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1,183 results for “Skeleton”
Figure 6 in Anatomical study of two previously undescribed specimens of Clevosaurus hudsoni (Lepidosauria: Rhynchocephalia) from Cromhall Quarry, UK, aided by computed tomography, yields additional information on the skeleton and hitherto undescribed bones
Figure 6. Photographs and surface models of Clevosaurus hudsoni specimen NHMUK PV R36832. Left nasal in (A) dorsolateral and (B) ventromedial views. C, right postfrontal in dorsal view. D, articulation between left postfrontal and left postorbital in anterolateral view. Left postorbital in (E) lateral and (F) medial views. Left prefrontal in (G) dorsolateral and (H) posterolateral views. Left jugal in (I) lateral and (J) medial views.
Figure 2. A in Anatomical study of two previously undescribed specimens of Clevosaurus hudsoni (Lepidosauria: Rhynchocephalia) from Cromhall Quarry, UK, aided by computed tomography, yields additional information on the skeleton and hitherto undescribed bones
Figure 2. A, sketch of the original fissure locality, no longer in existence (modified after Robinson, 1957). B, photograph of the quarry from 1954; the 'pendulum' has already been removed (P.L. Robinson, unpublished notebook, NHMUK). C, copy of the original field sketch of fossil locality B by P.L. Robinson, redrawn with minor modification for clarity by the authors (after P.L. Robinson, unpublished notebook, NHMUK).
Figure 5 in Anatomical study of two previously undescribed specimens of Clevosaurus hudsoni (Lepidosauria: Rhynchocephalia) from Cromhall Quarry, UK, aided by computed tomography, yields additional information on the skeleton and hitherto undescribed bones
Figure 5. Photographs and surface models of Clevosaurus hudsoni specimen NHMUK PV R36832. Left maxilla in (A) lateral and (B) medial views. Parietals in (C) dorsal and (D) ventral views. Frontals in (E) dorsal and (F) ventral views.
Figure 12 in Anatomical study of two previously undescribed specimens of Clevosaurus hudsoni (Lepidosauria: Rhynchocephalia) from Cromhall Quarry, UK, aided by computed tomography, yields additional information on the skeleton and hitherto undescribed bones
Figure 12. Photographs and surface models of Clevosaurus hudsoni specimen NHMUK PV R36832. A, right ischium in lateral view. B, pelvic girdle bones as preserved in the specimen, out of position (right ischium in medial view). C, postcranial bones at or near the pectoral region, left lateral view.
Figure 4 in Anatomical study of two previously undescribed specimens of Clevosaurus hudsoni (Lepidosauria: Rhynchocephalia) from Cromhall Quarry, UK, aided by computed tomography, yields additional information on the skeleton and hitherto undescribed bones
Figure 4. Postcranial bones of Clevosaurus hudsoni specimen NHMUK PV R36832. (A) photograph and (B) surface model (refer to Fig. 3B for location on specimen).
Figure 16 in Anatomical study of two previously undescribed specimens of Clevosaurus hudsoni (Lepidosauria: Rhynchocephalia) from Cromhall Quarry, UK, aided by computed tomography, yields additional information on the skeleton and hitherto undescribed bones
Figure 16. Photographs and surface models of Clevosaurus hudsoni specimen NHMUK PV R36832. Left scapulocoracoid in (A, B) lateral and (C) medial views. Left radius in (D) dorsolateral, (E) anterior and (F) posterior views.
Figure 15 in Anatomical study of two previously undescribed specimens of Clevosaurus hudsoni (Lepidosauria: Rhynchocephalia) from Cromhall Quarry, UK, aided by computed tomography, yields additional information on the skeleton and hitherto undescribed bones
Figure 15. Photograph and surface models of Clevosaurus hudsoni specimen NHMUK PV R36832. A, cervical and dorsal vertebrae in posterodorsal view. B, fourth cervical vertebra in lateral view. Third cervical vertebra in (C) anterior, (D) dorsal, (E) lateral and (F) posterior views. Second dorsal vertebra in (G) anterior, (H) dorsal, (I) lateral and (J) posterior views.
Figure 3 in Anatomical study of two previously undescribed specimens of Clevosaurus hudsoni (Lepidosauria: Rhynchocephalia) from Cromhall Quarry, UK, aided by computed tomography, yields additional information on the skeleton and hitherto undescribed bones
Figure 3. Photographs and surface models of Clevosaurus hudsoni specimen NHMUK PV R36832. A, entire specimen. B, diagrammatic representation of the specimen with key showing location of views in (C–F) and in Figure 4. Skull bones in (C, D) dorsolateral view and (E, F) left lateral view (surface models are in artificial colour in all figures).
