Search results for "Temnospondyli"

showing 10 items of 22 documents

A large temnospondyl humerus from the Rhaetian (Late Triassic) of Bonenburg (Westphalia, Germany) and its implications for temnospondyl extinction

2018

Temnospondyls are a group of basal tetrapods that existed from the Early Carboniferous to the Early Cretaceous. They were characteristic members of Permian and Triassic continental faunas around the globe. Only one clade, the Brachyopoidea (Brachyopidae and Chigutisauridae), is found as relics in the Jurassic of eastern Asia and the Cretaceous of Australia. The other Late Triassic clades, such as Plagiosauridae, Metoposauridae, and Cyclotsauridae, are generally believed to have gone extinct gradually before the end of the Triassic and putative Rhaetian records are stratigraphically poorly constrained. Temnospondyl humeri all show a similar morphological pattern, being stout, short, with wid…

010506 paleontologyFormación ExterbiologyPermianStratigraphyPaleohistologyGeologyBrachyopoideaCyclotosaurusChigutisauridae010502 geochemistry & geophysicsbiology.organism_classification01 natural sciencesCretaceousBrachyopidaePaleontologyTemnospondyliMetoposauridaeCarboniferousCyclotosaurusRhaetic bonebedGeology0105 earth and related environmental sciencesJournal of Iberian Geology
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Morphology and preliminary biomechanical interpretation of mandibular sutures in Metoposaurus krasiejowensis (Temnospondyli, Stereospondyli) from the…

2019

Altres ajuts: CERCA Programme/Generalitat de Catalunya The morphology of the mandibular sutures in the Late Triassic temnospondyl Metoposaurus krasiejowensis has been examined in order to determine their role in mandible biomechanics. Until now, no histological studies of mandibular sutures in extinct vertebrates were performed, in contrast to cranial sutures. As a consequence, mandibular suture interpretations herein are based mainly on comparisons with previous studies of cranial sutures and with 3D cranial finite element analysis of this species. A total of 32 standard thin sections were studied under standard petrographic microscope observations in order to differentiate the morphology …

010506 paleontologySymphysisStratigraphyMandíbulaStereospondyliMandibleMetoposaurus010502 geochemistry & geophysics01 natural sciencesTongueTemnospondyliMetoposaurusmedicineBiomechanics0105 earth and related environmental sciencesFibrous jointbiologySuturesTongue and grooveMandibleTemnospondyliGeologyAnatomybiology.organism_classificationSuturasmedicine.anatomical_structure[SDU.STU.PG]Sciences of the Universe [physics]/Earth Sciences/PaleontologyBiomecánicaGeology
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Feeding biomechanics of Late Triassic metoposaurids (Amphibia: Temnospondyli): a 3D finite element analysis approach

2017

The Late Triassic freshwater ecosystems were occupied by different tetrapod groups including large-sized anamniotes, such as metoposaurids. Most members of this group of temnospondyls acquired gigantic sizes (up to 5 m long) with a nearly worldwide distribution. The paleoecology of metoposaurids is controversial; they have been historically considered passive, bottom-dwelling animals, waiting for prey on the bottom of rivers and lakes, or they have been suggested to be active mid-water feeders. The present study aims to expand upon the paleoecological interpretations of these animals using 3D finite element analyses (FEA). Skulls from two taxa, Metoposaurus krasiejowensis, a gigantic taxon …

0106 biological sciences010506 paleontologyHistologyFinite Element AnalysisMetoposaurus010603 evolutionary biology01 natural sciencesFreshwater ecosystemBite ForcePredationAmphibiansTetrapod (structure)AnimalsMolecular BiologyEcology Evolution Behavior and Systematics0105 earth and related environmental sciencesApex predatorbiologyFossilsEcologySkullTemnospondyliOriginal ArticlesFeeding BehaviorCell Biologybiology.organism_classificationBiological EvolutionBiomechanical PhenomenaTaxonApachesaurus; ecomorphology; Late Triassic; Metoposaurus; paleoecologyPaleoecologyAnatomyDevelopmental BiologyJournal of Anatomy
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Variability of growth pattern observed in Metoposaurus krasiejowensis humeri and its biological meaning

