Determining primates bite force from histological tooth sections
Bibliographic Data
| ID | 8312804 |
|---|---|
| Authors | Herzl Chai (0000-0001-6747-8648, School of Mechanical Engineering Tel‐Aviv University Tel‐Aviv Israel, corresponding author) |
| Year | 2020 |
| Volume | 171 |
| Issue | 4 |
| Pages | 683-703 |
| Publication date | 2020-04-01 |
| Peer Reviewed | Yes |
| Open Access | Yes |
| Type | ARTICLE |
| Venue | American Journal of Physical Anthropology (JOURNAL) |
| Journal identifiers | ISSN: 0002-9483 • E-ISSN: 1096-8644 |
| Publisher | Wiley (PUBLISHER • GB) |
| DOI | 10.1002/ajpa.24003 |
| PMID | 31912901 |
| OpenAlex | W2999228330 |
| Language | EN |
| Citations received | 3 |
| References cited | 78 |
Objectives The ability to accurately estimate bite force (BF) in extant and fossil primates is valuable to biological anthropologists. BF is generally evaluated using complex jaw musculature and lever arm analyses employing numerous assumptions and requiring complete cranial morphology. Here, a simple method to determine BF from data measured on histological sections of fossil teeth is proposed. Methods Published sections of molar teeth encompassing 27 different extinct and extant primates dating back to as early as 17 million years ago were examined. Focusing on the cusp region, the extracted data include characteristic enamel thickness d c and dentin horn angle φ . The occlusal force needed to fracture a cusp, P F , was determined from these variables with the aid of a finite element stress analysis similarly to a previous study on postcanine human teeth. The bite force was obtained by linking BF to P F using a universal constant. Results The measured variables d c and φ are conclusively linked. This link produces a virtually constant fracture force P F and in turn bite force BF for all cusps in the molar row. An explicit formula tying BF to d c and φ was derived. For nonhominin taxa the bite force, molar crown area, and body mass are found to be intimately related. The case of hominins is more involved. The so determined BF is gender‐averaged, with the bite force of males estimated to be ≈12% greater than that of females. Conclusions The use of “fracture mechanics” concepts from mechanics of materials facilitates determination of critical bite force in primates based on characteristic enamel thickness d c and dentin horn angle φ as extracted from histological sections of molar teeth. This novel approach enables quantitative insight into the role played by crown area, body mass and bite force on evolutionary trends. The conclusive link between cuspal enamel thickness and dentin horn angle facilitates optimal food processing without hindering cusp resilience. The proposed approach may be extended to mammals having asymmetric cusp structures
Biology · Bite force quotient · Composite material · Cusp (singularity) · Enamel paint · Evolutionary biology · Extant taxon · Fracture (geology) · Geometry · Lever · Molar · Physics · Anatomy · Dentistry · Evolution and Paleontology Studies · Materials Science · Mathematics · Medicine · Orthodontics · Pleistocene-Era Hominins and Archaeology · Primate Behavior and Ecology
Postcranial morphology of the middle Pleistocene humans from Sima de los Huesos, Spain
New species from Ethiopia further expands Middle Pliocene hominin diversity
Hominoid dietary evolution
The functional significance of primate mandibular form
Sexual dimorphism in primate teeth
How big were early hominids
The weight of nations
Climate and vegetation dynamics, eastern Asia
Enamel thickness and microstructure in pitheciin primates, with comments on dietary adaptations of the middle Miocene hominoid Kenyapithecus
Dental tissue proportions in fossil orangutans from mainland Asia and Indonesia
New fossil evidence and diet analysis of Gigantopithecus blacki and its distribution and extinction in South China
Effects of loading on the biochemical behavior of molars ofHomo,Pan, andPongo
Body size and proportions in early hominids
Variations in enamel thickness and structure in East African hominids
Enamel thickness of deciduous and permanent molars in modern Homo sapiens
Molar enamel thickness and dentine horn height in Gigantopithecus blacki
The nut‐crackers – a new theory of the adaptations of the Ramapithecinae
Bite force production capability and efficiency in Neandertals and modern humans
Functional implications of primate enamel thickness
Bite force and occlusal stress production in hominin evolution
Allometric scaling in the dentition of primates and prediction of body weight from tooth size in fossils
Enamel thickness of human maxillary molars reconsidered
Brief Communication
Tooth‐root form and function in platyrrhine seed‐eaters
Relative cheek‐tooth size in Australopithecus
Gigantopithecus blacki
New dental remains of Anoiapithecus and the first appearance datum of hominoids in the Iberian Peninsula
The first discovery of a complete skeleton of a fossil orang-utan in a cave of the Hoa Binh Province, Vietnam
An examination of dental development in Graecopithecus freybergi (=Ouranopithecus macedoniensis)
Variation in enamel thickness within the genus Homo
Variations in molar enamel thickness among primates
Molar enamel thickness and distribution patterns in extant great apes and humans
Functional ecology and evolution of hominoid molar enamel thickness
Enamel thickness, microstructure and development in Afropithecus turkanensis
Enamel thickness and development in a third permanent molar of Gigantopithecus blacki
Bite force, diet, and cranial morphology of fossil hominids
Body mass in comparative primatology
Dental development in living and fossil orangutans
Enamel thickness trends in Plio-Pleistocene hominin mandibular molars
Taxonomic and functional aspects of the patterning of enamel thickness distribution in extant large-bodied hominoids
Effects of loading on the biochemical behavior of molars of Homo, Pan, and Pongo
The significance of changes in body mass in human evolution
Australopithecus to Homo
| Unique citing works | 3 |
|---|---|
| Citations per year | 0,6 |
| Citation span | 2021 - 2025 (5) |
| Citation velocity | recent |
| Highly cited | No |
| Citation types | Neutral: 3 |