Masticatory-stress hypotheses and the supraorbital region of primates.
Explore this paper's citation graph
Summary
There is no good reason to believe that enlarged browridges in living and/or fossil primates are structural adaptations to counter intense masticatory forces.
- Type
- article
- Published
- 1991-09-01
- Cited by
- 210
- References
- 27
- OpenAlex
- https://openalex.org/W1951658
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:9088705
Keywords
Computer science
References
- Engineering mechanics of deformable bodies
- Functional strains and cortical bone adaptation: epigenetic assurance of skeletal integrity.
- Endo's stress analysis of the primate skull and the functional significance of the supraorbital region.
- Experimental analysis of temporomandibular joint reaction force in macaques.
- Stress and strain in the mandibular symphysis of primates: a test of competing hypotheses.
- Extraneuronal binding of catecholamines and 3,4-dihydroxyphenylalanine (dopa) in salivary glands.
- Biomechanics of mammalian terrestrial locomotion.
- The resistance of primate skulls against mechanical stresses
- Loading patterns and jaw movements during mastication in Macaca fascicularis: a bone-strain, electromyographic, and cineradiographic analysis.
- Temporomandibular joint forces measured at the condyle of Macaca arctoides.
- The relationship between masseter force and masseter electromyogram during mastication in the monkey Macaca fascicularis.
- Jaw movements and patterns of mandibular bone strain during mastication in the monkey Macaca fascicularis.
- Mandibular Function and Biomechanical Stress and Scaling
- On Skull Form and the Supraorbital Torus in Primates
- Mandibular function in Galago crassicaudatus and Macaca fascicularis: An in vivo approach to Stress Analysis of the mandible
- Interspecific perspective on mechanical and nonmechanical models of primate circumorbital morphology.
- Tooth eruption and browridge formation.
- A functional approach to craniology.
- Browridge development in cercopithecidae: A test of two models
- Mode of Subsistence and Folk Biological Taxonomy [and Comments and Reply]
Cited by
- Macro- and mesomorphology of frontal sinuses in humans: noisiness models relating to their ontogeny.
- Protective buttressing of the hominin face
- The patterning and determinants of craniofacial robusticity in extant Homo sapiens
- Discussion: Biomechanical Rationale for Surgical-Orthodontic Expansion of the Adult Maxilla
- Spécificités des caractères morphologiques internes du squelette céphalique chez Homo erectus
- Evolution of hominin cranial ontogeny.
- Biomechanical implications of intraspecific shape variation in chimpanzee crania: moving towards an integration of geometric morphometrics and finite element analysis
- Influence of edentulism on human orbit and zygomatic arch shape
- LA MORPHOLOGIE EXTERNE ET INTERNE DE LA RÉGION SUPRA-ORBITAIRE EST-ELLE CORRÉLÉE À DES CONTRAINTES BIOMÉCANIQUES ? IS THE INTERNALAND EXTERNAL MORPHOLOGY OF THE SUPRAORBITALAREA RELATED TO BIOMECHANICAL STRESS? STRUCTURALANALYSIS OF THE AFALOU BOU RHUMMEL (ALGERIA) AND TAFORALT (MOROCCO) POPULATIONS
- The Feeding Biomechanics and Dietary Ecology of Paranthropus boisei
- Morphological relationship between the cranial and supraorbital regions in Homo sapiens.
- The mechanical function of the periodontal ligament in the macaque mandible: a validation and sensitivity study using finite element analysis
- Balancing the spatial demands of the developing dentition with the mechanical demands of the catarrhine mandibular symphysis
- In vivo bone strain and finite‐element modeling of the craniofacial haft in catarrhine primates
- What does feeding system morphology tell us about feeding?
- An assessment of the likely impact of strain-related phenotypic plasticity on hominin fossil species identification
- Limitations of a morphological criterion of adaptive inference in the fossil record
- Masticatory loadings and cranial deformation in Macaca fascicularis: a finite element analysis sensitivity study
- Shifts in subsistence type and its impact on the human skull's morphological integration
- Patterns of Diversity in Cranial Shape Among Plant-Visiting Bats
Related papers
No related papers recorded.