Life history, enamel formation, and linear enamel hypoplasia in the Ceboidea
Bibliographic Data
| ID | 8314508 |
|---|---|
| Authors | Elizabeth A Newell (0000-0002-1476-033X, Elizabethtown College, corresponding author), D Guatelli-Steinberg (0000-0002-1345-5384, The Ohio State University), Michelle Field (0000-0002-7790-5559, The Ohio State University), Catherine Cooke (0000-0001-9742-857X, The Ohio State University), Robin N M Feeney (0000-0003-4608-3852, The Ohio State University) |
| Year | 2006 |
| Volume | 131 |
| Issue | 2 |
| Pages | 252-260 |
| Publication date | 2006-10-01 |
| 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.20436 |
| PMID | 16596595 |
| OpenAlex | W2008436819 |
| Language | EN |
| Citations received | 7 |
| References cited | 38 |
Linear enamel hypoplasia (LEH), a developmental defect of enamel, increases in frequency from prosimian to monkey to lesser ape to great ape grades (Guatelli-Steinberg 2000 Am. J. Phys. Anthropol. 112:395-410, [2001] Evol. Anthropol. 10:138-151; Newell 1998 Ph.D. dissertation, Temple University). This taxonomic pattern in the distribution of LEH is closely related to maturation length across the primate order (Newell 1998 Ph.D. dissertation, Temple University, 2000 Am. J. Phys. Anthropol. [Suppl.] 30:236). Longer maturation periods are associated with higher LEH frequencies; they appear to provide greater opportunity for defects to form. The present study explores the relationship between maturation length and LEH frequency within the Ceboidea. Because of its prolonged period of growth, Cebus is predicted to manifest LEH at a higher frequency than the more rapidly maturing ceboid genera. To test this hypothesis, two separate researchers (E.A.N. and D.G.-S.) examined LEH in nonoverlapping museum series of ceboids. The results support the hypothesis: in 13 genera (n = 1,276), E.A.N. found that LEH frequencies ranged from 0% in Callicebus, Cebuella, and Saimiri to 20% in Cebus. D.G.-S. found similar frequencies among five genera (n = 107), from 0% in Saimiri to 32% in Cebus. Thus, the broad pattern of LEH distribution evident across major taxonomic groups of primates is repeated within the Ceboidea. We also examined a related hypothesis linking the spacing of perikymata, which is influenced by enamel extension rates (Shellis 1998 J. Hum. Evol. 35:387-400), to LEH. The most likely areas of tooth crowns to exhibit LEH in human teeth are those in which perikymata are most closely spaced (Hillson and Bond 1997 Am. J. Phys. Anthropol. 104:89-103). We hypothesized that the longer-maturing Cebus, with its elevated LEH frequency, will also exhibit more closely spaced perikymata than other ceboids. Analysis of a small microscopic subsample (n = 8) lends limited support to this second hypothesis
Art · Biology · Enamel hypoplasia · Enamel paint · Hum · Primate · Zoology · Anatomy · Bone and Dental Protein Studies · dental development and anomalies · Dentistry · Ecology · Forensic Anthropology and Bioarchaeology Studies
A pplying standard perikymata profiles to P ongo pygmaeus canines to estimate perikymata counts between linear enamel hypoplasias
Differences in enamel defect expression and enamel growth variables in Macaca fascicularis and Trachypithecus cristatus from Sabah, Borneo
Revisiting Linear Enamel Hypoplasia in Cayo Santiago Rhesus Macaques ( Macaca mulatta )
Quantifying linear enamel hypoplasia in Virunga Mountain gorillas and other great apes
Ecological stress and linear enamel hypoplasia in Cebus
Linear enamel hypoplasia as an indicator of physiological stress in great apes
Sex differences in anthropoid mandibular canine lateral enamel formation
Statistical Methods for Rates and Proportions
Dental Anthropology
Dental Development as a Measure of Life History in Primates
The Measurement of Observer Agreement for Categorical Data
Perinatal life history traits in New World monkeys
A Coefficient of Agreement for Nominal Scales
Conservative scoring and exclusion of the phenomenon of interest in linear enamel hypoplasia studies
Primate molar crown formation times and life history evolution revisited
What can developmental defects of enamel reveal about physiological stress in nonhuman primates
Linear enamel hypoplasia in gibbons (Hylobates lar carpenteri)
Preferential expression of linear enamel hypoplasia on the sectorial premolars of rhesus monkeys (Macaca mulatta)
Enamel hypoplasia in sympatric chimpanzee and gorilla
Life history patterns of new world monkeys
Comparison of Development and Life History in Pan and Cebus
Ages of eruption of primate teeth
Incidence and patterning of dental enamel hypoplasia among the Neandertals
Interpreting sex differences in enamel hypoplasia in human and non-human primates
Assessment of systemic physiological perturbations from dental enamel hypoplasias and associated histological structures
Blood groups of six Indian bands of north‐eastern British Columbia
Relationship of enamel hypoplasia to the pattern of tooth crown growth
Perikymata spacing and distribution on hominid anterior teeth
Hypothesis for the causes and periodicity of repetitive linear enamel hypoplasia in large, wild African ( Pan troglodytes and Gorilla gorilla ) and Asian ( Pongo pygmaeus ) apes
Linear enamel hypoplasia in the great apes
Deciduous enamel defects in prehistoric Americans from Dickson Mounds
Genetics and history of sub-Saharan Africa
Skeletal Biology of Past Peoples
Utilization of periodic markings in enamel to obtain information on tooth growth
| Unique citing works | 7 |
|---|---|
| Citations per year | 0,41 |
| Citation span | 2009 - 2025 (17) |
| Citation velocity | recent |
| Highly cited | No |
| Citation types | Neutral: 7 |