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Data from: Water vascular system architecture in an Ordovician ophiuroid
负责人:
关键词:
Water vascular system;Protasterina flexuosa;exceptional preservation;Ordovician;Ophiuroidea
DOI:
doi:10.5061/dryad.30k44
摘要:
ophiuroids, revealing a previously unknown Palaeozoic configuration.
Data from: Euconodont hard tissue: preservation patterns of the basal body
负责人:
关键词:
taphonomy;Devonian;conodonts;lamellar growth;Cambrian to Triassic;basal tissue;histochemical composition
DOI:
doi:10.5061/dryad.1n35197
摘要:
rly Palaeozoic and found exclusively in siliciclastic deposits (with the exception of spherulitic tissue). Although the stratigraphic record of basal tissue spa
Data from: Jaw elements in Plumulites bengtsoni confirm that machaeridians are extinct armoured scaleworms
负责人:
Parry, Luke
关键词:
Machaeridia Aphroditiformia Annelida Ordovician
DOI:
doi:10.5061/dryad.294g179
摘要:
Machaeridians are Palaeozoic animals that are dorsally armoured with serialized, imbricating shell plates that cover or enclose the body. Prior
Data from: The fossil Osmundales (Royal Ferns)—a phylogenetic network analysis, revised taxonomy, and evolutionary classification of anatomical
负责人:
关键词:
Mesozoic;Plenasium vachelii;Millerocaulis guptai;Millerocaulis amarjolensis;Grammatocaulis donponii;Millerocaulis livingstonensis;Osmundoideae;Plenasium arnoldii;Millerocaulis richmondii;Itopsidema vancleavei;Thamnopteris diploxylon;Grammatopteris freitasii;Claytosmunda plumites;Thamnopteris kazanensis;Osmundacaulis whittlesii;Claytosmunda wangii;Osmundacaulis griggsii;Tiania yunnanense;Osmundacaulis skidegatensis;Millerocaulis dunlopii;Todea barbara;Millerocaulis websteri;Millerocaulis indicus;Thamnopteris gwynne-vaughani;Donwelliacaulis chlouberii;Claytosmunda nathorstii;Claytosmunda johnstonii;Evolutionary classification;Osmundastrum cinnamomeum;Jurassic;Thamnopteris javorskii;Osmundacaulis atherstonei;Millerocaulis tuhajkulensis;Plenasium dakotense;Phanerozoic;Millerocaulis hebeiensis;Osmundacaulis tehuelchensis;Neogene;Millerocaulis stipabonettiorum;Thamnopteroideae;Grammatopteris baldaufii;taxonomy;Palaeogene;Guairea millerii;Osmunda japonica;Plenasium dowkeri;Osmundacaulis richmondii;Plenasium banksiifolium;Shuichengella primitiva;Millerocaulis zamunerae;Palaeontology;Osmunda iliaensis;Thamnopteris schlechtendalii;Claytosmunda tekelili;Osmundacaulis janiae;Thamnopteris gracilis;Millerocaulis santaecrucis;Osmunda regalis;Plenasium banksiifolia;Thamnopteris uralica;Millerocaulis aucklandicus;Osmundacaulis tidwellii;Guairea braziliensis;Zhongmingella plenasioides;Millerocaulis estipularis;Millerocaulis kolbei;Plenasium nebraskense;Osmundacaulis hoskingii;Claytosmunda wehrii;Osmunda javanica;Plenasium bromeliifolia;Osmundaceae;Plenasium bransonii;Thamnopteris kidstonii;Bathypteris rhomboidea;Osmundacaulis tasmanensis;palaeobotany;Claytosmunda claytoniana;Millerocaulis indentatus;Todeinae;Claytosmunda embreei;Osmundacaulis bamfordae;Todea tidwellii;Filicopsida;Permian;Osmundinae;Leptopteris hymenophylloides;Osmundastrum pulchellum;Thamnopteris splendida;phylogeny;Millerocaulis macromedullosus;systematics;Triassic;Leptopteris fraseri;Osmunda pluma;Osmundacaulis lemonii;Plenasium crossii;Osmundeae;Osmundacaulis jonesii;Cenozoic;Millerocaulis patagonicus;Millerocaulis sahnii;Osmundales;Millerocaulis rajmahalensis;Plenasium