2017

Purpose Histological studies on temnospondyl amphibian bones remain rare. A systematic revision of the histology was applied for the purpose of testing the histovariability in the humeri and becoming new information about the growth pattern. Methods The present study includes 12 humeri of Metoposaurus krasiejowensis, which originate from the Late Triassic clay pit near Krasiejo´w, southwestern Poland. The specimens were scanned with a microCT and the histological thin-sections have been obtained with the standard petrographic method. Results The evaluation of the studied bones shows a uniform growth series resulting in one morphotype. Strikingly, the histological analysis reveals a greater …

0106 biological sciences010506 paleontologyStratigraphyGeologyHistologyAnatomyBiologyMetoposaurusbiology.organism_classification010603 evolutionary biology01 natural sciencesBone remodelingSexual dimorphismMetoposaurus krasiejowensis Temnospondyli Krasiejo´w Bone histology Humeri Micro-CT0105 earth and related environmental sciencesJournal of Iberian Geology
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Cranial bone histology of Metoposaurus krasiejowensis (Amphibia, Temnospondyli) from the Late Triassic of Poland

2016

In this study, 21 skull bones ofMetoposaurus krasiejowensisfrom the Late Triassic of Poland were investigated histologically. Dermal bones show a diploë structure, with an ornamented external surface. The ridges consist of mostly well vascularized parallel-fibered bone; the valleys are built of an avascular layer of lamellar bone. The thick middle region consists of cancellous bone, with varying porosity. The thin and less vascularized internal cortex consists of parallel-fibered bone. The numerous Sharpey’s fibers and ISF are present in all bones. The cyclicity of growth is manifested as an alternation of thick, avascular annuli and high vascularized zones as well as a sequence of resting …

0106 biological sciences010506 paleontologylcsh:MedicineMetoposaurus010603 evolutionary biology01 natural sciencesGeneral Biochemistry Genetics and Molecular BiologyCondylemedicineEndochondral ossification0105 earth and related environmental sciencesbiologyOssificationDermal bonesGeneral NeuroscienceSkulllcsh:RTemnospondyliGeneral MedicineAnatomybiology.organism_classificationMicroanatomySkullmedicine.anatomical_structureGrowth patternmedicine.symptomGeneral Agricultural and Biological SciencesCancellous boneVertebral columnPeerJ
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Cranial suture biomechanics inMetoposaurus krasiejowensis(Temnospondyli, Stereospondyli) from the upper Triassic of Poland

2019

Cranial sutures connect adjacent bones of the skull and play an important role in the absorption of stresses that may occur during different activities. The Late Triassic temnospondyl amphibian Metoposaurus krasiejowensis has been extensively studied over the years in terms of skull biomechanics, but without a detailed description of the function of cranial sutures. In the present study, 34 thin sections of cranial sutures were examined in order to determine their histovariability and interpret their biomechanical role in the skull. The histological model was compared with three-dimensional-finite element analysis (FEA) simulations of the skull under bilateral and lateral biting as well as …

0106 biological sciences0301 basic medicineStereospondylifinite element analysisBiologyMetoposaurus010603 evolutionary biology01 natural sciencesdermal bonesAmphibianshistology03 medical and health sciencesmedicineAnimalsCompression (geology)Fibrous jointSkull roofFossilsSkullTemnospondyliCranial SuturesAnatomypalaeoecologybiology.organism_classificationBiomechanical PhenomenaSkull030104 developmental biologymedicine.anatomical_structureBitingAnimal Science and ZoologyPolandDevelopmental BiologyJournal of Morphology
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Climatic influence on the growth pattern ofPanthasaurus maleriensisfrom the Late Triassic of India deduced from paleohistology

2020

Metoposaurids are representatives of the extinct amphibian clade Temnospondyli, found on almost every continent exclusively in the Late Triassic deposits. Osteohistologically, it is one of the best-known temnospondyl groups, analyzed with a wide spectrum of methods, such as morphology, morphometry, bone histology or computed modelling. The least known member of Metoposauridae isPanthasaurus maleriensisfrom the Pranhita-Godavari basin in Central India, being geographically the most southern record of this family. For the first time the bone histology of this taxon was studied with a focus on the intraspecific variability of the histological framework and the relationship between the observed…

