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FIGURE 3 in Intraspecific variation of the caudal fin skeleton in Osteoglossum bicirrhosum Cuvier 1829 (Teleostei: Osteoglossomorpha: Osteoglossidae)
FIGURE 3. Caudal skeleton of Osteoglossum bicirrhosum. Specimens: a) MZUSP 3526-d; b) MZUSP 82312-18622; c) MZUSP 82331-02; d) MZUSP 22080-01; e) UERJ-PMB 25; f) MZUSP 21875-02. Bone is shown in white, and cartilage in black. Anterior faces left.
FIGURE 1. a in Intraspecific variation of the caudal fin skeleton in Osteoglossum bicirrhosum Cuvier 1829 (Teleostei: Osteoglossomorpha: Osteoglossidae)
FIGURE 1. a) The bonytongue Osteoglossum bicirrhosum, MNRJ 1212 (306 mm SL); b) Map with the geographic distribution of the specimens examined in the present study: I. Overview of South America river drainages. The spots represent specimen localities found in the MNRJ – Neodat search page; II. Close showing the localities in the sampled area. Assigned numbers depicted in Annex 1; III. Detail of the three sub-basins with the localities of the specimens used in our geographical comparisons. Maps were composed based on the online maps from IBGE (Instituto Brasileiro de Geografia e Estatística) and from the Neodat Project – MNRJ page.
FIGURE 5 in Intraspecific variation of the caudal fin skeleton in Osteoglossum bicirrhosum Cuvier 1829 (Teleostei: Osteoglossomorpha: Osteoglossidae)
FIGURE 5. Caudal skeleton of Osteoglossum bicirrhosum. Specimens: a) UERJ-PMB 11; b) UERJ-PMB 12; c) UERJ- PMB 13; d) UERJ-PMB 14. Bone is shown in white, and cartilage in black. Anterior faces left.
FIGURE 8 in Intraspecific variation of the caudal fin skeleton in Osteoglossum bicirrhosum Cuvier 1829 (Teleostei: Osteoglossomorpha: Osteoglossidae)
FIGURE 8. Caudal skeleton of Osteoglossum bicirrhosum: a) "Typical" condition. ["A"]. b) Schematic drawings of the main patterns ["A", "B", "C", "D", "E" and "F"] found in specimens from the three selected localities [Negro, Trombetas and Tapaj®AEs rivers]. Varying structures are highlighted in blue. Bone is shown in white, and cartilage in black. Anterior faces left. c) Histograms showing the distribution [expressed in percentage] of the varying endoskeletal patterns in specimens from the three localities.
FIGURE 2 in Intraspecific variation of the caudal fin skeleton in Osteoglossum bicirrhosum Cuvier 1829 (Teleostei: Osteoglossomorpha: Osteoglossidae)
FIGURE 2. Caudal skeleton of Osteoglossum bicirrhosum. Specimens: a) MZUSP 82312-18630; b) MZUSP 82319- 30738; c) MZUSP 3526-e; d) MZUSP 82312-18618; e) MZUSP 82312-18623; f) MZUSP 18290-d. Anterior faces left.
Fig. 5. Metacarpus I in Morphology of the hand skeleton of bats of the genus Noctilio (Chiroptera: Noctilionidae)
Fig. 5. Metacarpus I (left): dorsal and medial view N. leporinus (A–B); dorsal and medial view N. albiventris (I–J). Proximal epiphysis of metacarpus II (left): dorsal, lateral and medial view N. leporinus (C–E); dorsal, lateral and medial view N. albiventris (K–M). Proximal epiphysis of metacarpus III (left): dorsal, lateral and medial view N. leporinus (F–H); dorsal, lateral and medial view N. albiventris (N–P). Proximal epiphysis of metacarpus IV (left): dorsal, lateral and medial view N. leporinus (Q–S); dorsal, lateral and medial view N. albiventris (W–Y). Proximal epiphysis of metacarpus V (left): dorsal, lateral and medial view N. leporinus (T–V); dorsal, lateral and medial view N. albiventris (Z-BB). The arrows indicate the orientation of the bone: Pr: proximal, Di: distal. See Table 1 for abbreviations. Scales = 1 mm.
