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1,183 results for “Skeleton”
Inflammatory Response After Muscle and Skeleton Trauma
ClinicalTrials.gov study NCT00710411. IPD Sharing: Not stated. Countries: 1. Publications: 4.
Randomized Comparison of Skeletonized Versus Pedicled Left Internal Thoracic Artery
ClinicalTrials.gov study NCT05931783. IPD Sharing: Not stated. Countries: 3. Publications: 2.
Data from: The Middle Triassic procolophonid Kapes bentoni: computed tomography of the skull and skeleton
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Data from: What North America’s skeleton crew of megafauna tells us about community disassembly
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Data from: Divergent evolutionary morphology of the axial skeleton as a potential key innovation in modern cetaceans
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Data from: A new ankylosaurine dinosaur from the Judith River Formation of Montana, USA, based on an exceptional skeleton with soft tissue preservation
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Data from: Incomplete convergence of gliding-mammal skeletons
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The ontogenetic pattern of neurocentral suture closure in the axial skeleton of Hyperodapedontinae (Archosauromorpha: Rhynchosauria) and its evolutionary implication
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Figure 1.26. Wyrex, BHI 6230 in One Hundred Years of Tyrannosaurus rex: The Skeletons
Figure 1.26. Wyrex, BHI 6230, excavation (A); skin impression (B); left carpals and metacarpals (C); right pes (D).
Figure 1.22. B in One Hundred Years of Tyrannosaurus rex: The Skeletons
Figure 1.22. B-rex, MOR 1125, cast of skull on display at the Museum of the Rockies. Photo by Peter Larson.
Figure 1.12 in One Hundred Years of Tyrannosaurus rex: The Skeletons
Figure 1.12. Samson (Z-rex); anterior view of skull block (A); side view of skull (B). Photos courtesy Dale Russell.
Figure 1.10 in One Hundred Years of Tyrannosaurus rex: The Skeletons
Figure 1.10. Sue FMNH PR2081, during excavation (A) skull during preparation with Terry Wentz (B); on display at the Field Museum (C). Photos: (A, C) Peter Larson; (B) Ed Gerken.
Figure 1.11. Stan BHI 3033 in One Hundred Years of Tyrannosaurus rex: The Skeletons
Figure 1.11. Stan BHI 3033, during excavation (A); disarticulated skull with Terry Wentz (B); on display at Black Hills Institute, with Brenda Larson (C). Photos: (A, B) Ed Gerken; (C) Larry Shaffer.
Figure 1.1. Site map for Tyrannosaurus rex discoveries. See text and Table 1.1 in One Hundred Years of Tyrannosaurus rex: The Skeletons
Figure 1.1. Site map for Tyrannosaurus rex discoveries. See text and Table 1.1 for number identification.
Figure 1.5. LACM23844 in One Hundred Years of Tyrannosaurus rex: The Skeletons
Figure 1.5. LACM23844, skull. Photo by Dick Meier, courtesy Natural History Museum of Los Angeles County.
Fig. 2 in Skeleton of a Cretaceous mammal from Madagascar reflects long-term insularity
Fig. 2 | Cranium, lower jaw and dentition of A. hui holotype (UA 9030).
Figure 6.2 in Taphonomy and environment of deposition of a juvenile tyrannosaurid skeleton from the Hell Creek Formation (latest Maastridhtian) of southeastern Montana
Figure 6.2. Jane Quarry Hell Creek Formation Latest Maastrichtian) northwestern Carter County MT.
Figure 15. Silba fumosa, head skeleton removed from a puparium, length 1.3 in Diverse mechanisms of feeding and movement in Cyclorrhaphan larvae (Diptera)
Figure 15. Silba fumosa, head skeleton removed from a puparium, length 1.3 mm, mandibles to the left.
Data from: A unique hybodontiform skeleton provides novel insights into Mesozoic chondrichthyan life
<p class="CxSpFirst"><i>Asteracanthus </i>apparently was one of the most common Mesozoic hybodontiform chondrichthyans, as remains traditionally referred to this genus have been reported almost worldwide from Middle Triassic to Late Cretaceous strata so far. <i>Asteracanthus</i> was erected by Louis Agassiz for Late Jurassic fin spines with stellate tubercles. Later, Arthur Smith Woodward synonymized <i>Strophodus</i>, originally introduced by Agassiz for distinctive crushing teeth of Triassic to Cretaceous age, with <i>Asteracanthus </i>based on associated teeth and spines from the English Middle Jurassic. This taxonomic scheme has been accepted for more than 130 years until now, although articulated material has never been found. Here, we present a unique hybodontiform skeleton from the German Late Jurassic, displaying a striking combination of characters: tuberculate dorsal fin spines reminiscent of <i>Asteracanthus</i> and multicuspid teeth that markedly differ from the crushing teeth previously referred to this genus. Using qualitative and quantitative approaches, we compared its fin spines to those that were found in association with Agassiz's <i>Strophodus</i> teeth, providing evidence that <i>Asteracanthus</i> and <i>Strophodus</i> in fact represent two valid genera distinct from all other hybodontiforms. Morphological features that distinguish fin spines of <i>Strophodus</i> from those of all other hybodontiforms include a straight anterior border and distally distributed posterior denticles. These observations led us to present an emended diagnosis for <i>Asteracanthus</i>. Dentally, <i>Asteracanthus</i> shows strong resemblance to<i> Hybodus</i>, but<i> </i>it otherwise lacks a palatobasal process on the palatoquadrate. Therefore, and in the absence of any reliable phylogenetic framework, we recommend treating <i>Asteracanthus</i> as <i>incertae</i> <i>familiae </i>until hybodontiform interrelationships are resolved.</p>
FIG. 10 in A nearly complete skeleton of the oldest definitive erycine boid (Messel, Germany)
FIG. 10. — Compound bone: A-D, left compound bone of HLMD-Me 9723, holotype of Rageryx schmidi n. gen., n. sp., in dorsal, ventral, lateral, and medial views, respectively; E-H, left compound bone of Eryx johnii BM 1930.5.8.31 in dorsal, ventral, lateral, and medial views, respectively; I-L, left compound bone of Lichanura trivirgata CM 145332 in dorsal, ventral, lateral, and medial views, respectively. Scale bar: A-D, 1 mm; E-L, 2 mm.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.