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1,183 results for “Skeleton”
FIGURE 4 in Comparative analysis of the chondrocranium and hyobranchial skeleton of bromeliad arboreal frog larvae of the genus Phyllodytes Wagler, 1830 (Anura Hylidae)
FIGURE 4. Chondrocranium. Lateral views for Phyllodytes acuminatus (A, Stage 31, MHN–UFAL 8385), P. brevirostris (B, Stage 34, MNRJ 53 122), P. edelmoi (C, Stage 36, MHN–UFAL 3768), P. maculosus (D, Stage 27, CZUFSB 509), P. melanomystax (E, Stage 28, MNRJ 04 868), P. praeceptor (F, Stage 31, MZUESC 16 059), P. punctatus (G, Stage 29, LABEV–UFS 1167), P. wuchereri (H, Stage 31, CLAR 9492), Phyllodytes sp. 5 (I, Stage 36, MHNBA 15 996). (bc) braincase; (fov) fenestra ovalis; (mc) Meckel's cartilage; (mp) muscular process; (oc) otic capsule; (ocf) oculomotor foramen; (opf) optic foramen; (orc) orbital cartilage; (pq) palatoquadrate; (plt) processus lateralis trabeculae; (sc) suprarostral cartilage; (th) trabecular horns; (trf) trochlear foramen (scale bars =1 mm).
FIGURE 2 in Comparative analysis of the chondrocranium and hyobranchial skeleton of bromeliad arboreal frog larvae of the genus Phyllodytes Wagler, 1830 (Anura Hylidae)
FIGURE 2. Chondrocranium. Ventral views for Phyllodytes acuminatus (A, Stage 31, MHN–UFAL 8385), P. brevirostris (B, Stage 34, MNRJ 53 122), P. edelmoi (C, Stage 36, MHN–UFAL 3768), P. maculosus (D, Stage 27, CZUFSB 509), P. melanomystax (E, Stage 28, MNRJ 04 868), P. praeceptor (F, Stage 31, MZUESC 16 059), P. punctatus (G, Stage 29, LABEV–UFS 1167), P. wuchereri (H, Stage 31, CLAR 9492), Phyllodytes sp. 5 (I, Stage 36, MHNBA 15 996). (cf) carotid foramen; (crf) craniopalatine foramen; (ic) infrarostral cartilage; (jf) jugulare foramen; (pf) perilymphaticum foramen; (pr) retroarticular process of Meckel's cartilage; (qcc) quadratocranial commissure (scale bars =1 mm).
FIGURE 1 in Comparative analysis of the chondrocranium and hyobranchial skeleton of bromeliad arboreal frog larvae of the genus Phyllodytes Wagler, 1830 (Anura Hylidae)
FIGURE 1. Chondrocranium. Dorsal views for Phyllodytes acuminatus (A, Stage 31, MHN–UFAL 8385), P. brevirostris (B, Stage 34, MNRJ 53 122), P. edelmoi (C, Stage 36, MHN–UFAL 3768), P. maculosus (D, Stage 27, CZUFSB 509), P. melanomystax (E, Stage 28, MNRJ 04 868), P. praeceptor (F, Stage 31, MZUESC 16 059), P. punctatus (G, Stage 29, LABEV–UFS 1167), P. wuchereri (H, Stage 31, CLAR 9492), Phyllodytes sp. 5 (I, Stage 36, MHNBA 15 996). (a) ala; (as) ascending process; (bf) basicranial fenestra; (c) corpus; (ep) ethmoid plate; (mc) Meckel's cartilage; (mp) muscular process; (oc) otic capsule; (op) larval otic process; (plp) posterolateral process; (pq) palatoquadrate; (paq) articular process of palatoquadrate; (qep) quadratoethmoid process; (sf) subocular fenestra; (st) synotic tectum; (th) trabecular horns (scale bars =1 mm).
FIGURE 16. Caudal skeleton. A in A new congrid eel (Teleostei:Anguilliformes: Congridae) from the Western Pacific with an analysis of its relationships
FIGURE 16. Caudal skeleton. A, Bathycongrus villosus sp. nov. B, Bassanago albescens. Anatomical abbreviations: first preural centrum (PU1), hypurals 1 and 2 (H1-2), hypurals 3 and 4 (H3-4), parhypural (PH), urostyle (US). Blue arrow points to the fenestra formed by the fusion of the parhypural to hypurals 1–2 in Bassanago albescens.
FIGURE 14. Pectoral skeleton. A in A new congrid eel (Teleostei:Anguilliformes: Congridae) from the Western Pacific with an analysis of its relationships
FIGURE 14. Pectoral skeleton. A, Bathycongrus villosus sp. nov. B, Bassanago albescens. Anatomical abbreviations: anteriorly directed process (ADP), cleithrum (CL), coracoid (CO), distal radials (DR), pectoral-fin rays (R), propterygium (PPG), proximal radials (PR1-4), scapula (SC), scapulocoracoid (SCO), scapulocoracoid fenestra (SCF), supracleithrum (SCL).
Temperature control on high-resolution SIMS oxygen isotopic compositions in Porites coral skeletons
<p>The dataset includes all data for "Temperature control on high-resolution SIMS oxygen isotopic compositions in Porites coral skeletons" by Zou et al. from Guangzhou Institute of Geochemistry.</p>
FIGURE 95 in Osteology of Tyrannosaurus rex: insights from a nearly complete skeleton and high-resolution computed tomographic analysis of the skull
FIGURE 95. FMNH PR2081, Tyrannosaurus rex. Right femur in posterior (A), lateral (B), anterior (C), and medial (D) views. Left femur in posterior (E), lateral (F), anterior (G), and medial (H) views. I, right femur, proximal view. J, Right femur, distal view. Scale = 30 cm; abbreviations in Appendix 1. Photographs by J. Weinstein.