Fig. 4 in Morphology of the hand skeleton of bats of the genus Noctilio (Chiroptera: Noctilionidae)
Fig. 4. Magnum (left): lateral and medial view N. leporinus (A–B); lateral and medial view N. albiventris (G–H). Trapezium: lateral and medial view N. leporinus (C–D); lateral and medial view N. albiventris (I–J). Trapezoid: lateral and medial view N. leporinus (E–F); lateral and medial view N. albiventris (K–L). The arrows indicate the orientation of the bone: D: dorsal, P: palmar. See Table 1 for abbreviations. Scales = 1 mm.
Fig. 2 in Morphology of the hand skeleton of bats of the genus Noctilio (Chiroptera: Noctilionidae)
Fig. 2. Scaphocentralunate (left): dorsal, palmar, proximal and distal view N. leporinus (A–D); dorsal, palmar, proximal and distal view N. albiventris. The arrows indicate the orientation of the bone: D: dorsal, Di: distal, L: lateral, P: palmar. See Table 1 for abbreviations. Scales = 1 mm.
Fig. 3 in Morphology of the hand skeleton of bats of the genus Noctilio (Chiroptera: Noctilionidae)
Fig. 3. Cuneiform (left): dorsal and palmar view N. leporinus (A–B); dorsal and palmar view N. albiventris (F–G). Unciform: medial, lateral and palmar view N. leporinus (C–E); medial, lateral and palmar view N. albiventris (H–J). The arrows indicate the orientation of the bone: D: dorsal, Di: distal, P: palmar, Pr: proximal. See Table 1 for abbreviations. Scales = 1 mm.
Fig. 1 in Morphology of the hand skeleton of bats of the genus Noctilio (Chiroptera: Noctilionidae)
Fig. 1. Schematized of the left radius, carpus and metacarpus of Noctilio leporinus. Anterior, distal and posterior views of the radius (A–C); dorsal and palmar view of the carpus and proximal epiphyses metacarpi (D–E). See Table 1 for abbreviations. Unscaled.
Automation of Test Skeletons within Test-Driven Development Projects
<p>This is the data sheets created by authors for Automatic Test-Skeleton Generation within Test-Driven Development Projects</p>
{Minecraft} Sad Skeleton Sitting
{Minecraft Style} Sad Skeleton Sitting Source: Objaverse 1.0 / Sketchfab
BNW20 F342 Horse Skeleton
Possible Roman Horse Skeleton found Whittlsey, Cambridgshire Source: Objaverse 1.0 / Sketchfab
BNW20 F294 Cow Skeleton
Source: Objaverse 1.0 / Sketchfab
Fig. 2 in Two seco-norabietane diterpenoids with unprecedented skeletons from the roots of Salvia abrotanoides (Kar.) Sytsma
Fig. 2. (A) Key HMBC (blue arrows), 1H–1H COSY (red bonds) correlations of compounds 1 and 2, and (B) NOESY correlations of compound 1. (For interpretation of the references to colour in this figure legend, the reader is referred to the Web version of this article.)
Figure 13 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 13. Photographs of Clevosaurus hudsoni specimen NHMUK PV R36832. A, partial left lateral view of the skull, showing the position of sclerotic ossicles in the orbital area. B, enlarged view of preserved sclerotic ossicles.
Figure 17 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 17. Photographs of Clevosaurus hudsoni specimen NHMUK PV R36832. A, gastralia in ventral view. B, enlarged view of apex of medial splint. C, enlarged view of overlap between medial and lateral splints.
Figure 10 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 10. Surface models of Clevosaurus hudsoni specimen NHMUK PV R36832. A, anterolateral view of skull showing surfaces of slender bones hidden within the matrix (large cranial elements shown for relative position). B, posteroventral view of (A).
Figure 18 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 18. Photograph and surface models of Clevosaurus hudsoni left hind limb specimen NHMUK PV R36846. Specimen in (A, B) dorsal, (C) ventral and (D) posterolateral views.
Figure 7 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 7. Photographs and surface models of Clevosaurus hudsoni specimen NHMUK PV R36832. Left quadrate in (A) lateral and (B) medial views. Palate region in (C), (D) ventral view (refer to Fig. 3A for location of view). E, left lateral view of specimen between maxilla and dentary, showing bones out of position (refer to Fig. 3A for location of view). Possible left pterygoid in (F), (G) lateral view.
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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)
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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.