Search results for "Dental wear"

showing 10 items of 17 documents

Dental wear at macro- and microscopic scale in rabbits fed diets of different abrasiveness: A pilot investigation

2020

To differentiate the effects of internal and external abrasives on tooth wear, we performed a controlled feeding experiment in rabbits fed diets of varying phytolith content as an internal abrasive and with addition of sand as an external abrasive. 13 rabbits were each fed one of the following four pelleted diets with different abrasive characteristics (no phytoliths: lucerne L; phytoliths: grass G; more phytoliths: grass and rice hulls GR; phytoliths plus external abrasives: grass, rice hulls and sand GRS) for two weeks. At the end the feeding period, three tooth wear proxies were applied to quantify wear on the cheek teeth at macroscopic and microscopic wear scales: CT scans were obtained…

010506 paleontology10253 Department of Small AnimalsEvolutionDental Wear1904 Earth-Surface Processes010502 geochemistry & geophysicsOceanography01 natural sciencesMesowearAnimal sciencestomatognathic systemBehavior and SystematicsCheek teeth1910 OceanographyPremolarmedicineEcology Evolution Behavior and Systematics0105 earth and related environmental sciencesEarth-Surface Processes2. Zero hunger630 AgricultureEcologyPalaeontologyAbrasivePaleontologyEarthRice hulls1911 Paleontologystomatognathic diseasesmedicine.anatomical_structure1105 Ecology Evolution Behavior and SystematicsSurface ProcessesPhytolithTooth wear570 Life sciences; biologyGeologyPalaeogeography, Palaeoclimatology, Palaeoecology
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Dental microwear texture analysis on extant and extinct sharks : Ante- or post-mortem tooth wear?

2020

Sharks are apex-predators that play an important role in past and present aquatic food webs. However, their diet - especially in extinct species - is often not well constrained. Dental microwear texture analysis (DMTA) has been successfully applied to reconstruct diet and feeding behaviours of different aquatic and terrestrial vertebrates. However, unlike in mammals, food-to-tooth contact in sharks is rather limited because only larger prey is manipulated before swallowing. Together with a fast tooth replacement rate, this reduces wear on individual teeth. Here, we present an explorative study of dental microwear texture on extant and extinct sharks to test whether ante-mortem wear is relat…

010506 paleontologyDental WearZoologyExtinct specieschemical and pharmacologic phenomenaShark teeth010502 geochemistry & geophysicsOceanography01 natural sciencesTexture (geology)DMTAZoologiPredationExtant taxonstomatognathic system14. Life underwaterEcology Evolution Behavior and Systematics0105 earth and related environmental sciencesEarth-Surface ProcessesbiologyTumbling experimentPaleontologyGeologybiology.organism_classificationstomatognathic diseasesHabitatTooth wearCarcharhinusGeologiAlterationhuman activitiesZoologyGeologyElasmobranchii
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Shape, size, and quantity of ingested external abrasives influence dental microwear texture formation in guinea pigs

2020

Food processing wears down teeth, thus affecting tooth functionality and evolutionary success. Other than intrinsic silica phytoliths, extrinsic mineral dust/grit adhering to plants causes tooth wear in mammalian herbivores. Dental microwear texture analysis (DMTA) is widely applied to infer diet from microscopic dental wear traces. The relationship between external abrasives and dental microwear texture (DMT) formation remains elusive. Feeding experiments with sheep have shown negligible effects of dust-laden grass and browse, suggesting that intrinsic properties of plants are more important. Here, we explore the effect of clay- to sand-sized mineral abrasives (quartz, volcanic ash, loess,…

0106 biological sciences10253 Department of Small AnimalsGuinea PigsDental WearMineral dustdiet reconstruction010603 evolutionary biology01 natural sciencesTexture (geology)Texture formation010104 statistics & probabilitychemistry.chemical_compoundstomatognathic systemAnimalsHerbivoryParticle Size0101 mathematicsQuartzgrit2. Zero hunger1000 MultidisciplinaryMultidisciplinary630 AgricultureMetallurgyPlantsBiological SciencesAnimal FeedSilicateDietTooth AbrasionchemistryTooth weartooth wear570 Life sciences; biologyParticle sizedustfeeding experimentProceedings of the National Academy of Sciences
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Dust and grit matter: abrasives of different size lead to opposing dental microwear textures in experimentally fed sheep (Ovis aries)

