Canine and incisor microwear in pitheciids and Ateles reflects documented patterns of tooth use.
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[1] F. Grine. Dental evidence for dietary differences in Australopithecus and Paranthropus: a quantitative analysis of permanent molar microwear , 1986 .
[2] L. O. Greenfield. Relative canine size, behavior and diet in male ceboids , 1992 .
[3] P. Tafforeau,et al. A new primate from the Eocene Pondaung Formation of Myanmar and the monophyly of Burmese amphipithecids , 2009, Proceedings of the Royal Society B: Biological Sciences.
[4] Meave G. Leakey,et al. Afropithecus: Function and Phylogeny , 1997 .
[5] R. Wallace. Seasonal Variations in Diet and Foraging Behavior of Ateles chamek in a Southern Amazonian Tropical Forest , 2005, International Journal of Primatology.
[6] A. Deane. Early Miocene catarrhine dietary behaviour: the influence of the Red Queen Effect on incisor shape and curvature. , 2009, Journal of human evolution.
[7] J. Altmann,et al. Canine Length in Wild Male Baboons: Maturation, Aging and Social Dominance Rank , 2015, PloS one.
[8] J. Ayres. Comparative feeding ecology of the Uakari and Bearded Saki, Cacajao and Chiropotes , 1989 .
[9] W. Kinzey,et al. Ceboid models for the evolution of hominoid dentition , 1974 .
[10] A. Rosenberger,et al. Evolution of feeding niches in New World monkeys. , 1992, American journal of physical anthropology.
[11] L. Aiello,et al. Dental microwear of Griphopithecus alpani. , 1999, Journal of human evolution.
[12] R. Kay,et al. Nuciruptor rubricae, a new pitheciin seed predator from the Miocene of Colombia. , 1997, American journal of physical anthropology.
[13] Paul J. Constantino,et al. Dental enamel as a dietary indicator in mammals. , 2008, BioEssays : news and reviews in molecular, cellular and developmental biology.
[14] M. Teaford. Dental microwear and dental function , 2005 .
[15] P. Ungar,et al. Incisor microwear of Sumatran anthropoid primates. , 1994, American journal of physical anthropology.
[16] F. Grine,et al. Premolar microwear and tooth use in Australopithecus afarensis. , 2013, Journal of human evolution.
[17] J. J. Rose. A replication technique for scanning electron microscopy: Applications for anthropologists , 1983 .
[18] J. Ahumada,et al. Influence of Fruit Availability on Ecological Overlap among Four Neotropical Primates at Tinigua National Park, Colombia 1 , 2000 .
[19] M. Teaford,et al. Dental microwear and diet in Venezuelan primates. , 1992, American journal of physical anthropology.
[20] Tanya M. Smith,et al. Enamel thickness, microstructure and development in Afropithecus turkanensis. , 2003, Journal of human evolution.
[21] S. Ferrari,et al. Party Size and Diet of Syntopic Atelids (Ateles chamek and Lagothrix cana) in Southwestern Brazilian Amazonia , 2001, Folia Primatologica.
[22] R. Leakey,et al. A new Miocene hominoid from Kenya , 1986, Nature.
[23] L. Aiello,et al. Dental microwear ofGriphopithecus alpani , 1999 .
[24] S. Suarez. Diet and Travel Costs for Spider Monkeys in a Nonseasonal, Hyperdiverse Environment , 2006, International Journal of Primatology.
[25] L. O. Greenfield. Canine "honing" in Australopithecus afarensis. , 1990, American journal of physical anthropology.
[26] Peter S Ungar,et al. Dental microwear of sympatric rodent species sampled across habitats in southern Africa: Implications for environmental influence. , 2016, Integrative zoology.
[27] A. Nunes. Diet and Feeding Ecology of Ateles belzebuth belzebuth at Maracá Ecological Station, Roraima, Brazil , 1998, Folia Primatologica.
[28] M. Norconk,et al. Seed dispersal by neotropical seed predators , 1998, American journal of primatology.
[29] Ivan Calandra,et al. Teasing apart the contributions of hard dietary items on 3D dental microtextures in primates. , 2012, Journal of human evolution.
