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on ecosystem recovery after the end-Permian mass extinction
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Lower Triassic
DOI:
doi:10.5061/dryad.5mg73
摘要:
th of the end-Permian mass extinction. We present a systematic description and a quantitative paleoecological analysis of its benthic faunas in order to reconstruct benthic associati
Data from: An advanced shape-fitting algorithm applied to quadrupedal mammals: improving volumetric mass estimates
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关键词:
alpha shapes;body mass;volumetric;Megatherium americanum;fossil;Mammuthus primigenius;Pliocene;Pleistocene
DOI:
doi:10.5061/dryad.ps80f
摘要:
tes for body mass is therefore a necessary step in many palaeontological studies. Whilst early reconstructions of mass in extinct species relied upon isolated
Data from: Body mass estimates of an exceptionally complete Stegosaurus (Ornithischia: Thyreophora): comparing volumetric and linear bivariate mass
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关键词:
Jurassic;body mass;scaling equations;photogrammetry;Stegosaurus stenops;volumetric model
DOI:
doi:10.5061/dryad.2307m
摘要:
o close agreement. Our results raise concerns regarding the application of predictive equations to extinct taxa with no living analogues in terms of ove
Data from: Nature and timing of biotic recovery in Antarctic benthic marine ecosystems following the Cretaceous–Palaeogene mass extinction
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关键词:
Paleogene;?Jupiteria sp.;Solemya rossiana;Neilo casei;Eselaevitrigonia regina;Haustator? Sp.;Surobula nucleus;recovery;Thracia askinae;Austroaporrhais sp.;cf. Germopea n.sp;Cryptorhytis? phillippiana;\Saxolucina\ sp.;Periploma sp.cf n.sp Stilwell et al 2004;Austrosphaera bulloides;n.gen.? Polaris;mass extinction;\Cassidaria\ mirabilis;Taioma charcotiana;Modiolus pontotocensis;\Entolium\ cf. membranaceum;Euspira? sp.;Goniomya hyriiformis;Taioma sobrali;Panopea clausa;'Amberleya' spinigera;Periploma sp2? Offadesma like;Leptomaria cf. seymouriensis;Marshallaria' sp.;\Thyasira\ townsendi;Heteroterma sp.;Antarctica;Seymourtula antarctica;Pinna freneixae;Perissodonta austerocallosa;Oistotrigonia pygoscelium;Acesta webbi;Microfulgur binodosa;?Probuccinum palaiocostatum;Cucullaea antarctica;Cucullaea ellioti;Acteon (Tenuiacteon) antarctihadrum;Acesta shackletoni;Solemya ?n.sp.;Amauropsis? sp.;?Cosmasyrinx (Tholitoma) antarctigera;Paleopsephaea? nodoprosta;Cyclorismina\/Marwickia sp.;Leionucula suboblonga;Dozyia drygalskiana;Struthiochenopus hurleyi;Heteroterma? sp. 2;\Lucina\ scotti;N.gen woolfei;Volutomitra? antarctmella;Neilo gracilis;Neogastropod new genus B;Cylichnania sp.;\Vanikoropsis\ arktowskiana;Cretaceous;\Colus\ delrioae;?Pseudotylostoma pyrinota;Limatula n. sp. ?;Limopsis (Limopsis) antarctica;Lahillia larseni;Miomelon? sp.;Pycnodonte (Phygraea) vesicularis vesicularis;Phelopteria feldmanni
DOI:
doi:10.5061/dryad.v1265j8
摘要:
Taxonomic and ecological recovery from the Cretaceous-Paleogene (K–Pg) mass extinction 66 million years ago shaped the composition and struct
Data from: Evolutionary adaptation to aquatic lifestyle in extinct sloths can lead to systemic alteration of bone structure
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关键词:
physiological adjustment;Evolutionary adaptation;bone mass increase;turbinates;Phenotypic Plasticity;Thalassocnus;Miocene;Pliocene
DOI:
doi:10.5061/dryad.7gq2tb0
摘要:
e of individual life. Changes in bones also occur in evolution as functional adaptations to environment. In this study, we report on the evolution of bone mass
Data from: A shift in the long-term mode of foraminiferan size evolution caused by the end-Permian mass extinction
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关键词:
Macroevolution;Paleogene;Neogene;Mesozoic;Permian;extinction;Morphological Evolution;Foraminifera;Carboniferous;Cretaceous;fossils;Paleozoic;Jurassic;Devonian;Triassic;Phanerozoic;Cenozoic;paleobiology
DOI:
doi:10.5061/dryad.5pr86
摘要:
the selective elimination of fusulinids at the end of the Permian Period. These findings illustrate the potential for mass extinction to alter macroevoluti
Data from: Evolution of the locomotory system in eels (Teleostei: Elopomorpha)
负责人:
关键词:
Lebanon;locomotion;Fossil-Lagerstatten;bony tendons;musculotendinous system;Functional morphology;Elopomorpha;eels;Anguilliforms;habitat;Cenozoic;Late Cretaceous
DOI:
doi:10.5061/dryad.72403
摘要:
t environmental shifts were triggered by abiotic rather than biotic factors (e.g., K/P boundary mass extinction event).
Data from: The extinct, giant giraffid Sivatherium giganteum: skeletal reconstruction and body mass estimation
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关键词:
giraffid body mass photogrammetry scaling volumetric model
DOI:
doi:10.5061/dryad.83367
摘要:
Sivatherium giganteum is an extinct giraffid from the Plio–Pleistocene boundary of the Himalayan foothills. To date, there has been no rigorous
Data from: Flat latitudinal diversity gradient caused by the Permo-Triassic mass extinction
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关键词:
latitudinal diversity gradient;Biogeography;climate;dinosaurs;greenhouse;Early Triassic
DOI:
doi:10.5061/dryad.41ns1rn9z
摘要:
ng 52,318 occurrences of marine fossils to show that the shape of LDG changed greatly during the Permian-Triassic mass extinction from sh
Data from: Moorean and Tahitian Partula tree snail survival after a mass extinction: new genomic insights using museum specimens
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关键词:
Partula taeniata;Partula hyalina;ddRADseq;Partula clara
DOI:
doi:10.5061/dryad.gs0gv
摘要:
Natural history museum collections provide a biodiversity window into the past and are of particular importance to the study of extinction-impact

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