2020

ABSTRACT External abrasives ingested along with the herbivore diet are considered main contributors to dental wear, though how the different sizes and concentrations of these abrasives influence wear remains unclear. Dental microwear texture analysis (DMTA) is an established method for dietary reconstruction which describes a tooth9s surface topography on a micrometre scale. The method has yielded conflicting results as to the effect of external abrasives. In the present study, a feeding experiment was performed on sheep (Ovis aries) fed seven diets of different abrasiveness. Our aim was to discern the individual effects of size (4, 50 and 130 µm) and concentration (0%, 4% and 8% of dry mat…

0106 biological sciencesMolar010506 paleontology10253 Department of Small Animals1109 Insect SciencePhysiologyEvolutionRuminantDental WearAquatic Science010603 evolutionary biology01 natural sciencesTexture (geology)MicrotextureAnimal scienceBehavior and Systematics1312 Molecular BiologyAnimalsGritOvisMolecular BiologySheep DomesticEcology Evolution Behavior and Systematics0105 earth and related environmental sciencesFeeding experimentbiology630 Agriculture1104 Aquatic ScienceEcologyChemistryAbrasiveTooth wearDust1314 Physiologybiology.organism_classificationAbrasivesAnimal FeedDiet1105 Ecology Evolution Behavior and SystematicsTooth wearInsect Science570 Life sciences; biologyParticulate MatterAnimal Science and Zoology1103 Animal Science and Zoology
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The way wear goes: phytolith-based wear on the dentine–enamel system in guinea pigs (Cavia porcellus)

2019

The effect of phytoliths on tooth wear and function has been contested in studies of animal–plant interactions. For herbivores whose occlusal chewing surface consists of enamel ridges and dentine tissue, the phytoliths might particularly erode the softer dentine, exposing the enamel ridges to different occlusal forces and thus contributing to enamel wear. To test this hypothesis, we fed guinea pigs (Cavia porcellus; n = 36 in six groups) for threeweeks exclusively on dry or fresh forage of low(lucerne), moderate (fresh timothy grass) or very high (bamboo leaves) silica content representing corresponding levels of phytoliths. We quantified the effect of these treatments with measuremen…

0106 biological sciencesMolar10253 Department of Small AnimalsDentistry01 natural sciences2300 General Environmental ScienceLower body2400 General Immunology and MicrobiologyphytolithsGeneral Environmental Science2. Zero hunger630 AgricultureEcologybiologyEnamel paintOcclusal forcesGeneral Medicinemedicine.anatomical_structurePhytolithvisual_artvisual_art.visual_art_mediumGeneral Agricultural and Biological Sciences010506 paleontologygrowthGuinea PigsCaviaGenetics and Molecular Biology1100 General Agricultural and Biological Sciences010603 evolutionary biologyGeneral Biochemistry Genetics and Molecular Biologystomatognathic systemIncisor1300 General Biochemistry Genetics and Molecular BiologymedicineAnimalsHerbivoryDental Enamel0105 earth and related environmental sciencesGeneral Immunology and Microbiologybusiness.industrybiology.organism_classificationAnimal FeedMolarDietstomatognathic diseasesTooth wearplasticityGeneral BiochemistryDentin570 Life sciences; biologyMasticationTooth Weardental wearbusinessProceedings of the Royal Society B: Biological Sciences
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Dental wear proxy correlation in a long-term feeding experiment on sheep ( Ovis aries )

2021

Dietary reconstruction in vertebrates often relies on dental wear-based proxies. Although these proxies are widely applied, the contributions of physical and mechanical processes leading to meso- and microwear are still unclear. We tested their correlation using sheep ( Ovis aries , n = 39) fed diets of varying abrasiveness for 17 months as a model. Volumetric crown tissue loss, mesowear change and dental microwear texture analysis (DMTA) were all applied to the same teeth. We hereby correlate: (i) 46 DMTA parameters with each other, for the maxillary molars (M1, M2, M3), and the second mandibular molar (m2); (ii) 10 mesowear variables to each other and to DMTA for M1, M2, M3 and m2; and (…

0106 biological sciencesOrthodonticsMolar0303 health sciencesFuture studiesbiologyChemistryDental WearBiomedical EngineeringBiophysicsBioengineeringbiology.organism_classification010603 evolutionary biology01 natural sciencesBiochemistryMesowearBiomaterialsCorrelation03 medical and health sciencesstomatognathic systemProxy (statistics)Mandibular molarOvis030304 developmental biologyBiotechnologyJournal of The Royal Society Interface
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Modular Wear Facet Nomenclature for mammalian post-canine dentitions