[30] M. Teaford,et al. Environmental perturbations can be detected through microwear texture analysis in two platyrrhine species from Brazilian Amazonia , 2015, American journal of primatology.
[31] Anterior dental evolution in the Australopithecus anamensis–afarensis lineage , 2010, Philosophical Transactions of the Royal Society B: Biological Sciences.
[32] Michael J. Rogers,et al. Late Miocene hominin teeth from the Gona Paleoanthropological Research Project area, Afar, Ethiopia. , 2015, Journal of human evolution.
[33] C. Ward,et al. New hominin fossils from Kanapoi, Kenya, and the mosaic evolution of canine teeth in early hominins , 2012 .
[34] T. Defler,et al. Diet of a Group of Callicebus torquatus lugens (Humboldt, 1812) During the Annual Resource Bottleneck in Amazonian Colombia , 1997, International Journal of Primatology.
[35] P. Tafforeau,et al. Dietary reconstruction of the Amphipithecidae (Primates, Anthropoidea) from the Paleogene of South Asia and paleoecological implications. , 2010, Journal of human evolution.
[36] J. Boubli. Feeding Ecology of Black-headed Uacaris (Cacajao melanocephalus melanocephalus) in Pico da Neblina National Park, Brazil , 1999, International Journal of Primatology.
[37] W. Kinzey,et al. Hardness as a basis of fruit choice in two sympatric primates. , 1990, American journal of physical anthropology.
[38] P. Garber,et al. NEW PERSPECTIVES ON THE PITHECIINES , 1996 .
[39] C. Lovejoy,et al. Neither chimpanzee nor human, Ardipithecus reveals the surprising ancestry of both , 2015, Proceedings of the National Academy of Sciences.
[40] L. O. Greenfield. Origin of the human canine: A new solution to an old enigma , 1992 .
[41] M. Spencer. Tooth-root form and function in platyrrhine seed-eaters. , 2003, American journal of physical anthropology.
[42] M. Teaford. Molar microwear and diet in the genus Cebus. , 1985, American journal of physical anthropology.
[43] R. Eaglen. Incisor size and diet revisited: the view from a platyrrhine perspective. , 1984, American journal of physical anthropology.
[44] A. Walker,et al. Quantitative differences in dental microwear between primate species with different diets and a comment on the presumed diet of Sivapithecus. , 1984, American journal of physical anthropology.
[45] Sebastian Stach,et al. Multifractal analysis of drop‐casted copper (II) tetrasulfophthalocyanine film surfaces on the indium tin oxide substrates , 2014 .
[46] M. Charpentier,et al. Canine tooth size and fitness in male mandrills (Mandrillus sphinx). , 2008, Journal of human evolution.
[47] K. Müller. Diet and Feeding Ecology of Masked Titis (Callicebus personatus) , 1996 .
[48] F. Grine,et al. Terrestrial foraging and dental microwear inPapio ursinus , 1999, Primates.
[49] M. Teaford,et al. In vivo and in vitro turnover in dental microwear. , 1989, American journal of physical anthropology.
[50] P. Lucas,et al. Mechanical defenses in leaves eaten by Costa Rican howling monkeys (Alouatta palliata). , 2006, American journal of physical anthropology.
[51] R. Kay,et al. Technical note: Dental microwear textures of "Phase I" and "Phase II" facets. , 2008, American journal of physical anthropology.
[52] Richard F. Kay,et al. Tooth form and diet in ateline and alouattine primates; reflections on the comparative method , 1993 .
[53] J. Meullenet,et al. Technical note: An in vitro study of dental microwear formation using the BITE Master II chewing machine. , 2015, American journal of physical anthropology.
[54] A. González-Zamora,et al. Diet of spider monkeys (Ateles geoffroyi) in Mesoamerica: current knowledge and future directions , 2009, American journal of primatology.
[55] M. Norconk,et al. Physical Properties of Fruit and Seeds Ingested by Primate Seed Predators with Emphasis on Sakis and Bearded Sakis , 2011, Anatomical record.
[56] M. Norconk,et al. Variation on Frugivory: The Diet of Venezuelan White-Faced Sakis , 2004, International Journal of Primatology.
[57] W. Kinzey. 5 – Diet and Feeding Behaviour of Callicebus torquatus , 1977 .