Figure 14 in Anatomical study of two previously undescribed specimens of Clevosaurus hudsoni (Lepidosauria: Rhynchocephalia) from Cromhall Quarry, UK, aided by computed tomography, yields additional information on the skeleton and hitherto undescribed bones
Figure 14. Photographs and surface models of Clevosaurus hudsoni specimen NHMUK PV R36832. A, cervical vertebrae in lateral view. B, disarticulated atlas bones in lateral view. C, cervical vertebrae in lateral view. D, atlas and axis in lateral view. Atlas and axis in (E) anterior, (F) dorsal, (G) posterior and (H) ventral views.
Figure 9 in Anatomical study of two previously undescribed specimens of Clevosaurus hudsoni (Lepidosauria: Rhynchocephalia) from Cromhall Quarry, UK, aided by computed tomography, yields additional information on the skeleton and hitherto undescribed bones
Figure 9. Photographs and surface models of Clevosaurus hudsoni specimen NHMUK PV R36832. Left dentary in (A, C) lateral and (D) medial views. B, partial left dentary in lateral view showing wear facets. E, left articular complex in dorsal view. F, left surangular in lateral view. G, left articular in dorsal view. H, right articular in lateral view.
Figure 8 in Anatomical study of two previously undescribed specimens of Clevosaurus hudsoni (Lepidosauria: Rhynchocephalia) from Cromhall Quarry, UK, aided by computed tomography, yields additional information on the skeleton and hitherto undescribed bones
Figure 8. Photograph and surface models of Clevosaurus hudsoni specimen NHMUK PV R36832. Braincase bones in (A, B) posterodorsal, (C) right lateral and (D) anteroventral views.
Figure 19 in Anatomical study of two previously undescribed specimens of Clevosaurus hudsoni (Lepidosauria: Rhynchocephalia) from Cromhall Quarry, UK, aided by computed tomography, yields additional information on the skeleton and hitherto undescribed bones
Figure 19. Photographs and surface models of Clevosaurus hudsoni specimen NHMUK PV R36846. A, distal head of broken femur in ventrolateral view. Left tibia in (B) anterior, (C) lateral and (D) posterior views. Left fibula in (E) anterior and (F) posterior views. G, astragalus, calcaneum and tarsal bones in dorsal view. H, digit i in dorsolateral view. I, digit i phalanx and ungual in dorsolateral view. Astragalus and calcaneum in (J) dorsal and (K) ventral views.
Figure 3. A in Metric variation in the postcranial skeleton of ostriches, Struthio (Aves: Palaeognathae), with new data on extinct subspecies
Figure 3. A, ternary diagrams comparing intramembral (length) proportions of femur (F): tibiotarsus (TT): tarsometatarsus (TM) in the extant ratites and moas. Data for Struthio are from the present work; for other ratites from Dickison (2007). See Supporting Information (Table S19) for the ternary ratios shown in the diagram. B, ternary diagrams comparing intramembral (length) proportions of tibiotarsus (TT): tarsometatarsus (TM): pedal digit III phalanx 1 (III/1) in the extant ratites and moas. Data for Struthio are from the present work; for other ratites from Dickison (2007) for the tibiotarsus and tarsometatarsus and from Farlow et al. (2013) for the phalanx. See Supporting Information (Table S20) for the ternary ratios shown in the diagrams. C, ternary diagrams comparing intramembral (length) proportions of tarsometatarsus (TM): pedal digit III phalanx 1 (III/1): pedal digit III phalanx 2 (III/2) in the extant ratites and moas. Data for Struthio are from the present work; for other ratites from Dickison (2007) for the tarsometatarsus and from Farlow et al. (2013) for the phalanges. See Supporting Information (Table S21) for the ternary ratios shown in the diagrams. Point labels: An, Anomalopteryx didiformis; Ap, Apteryx (the mean for Apteryx australis, Apteryx mantelli and Apteryx oweni); Ca, Casuarius (the mean for Casuarius casuarius, Casuarius unappendiculatus and Casuarius bennetti); Di, Dinornis (the mean for Dinornis robustus and Dinornis novaezealandiae); Dr, Dromaius novaehollandiae; Em, Emeus crassus; Eu, Euryapteryx curtus (the mean for Euryapteryx curtus curtus and Euryapteryx curtus gravis); Me, Megalapteryx didinus; Pa, Pachyornis (the mean for Pachyornis australis, Pachyornis elephantopus and Pachyornis geranoides; Rh, Rhea (the mean for Rhea americana and Rhea pennata); Sc, Struthio camelus (the mean for Struthio camelus australis, Struthio camelus camelus and Struthio camelus massaicus); Sc+Sm, the mean for Struthio camelus and Struthio molybdophanes; Scs, Struthio camelus syriacus; Ss, Struthio camelus spatzi.