0106 biological sciencesAmphibian010506 paleontologyHistologyOntogenylcsh:MedicineMetoposaurus010603 evolutionary biology01 natural sciencesGeneral Biochemistry Genetics and Molecular BiologyIntraspecific competitionPaleontologyTemnospondyliMetoposauridaebiology.animalCortex (anatomy)medicine0105 earth and related environmental sciencesPanthasaurus maleriensisHistovariabilitybiologyLate triassicGeneral Neurosciencelcsh:RPaleohistologyPaleontologyTemnospondyliClimatic influenceGeneral Medicinebiology.organism_classificationTaxonmedicine.anatomical_structureGeneral Agricultural and Biological SciencesZoologyPeerJ
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Ornamentation of dermal bones of Metoposaurus krasiejowensis and its ecological implications

2018

Background Amphibians are animals strongly dependent on environmental conditions, like temperature, water accessibility, and the trophic state of the reservoirs. Thus, they can be used in modern palaeoenvironmental analysis, reflecting ecological condition of the biotope. Methods To analyse the observed diversity in the temnospondyl Metoposaurus krasiejowensis from Late Triassic deposits in Krasiejów (Opole Voivodeship, Poland), the characteristics of the ornamentation (such as grooves, ridges, tubercules) of 25 clavicles and 13 skulls were observed on macro- and microscales, including the use of a scanning electron microscope for high magnification. The different ornamentation patterns fo…

0106 biological sciencesAmphibianBiotope010506 paleontologyPopulationlcsh:MedicineSculptureMetoposaurus010603 evolutionary biology01 natural sciencesGeneral Biochemistry Genetics and Molecular BiologyTemnospondylibiology.animaleducationNeoteny0105 earth and related environmental sciencesTrophic leveleducation.field_of_studybiologyEcologyGeneral Neurosciencelcsh:RSkullTemnospondyliPalaeoecologyFossilGeneral MedicineAmphibianbiology.organism_classificationClavicleSexual dimorphismGeneral Agricultural and Biological SciencesPeerJ
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Merging cranial histology and 3D-computational biomechanics : A review of the feeding ecology of a Late Triassic temnospondyl amphibian

2021

Finite Element Analysis (FEA) is a useful method for understanding form and function. However, modelling of fossil taxa invariably involves assumptions as a result of preservation-induced loss of information in the fossil record. To test the validity of predictions from FEA, given such assumptions, these results could be compared to independent lines of evidence for cranial mechanics. In the present study a new concept of using bone microstructure to predict stress distribution in the skull during feeding is put forward and a correlation between bone microstructure and results of computational biomechanics (FEA) is carried out. The bony framework is a product of biological optimisation; bon…

0106 biological sciencesAmphibianskull010506 paleontologyHistologyForaginglcsh:MedicineBioengineeringMetoposaurus010603 evolutionary biology01 natural sciencesGeneral Biochemistry Genetics and Molecular BiologyPaleontologyTemnospondylibiology.animalDermal boneMetoposaurusmedicinefeeding strategyFEA0105 earth and related environmental sciencesDermal bonebiologyGeneral Neurosciencelcsh:RSkullMode (statistics)PaleontologyTemnospondyliGeneral Medicinedermal bonebiology.organism_classificationBone histologySkullbone histologymedicine.anatomical_structureBitingGeneral Agricultural and Biological SciencesFeeding strategyGeology
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Pentadactyl manus of the Metoposaurus krasiejowensis from the Late Triassic of Poland, the first record of pentadactyly among Temnospondyli

2020

Abstract Temnospondyli are commonly believed to have possessed four digits in the manus and five in the pes. However, actual finds of articulated autopodia are extremely rare. Therefore, an articulated, slightly incomplete forelimb skeleton with preserved manus of Metoposaurus krasiejowensis from the Late Triassic of Poland is important in providing new details about the structure and ossification sequence in the temnospondyl limb. The most important observation is the presence of five metacarpals in this specimen. This allows reconstructing the manus as pentadactyl. The number of phalanges and the distribution of distal articulation facets allow reconstruction of the digit formula as (2?)‐…

0301 basic medicineHistologyManusMetoposaurusAmphibians03 medical and health sciences0302 clinical medicinemanusTemnospondyliMetoposaurusForelimbmedicineAnimalsdigitsMolecular BiologyEcology Evolution Behavior and SystematicsPhylogenybiologyOssificationFossilsTemnospondyliCell BiologyAnatomyPhalanxbiology.organism_classificationOriginal PapersBiological EvolutionNumerical digitossification030104 developmental biologyGeographyOriginal ArticlePolandAnatomymedicine.symptom030217 neurology & neurosurgeryDevelopmental BiologyJournal of Anatomy
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