[58] A. Ryan. Anterior dental microwear and its relationship to diet and feeding behavior in three african primates (Pan troglodytes troglodytes, Gorilla gorilla gorilla andPapio hamadryas) , 1981, Primates.
[59] D. Johanson,et al. Anterior dental microwear in Australopithecus afarensis: comparisons with human and nonhuman primates , 1989 .
[60] J. Kelley. Incisor microwear and diet in three species of Colobus. , 1990, Folia primatologica; international journal of primatology.
[61] M. Norconk. Seasonal Variation in the Diets of White-Faced and Bearded Sakis ( Pithecia pithecia and Chiropotes satanas ) in Guri Lake, Venezuela , 1996 .
[62] C. Lovejoy,et al. Paleobiological Implications of the Ardipithecus ramidus Dentition , 2009, Science.
[63] D. Lindenmayer,et al. Diet and Feeding Ecology of Ateles chamek in a Bolivian Semihumid Forest: The Importance of Ficus as a Staple Food Resource , 2008, International Journal of Primatology.
[64] R. Mittermeier,et al. Preliminary observations on habitat utilization and diet in eight Surinam Monkeys. , 1981, Folia primatologica; international journal of primatology.
[65] R. Happel. Ecology of Pithecia hirsuta in Peru , 1982 .
[66] C. Vinyard,et al. Mechanical and Nutritional Properties of Food as Factors in Platyrrhine Dietary Adaptations , 2009 .
[67] P. Puech,et al. Maxillary canine microwear in Dryopithecus from Spain. , 1989, American journal of physical anthropology.
[68] Peter S. Ungar,et al. Dental microwear texture and anthropoid diets. , 2012, American journal of physical anthropology.
[69] W. Kinzey. Canine teeth of the monkey,Callicebus moloch: Lack of sexual dimorphism , 1972, Primates.
[70] C. Janson,et al. Pithecia pithecia's behavioral response to decreasing fruit abundance , 2006, American journal of primatology.
[71] C. Peres. Diet and feeding ecology of gray woolly monkeys (lagothrix lagotricha cana) in Central Amazonia: Comparisons with other Atelines , 1994, International Journal of Primatology.
[72] L. O. Greenfield. A nonadaptive dental trait , 1992, International Journal of Primatology.
[73] P. Ungar. Tooth form and function: insights into adaptation through the analysis of dental microwear. , 2009, Frontiers of oral biology.
[74] A. Walker,et al. Inferences from quantitative analysis of dental microwear. , 1989, Folia primatologica; international journal of primatology.
[75] Lawrence B. Martin,et al. Enamel thickness and microstructure in pitheciin primates, with comments on dietary adaptations of the middle Miocene hominoid Kenyapithecus. , 2003, Journal of human evolution.
[76] J. Galbany,et al. Comparative analysis of dental enamel polyvinylsiloxane impression and polyurethane casting methods for SEM research , 2006, Microscopy research and technique.
[77] J. Dew. Foraging, Food Choice, and Food Processing by Sympatric Ripe-Fruit Specialists: Lagothrix lagotricha poeppigii and Ateles belzebuth belzebuth , 2005, International Journal of Primatology.
[78] K. Glander,et al. DENTAL MICROWEAR AND DIET IN A WILD POPULATION OF MANTLED HOWLING MONKEYS (Alouatta palliata) , 1996 .
[79] F. Anapol,et al. Morphological adaptation to diet in platyrrhine primates. , 1994, American journal of physical anthropology.
[80] W. Kinzey. Dietary and dental adaptations in the Pitheciinae. , 1992, American journal of physical anthropology.
[81] W. Kinzey,et al. Physical and chemical properties of fruit and seeds eaten byPithecia andChiropotes in Surinam and Venezuela , 1993, International Journal of Primatology.
[82] C. Lovejoy,et al. Asa Issie, Aramis and the origin of Australopithecus , 2006, Nature.
[83] C. Jolly,et al. Dental microwear in anubis and hybrid baboons (Papio hamadryas, sensu lato) living in Awash National Park, Ethiopia. , 2004, American journal of physical anthropology.
[84] D. R. Swindler. Primate Dentition: Taxonomic index , 2002 .