Figure 1 in Metric variation in the postcranial skeleton of ostriches, Struthio (Aves: Palaeognathae), with new data on extinct subspecies
Figure 1. Graphical representations of measurements as defined in Table 1. A, scapulocoracoid in medial view. B, sternum in dorsal view. C, synsacrum and pelvis in cranial (C1), dorsal (C2), lateral (C3) and ventral (C4) view. D, femur in medial (D1), caudal (D2), proximal (D3 and distal (D4) view. E, tibiotarsus in cranial (E1) and medial (E2) view. F, fibula in cranial (F1), lateral (F2) and caudomedial (F3) view. G, tarsometatarsus in proximal (G1), dorsal (proximal end; G2), plantar (G3) and lateral (G4) view. H, phalanx 1 in dorsal (H1), ventral (H2), lateral (H3), medial (H4) and proximal (H5) view. I, pedal digit III phalanx 2 in dorsal (I1), ventral (I2) and medial (I3) view. Anatomical abbreviations: ai, angulus ilii; al, angulus lateralis; am, angulus medialis; at, antitrochanter; c, caput femoris; cc, crista cnemialis cranialis; cn, crista cnemialis lateralis; cp,
Figure 2 in Metric variation in the postcranial skeleton of ostriches, Struthio (Aves: Palaeognathae), with new data on extinct subspecies
Figure 2. Simpson's ratio diagram comparing the lengths of scapulocoracoid (SC), humerus (H), femur (F), tibiotarsus (TT), tarsometatarsus (TM), and the first (III/1), second (III/2), and third (III/3) pedal digit III phalanges of living and extinct ostriches (Struthio), with Struthio camelus australis NHMUK 1857.2.24.10 as a reference (the black straight line at level 0). See the Supporting Information for the adopted lengths of limb segments (Table S17) and their LOG (decimal logarithmic) values (Table S18).
Figure 15. Pectoral fin skeleton. A in Combined phylogeny and new classification of catsharks (Chondrichthyes: Elasmobranchii: Carcharhiniformes)
Figure 15. Pectoral fin skeleton. A, Poroderma pantherinum, SAIAB 34577, male, 640 mm TL. B, Apristurus laurussonii, UF 185652, male, 480 mm TL. C, Gollum attenuatus, NSMT 42855, female, 950 mm TL. D, Loxodon macrorhinus, HUMZ 37632, male, 750 mm TL. Abbreviations: dr, distal radial elements; mes, mesopterygium; mr, medial radial elements; mtp, metapterygium; mtpax, metapterygium axial; pr, proximal radial elements; pro, propterygium; TL, total length.
Scrolls unfold skeleton animation
Scrolls unfold skeleton animation Source: Objaverse 1.0 / Sketchfab
Skeleton
Source: Objaverse 1.0 / Sketchfab
Tarradale Pictish Barrow Skeleton Close Up
Close up of skeletal remains in pictish barrow Source: Objaverse 1.0 / Sketchfab
Sunfish Skeleton (NHMW-Zoo-FS 95125)
3D scan of a *Mola mola* skeleton. Sunfish (Molidae) stand out due to their unique appearance. They can grow up to 3 meters in height, but become hardly ever longer than high and are disc shaped. Until now, not much is known about these unique fishes. What is known is, that they live in tropical and temperate oceans and that they are highly reproductive. *Mola mola* produce more eggs than any other known vertebrate: up to 300,000,000 at a time. This skeleton of a *Mola mola* stands next to another [sunfish](https://skfb.ly/o6uGy) and can be found in Hall 26 of the NHM Vienna. **Specimen**: Sunfish, *Mola mola* (Linnaeus, 1758) **Inventory Number**: NHMW-Zoo-FS 95125 **Collection**: Natural History Museum Vienna, 1st Zoological Dept., Fish Coll. (curator: Ernst Mikschi) Find out more about the NHMW [here](http://www.nhm-wien.ac.at/en). Scanned and edited by Viola Winkler (NHM Wien) Scanner: Artec Leo. Infrastructure funded by the FFG. Source: Objaverse 1.0 / Sketchfab
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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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.