2017

Dental wear facets on the occlusal surface of premolars and molars are traces of their main function, the mastication and therefore reflect masticatory movements and also paramasticatory (i.e. non-dietary use of teeth) behavior. Here we present the Modular Wear Facet Nomenclature applicable to most mammalian dentitions. Topographic positions of wear facets in relation to the major cusps and crests of the teeth are used to designate the areas of the occlusal surface the facets occupy (e.g. their mesial, distal, lingual, or buccal position). Previous published systems for labeling wear facets have been inconsistent with each other. Therefore, we provide a synoptic review of the most widely-us…

0106 biological sciencesOrthodonticsMolarmusculoskeletal diseases010506 paleontologyFacet (geometry)business.industryDental Wearmusculoskeletal system010603 evolutionary biology01 natural sciencesMasticatory forceantagonist ; crown surface ; dental wear ; functional units ; Occlusionstomatognathic diseasesstomatognathic systemOcclusal surfaceMedicineGeneral Agricultural and Biological SciencesbusinessMastication0105 earth and related environmental sciences
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Dental pulp calcifications in prehistoric and historical skeletal remains

2020

Abstract Background The prevalence of hard tissue formations in the dental pulp varies considerably. Beside ageing processes and irritations of the dental pulp, etiological associations with cardiovascular disease and dietary habits have been discussed, which are of particular research interest. The aim of this pilot study is to provide new insights on structural and etiological factors involved in the development of pulp calcifications by investigating skeletal remains from different (pre)historic periods. Methods The jaws of 46 skeletons excavated in central Germany, were examined for the presence of pulp stones using digital volume tomography (DVT). A total of 1122 teeth were examined wi…

0301 basic medicineMolarDental radiographyDental WearDentistryPilot Projects03 medical and health sciencesstomatognathic systemBioarchaeologymedicineAnimalsHumansPulp calcificationsDigital volume tomographyDental Pulpmedicine.diagnostic_testbusiness.industrySmall sampleX-Ray MicrotomographyGeneral MedicineCone-Beam Computed TomographyPulp stoneBody Remainsstomatognathic diseases030104 developmental biologyDental Pulp Calcification030101 anatomy & morphologyAnatomybusinessDevelopmental BiologyAnnals of Anatomy - Anatomischer Anzeiger
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Microwear textures associated with experimental near-natural diets suggest that seeds and hard insect body parts cause high enamel surface complexity…

2022

In mammals, complex dental microwear textures (DMT) representing differently sized and shaped enamel lesions overlaying each other have traditionally been associated with the seeds and kernels in frugivorous diets, as well as with sclerotized insect cuticles. Recently, this notion has been challenged by field observations as well as in vitro experimental data. It remains unclear to what extent each food item contributes to the complexity level and is reflected by the surface texture of the respective tooth position along the molar tooth row. To clarify the potential of seeds and other abrasive dietary items to cause complex microwear textures, we conducted a controlled feeding experiment wi…

10253 Department of Small AnimalsEvolutionF344/NDENTAL MICROWEARmechanical propertiesmicrowearRATShard-object feedingTEETHBehavior and Systematics550 Earth sciencesTHICKNESSRECONSTRUCTIONVeterinary SciencesEcology Evolution Behavior and SystematicsOCCLUSAL TOOTH WEAR630 AgricultureEcologyMECHANICAL-PROPERTIESPRIMATES550 GeowissenschaftenmaterialpropertiesADAPTATIONS570 Life sciences; biologydental wearMIOCENEFrontiers in Ecology and Evolution
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Post-mortem alteration of diet-related enamel surface textures through artificial biostratinomy: A tumbling experiment using mammal teeth

2019

In the fossil record, teeth are often all that remains of a fossil organism. Dental microwear texture analysis (DMTA) is a common proxy for diet using dental wear features at the μm-scale, enabling comparative and quantitative assessments of various feeding traits in extant and extinct species. In extinct species, original diet-related dental wear features may be overprinted by post-mortem alteration including fluvial transport. Here we experimentally investigate the effects of mechanical alteration on diet-related 3D enamel surface texture (3DST) patterns of different mammal teeth. Post canine teeth of Equus sp., Capreolus capreolus and Otomys sp. are tumbled in sediment-water suspensio…

Abrasion (dental)010506 paleontologyMammal teethDental wearMineralogy010502 geochemistry & geophysicsOceanography01 natural sciencesBiostratinomyBiostratinomyCapreolusstomatognathic systemSurface roughnessmedicineSurface textureEcology Evolution Behavior and Systematics0105 earth and related environmental sciencesEarth-Surface ProcessesDiagenetic alterationbiologyEnamel paintPaleontology15. Life on landbiology.organism_classificationmedicine.diseaseEquusGrain sizeOtomysMicrowearvisual_artvisual_art.visual_art_mediumGeology
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