FIGURE 39 in Osteology of Tyrannosaurus rex: insights from a nearly complete skeleton and high-resolution computed tomographic analysis of the skull
FIGURE 39. FMNH PR2081, Tyrannosaurus rex. Horizontal CT slice through braincase, 1 cm ventral to floor of endocranial cavity. Note hollow nature of parasphenoid rostrum and complex of recesses within basioccipital. Abbreviations in Appendix 1.
FIGURE 15 in Osteology of Tyrannosaurus rex: insights from a nearly complete skeleton and high-resolution computed tomographic analysis of the skull
FIGURE 15. FMNH PR2081, Tyrannosaurus rex. Sutural relationships between nasal, lacrymal, and maxilla above the antorbital fenestra. Left lateral view. See Appendix 1 for abbreviations. Photographs by J. Weinstein.
FIGURE 96 in Osteology of Tyrannosaurus rex: insights from a nearly complete skeleton and high-resolution computed tomographic analysis of the skull
FIGURE 96. FMNH PR2081, Tyrannosaurus rex. Right tibia, calcaneum, and astragalus in medial (A), posterior (B), lateral (C), and anterior (D) views. Left tibia, calcaneum, and astragalus in anterior (E), lateral (F), posterior (G), and medial (H) views. I, left tibia, proximal view. J, left astragalus and calcaneum, distal view. Scale = 30 cm; abbreviations in Appendix 1. Photographs by J. Weinstein.
FIGURE 10 in Osteology of Tyrannosaurus rex: insights from a nearly complete skeleton and high-resolution computed tomographic analysis of the skull
FIGURE 10. FMNH PR2081, Tyrannosaurus rex. Closeup of right premaxilla, showing extensive premaxillary flooring of external naris. Anterior extent of nasal under the naris cannot be determined. See Appendix 1 for abbreviations.
FIGURE 43 in Osteology of Tyrannosaurus rex: insights from a nearly complete skeleton and high-resolution computed tomographic analysis of the skull
FIGURE 43. FMNH PR2081, Tyrannosaurus rex. Medial view of left mandible focusing on dorsal tip of intramandibular joint, where the splenial, prearticular, coronoid, and supradentary converge. Abbreviations in Appendix 1.
FIGURE 92 in Osteology of Tyrannosaurus rex: insights from a nearly complete skeleton and high-resolution computed tomographic analysis of the skull
FIGURE 92. FMNH PR2081, Tyrannosaurus rex. A, Left ilium, lateral view. B, Left ilium, medial view. C, Right ilium (with sacrum attached), lateral view. Scale = 30 cm; abbreviations in Appendix 1. Photographs by J. Weinstein.
FIGURE 93 in Osteology of Tyrannosaurus rex: insights from a nearly complete skeleton and high-resolution computed tomographic analysis of the skull
FIGURE 93. FMNH PR2081, Tyrannosaurus rex. Left ischium and proximal portion of left pubis in (A) medial and (B) lateral view. Right ischium and proximal portion of right pubis in (C) lateral and (D) medial view. Scale = 30 cm; abbreviations in Appendix 1. Photographs by J. Weinstein.
FIGURE 58 in Osteology of Tyrannosaurus rex: insights from a nearly complete skeleton and high-resolution computed tomographic analysis of the skull
FIGURE 58. FMNH PR2081, Tyrannosaurus rex. Caudal vertebrae, anterior view. Scale = 1 5 cm. Photographs by J. Weinstein.
FIGURE 66 in Osteology of Tyrannosaurus rex: insights from a nearly complete skeleton and high-resolution computed tomographic analysis of the skull
FIGURE 66. FMNH PR2081, Tyrannosaurus rex. Haemal arches, anterior view. Scale = 10 cm. Photographs by J. Weinstein.
FIGURE 4 in Osteology of Tyrannosaurus rex: insights from a nearly complete skeleton and high-resolution computed tomographic analysis of the skull
FIGURE 4. FMNH PR2081, Tyrannosaurus rex. Skull in ventral view (A, photograph; B, line interpretation of cranial sutures). Scale = 30 cm. See Appendix 1 for abbreviations. Photograph by J. Weinstein.
FIGURE 3 in Osteology of Tyrannosaurus rex: insights from a nearly complete skeleton and high-resolution computed tomographic analysis of the skull
FIGURE 3. FMNH PR2081, Tyrannosaurus rex. Skull in dorsal view (A, photograph; B, line interpretation of cranial sutures). Scale = 30 cm. See Appendix 1 for abbreviations.
FIGURE 59 in Osteology of Tyrannosaurus rex: insights from a nearly complete skeleton and high-resolution computed tomographic analysis of the skull
FIGURE 59. FMNH PR2081, Tyrannosaurus rex. Caudal vertebrae, posterior view. Scale = 15 cm. Photographs by J. Weinstein.
FIGURE 51 in Osteology of Tyrannosaurus rex: insights from a nearly complete skeleton and high-resolution computed tomographic analysis of the skull
FIGURE 51. FMNH PR2081, Tyrannosaurus rex. Cervical vertebrae (p2 through p9), right lateral view. A is axis. Scale = 15 cm. See Appendix 1 for abbreviations. Photographs by J. Weinstein.
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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.