chandleri;Millerocaulis gibbianus;Plenasium bromeliifolium;Claytosmunda kidstoni;Millerocaulis preosmundus;Itopsidemoideae;Millerocaulis sinicus;Osmunda lancea;Shuichengelloideae;anatomy;Osmundacaulis nerii;Palaeosmunda williamsii;Osmundacaulis natalensis;Guaireaceae;Palaeozoic;Osmundacaulis andrewii;Millerocaulis limewoodensis;Guairea carnierii;Millerocaulis swanensis;Osmundites aucklandicus;Millerocaulis australis;Millerocaulis juandahensis;Anomorrhoea fischeri;Leptopteris wilkesiana;Plenasium moorei;Guaireoideae;Rastropteris pinquanensis;Claytosmunda beardmorensis;Todea papuana;Millerocaulis chubutensis;Leptopteris superba;Network analysis;Millerocaulis woolfei;Palaeosmunda playfordii;Lunea jonesii;Osmundacaulis pruchnickii;Chasmatopteris principalis;Millerocaulis lutziae;Millerocaulis spinksii;Cretaceous;Millerocaulis broganii;Osmunda oregonensis;Claytosmunda liaoningensis;Plenasium burgii;Osmundastrum precinnamomeum;Leptosporangiatae;Claytosmunda chengii;Osmunda shimokawaensis;Millerocaulis wadei;Millerocaulis herbstii;Osmundacaulis zululandensis;Millerocaulis donponii;Millerocaulis wrightii;Grammatopteris rigollotii
DOI:
doi:10.5061/dryad.270gs
摘要:
The Osmundales (Royal Fern order) originated in the late Paleozoic and is the most ancient surviving lineage of leptosporangiate ferns. In contrast
Data from: The first half of tetrapod evolution, sampling proxies, and fossil record quality
负责人:
关键词:
Paleozoic;Jurassic;Mesozoic;Amniota;Devonian;Triassic;Permian;Carboniferous;diversification;Tetrapoda
DOI:
doi:10.5061/dryad.44b50
摘要:
e is limited evidence for covariation between the tetrapod palaeodiversity time series and other putative sampling metrics, such as specimen completeness, numb
Data from: A Palaeozoic stem-group to mite harvestmen revealed through integration of phylogenetics and development
负责人:
关键词:
Arachnids;Hastocularis argus;Opiliones;Carboniferous;microtomography;Late Stephanian
DOI:
doi:10.5061/dryad.r32p3
摘要:
Successfully placing fossils in phylogenies is integral to understanding the tree of life. Crown-group Paleozoic members of the arachnid order
Data from: Early phylogeny of crinoids within the pelmatozoan clade
负责人:
关键词:
Pelmatozoa;Camerata;Phylogenetic methods;Disparida;Echinodermata;Protocrinoida;Cladida;Ordovician;phylogeny;Crinoidea;Stratigraphic congruence
DOI:
doi:10.5061/dryad.48h1q
摘要:
hypothesis derived using parsimony methods. This study confirms the traditionally recognized lineages of Palaeozoic crinoids and provides new inf
Data from: Identifying heterogeneity in rates of morphological evolution: discrete character change in the evolution of lungfish (Sarcopterygii
负责人:
关键词:
Macroevolution;Mesozoic;Palaeozoic;Morphological Evolution;phylogenetics;Dipnoi;Cenozoic;speciation;fossils;paleobiology
DOI:
doi:10.5061/dryad.pg46f
摘要:
approach, using discrete characters and three statistical tests to determine points on a cladogram (branches or entire clades) that are characterized by signific
Data from: Patterns of ecological diversification in thelodonts
负责人:
关键词:
dispersal events;Ecological diversification;Habitats;Early vertebrates;Thelodonti;Lifestyles
DOI:
doi:10.5061/dryad.n6k72
摘要:
groups of vertebrates and longest lasting of the Palaeozoic agnathans in the fossil record. Parsimony and maximum-likelihood methods are use

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