[85] M. Teaford,et al. Seasonal or ecological differences in diet and molar microwear in Cebus nigrivittatus. , 1989, American journal of physical anthropology.
[86] C. Chapman. Flexibility in Diets of Three Species of Costa Rican Primates , 1987 .
[87] Saki Monkeys Pithecia. Notes on the Ecology of Buffy Saki Monkeys ( Pithecia albicans , Gray 1860 ) : A Canopy Seed-Predator , 2005 .
[88] R. Kay,et al. Sexual selection and canine dimorphism in New World monkeys. , 1988, American journal of physical anthropology.
[89] P. Walker. Wear striations on the incisors of ceropithecid monkeys as an index of diet and habitat preference. , 1976, American journal of physical anthropology.
[90] J. Plavcan,et al. Sexual Size Dimorphism, Canine Dimorphism, and Male-Male Competition in Primates , 2012, Human nature.
[91] B. Benefit,et al. On the Relationships and Adaptations of Kenyapithecus, a Large-Bodied Hominoid from the Middle Miocene of Eastern Africa , 1997 .
[92] Engin Ozcivici,et al. Craniofacial biomechanics and functional and dietary inferences in hominin paleontology. , 2010, Journal of human evolution.
[93] P. Ungar. Incisor microwear and feeding behavior in Alouatta seniculus and Cebus olivaceus , 1990, American journal of primatology.
[94] M. Teaford. Theropithecus: Dental microwear and diet in extant and extinct Theropithecus : preliminary analyses , 1993 .
[95] J. Fleagle,et al. Diet of the northern bearded saki (Chiropotes satanas chiropotes): A neotropical seed predator , 1988, American journal of primatology.
[96] P. Puech,et al. Dental microwear and mechanisms in early hominids from Laetoli and Hadar. , 1984, American journal of physical anthropology.
[97] Peter S Ungar,et al. Dental microwear texture analysis: technical considerations. , 2006, Journal of human evolution.
[98] C. Ruff,et al. Canine size, shape, and bending strength in primates and carnivores. , 2008, American journal of physical anthropology.
[99] P. Stevenson,et al. A Multi-Forest Comparison of Dietary Preferences and Seed Dispersal by Ateles spp , 2005, International Journal of Primatology.
[100] W. Kinzey,et al. Seed predation by monkeys and macaws in eastern Venezuela: Preliminary findings , 1997, Primates.
[101] D. Lindenmayer,et al. Nutritional Ecology of Ateles chamek in lowland Bolivia: How Macronutrient Balancing Influences Food Choices , 2009, International Journal of Primatology.
[102] M. Ryan. The Reproductive Behavior of the Bullfrog (Rana catesbeiana) , 1980 .
[103] J. Plavcan,et al. Adult Female Cercopithecus diana Employ Canine Teeth to Kill Another Adult Female C. diana , 2002, International journal of primatology.
[104] C. Blondel,et al. Tooth microwear pattern in roe deer (Capreolus capreolus L.) from Chizé (Western France) and relation to food composition , 2004 .
[105] R. Shapley,et al. Diet, Habitat Selection and Natural History of Cacajao melanocephalus ouakary in Jaú National Park, Brazil1 , 2005, International Journal of Primatology.
[106] Mark A. Purnell,et al. Accuracy and Precision of Silicon Based Impression Media for Quantitative Areal Texture Analysis , 2015, Scientific Reports.
[107] P. Ungar,et al. Incisor microwear textures of five bioarcheological groups , 2010 .
[108] M. Clauss,et al. Dietary Abrasiveness Is Associated with Variability of Microwear and Dental Surface Texture in Rabbits , 2013, PloS one.
[109] A. Walker. Mechanisms of honing in the male baboon canine. , 1984, American journal of physical anthropology.
[110] H. Schneider,et al. The systematics and evolution of New World primates - A review. , 2015, Molecular phylogenetics and evolution.
[111] P. Ungar. Fruit preferences of four sympatric primate species at Ketambe, northern Sumatra, Indonesia , 1995, International Journal of Primatology.
[112] A. Schwope,et al. Corrigendum: Worldwide variations in artificial skyglow , 2015, Scientific Reports.
[113] M F Teaford,et al. Live primates and dental replication: new problems and new techniques. , 1989, American journal of physical anthropology.