temporalis PCSAs by more than 50% in gorillas, and overestimate masseter PCSA by as much as 30% in humans. These findings underscore the difficulty of accurately estimating jaw‐muscle fiber architecture from craniometric measures and suggest models of fossil hominin and hominoid bite forces will be improved by incorporating architectural data in estimating jaw‐muscle forces. Am J Phys Anthropol 151:120–134, 2013. © 2013 Wiley Periodicals, Inc

Biology · Evolutionary biology · Extant taxon · Morphology (biology) · Muscle fibre · Skeletal muscle · Zoology · Anatomy · Evolution and Paleontology Studies · Pleistocene-Era Hominins and Archaeology · Primate Behavior and Ecology

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Obras citantes distintas12
Citações por ano0,92
Intervalo de citações2013 - 2025 (13)
Velocidade de citaçãorecent
Altamente citadoNão
Tipos de citaçãoNeutras: 12
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