Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
549
datasets available to search
ShareScore release 0.7.1
Dataset results
549 results for “Cetacea”
Figure 13 in Killer sperm whale: a new basal physeteroid (Mammalia, Cetacea) from the Late Miocene of Italy
Figure 13. Posterior portion of dentary of (A) Zygophyseter varolai gen. et sp. nov. (holotype, MAUL 229/1), (B) Naganocetus shigensis (from Hirota & Barnes, 1995: Fig. 9), (C) 'Aulophyseter' rionegrensis (from Gondar, 1975: pl. 1, Fig. c), (D) Physeter macrocephalus (MSNTUP M267), (E) Kogia sima (from Caldwell & Caldwell, 1989: Fig. 6D), (F) Kogia breviceps (MBMS 4000), (G) Mesoplodon bowdoini (MSNTUP M269), (H) Delphinus delphis (MSNTUP M287) and (I) Zygorhiza kochii (cast of USNM 11962). A, medial view; B–I, lateral views. The arrows indicate the location of the condyle.
Figure 7 in Killer sperm whale: a new basal physeteroid (Mammalia, Cetacea) from the Late Miocene of Italy
Figure 7. Zygophyseter varolai gen. et sp. nov. Incomplete left periotic of the holotype (MAUL 229/1) in (A) dorsal, (B) ventral and (C) medial views.
Figure 5 in Killer sperm whale: a new basal physeteroid (Mammalia, Cetacea) from the Late Miocene of Italy
Figure 5. Zygophyseter varolai gen. et sp. nov. Details (A–D) and lateral view (E) of the cranium of the holotype (MAUL 229/1). A, narial area in dorsal view; B, foramina and antorbital lamina of maxilla in dorsal view; C, left orbital area in ventral view; D, posteroventral surface. The vertical scale bar refers to A–D.
Figure 4 in Killer sperm whale: a new basal physeteroid (Mammalia, Cetacea) from the Late Miocene of Italy
Figure 4. Zygophyseter varolai gen. et sp. nov. Skull of holotype (MAUL 229/1) in (A) dorsal and (B) lateral views. The non-preserved portion is reconstructed in dorsal view and is shaded in lateral view.
Figure 3 in Killer sperm whale: a new basal physeteroid (Mammalia, Cetacea) from the Late Miocene of Italy
Figure 3. Zygophyseter varolai gen. et sp. nov. Skull of holotype (MAUL 229/1) in (A) dorsal, (B) ventral and (C) lateral views.
Figure 2 in Killer sperm whale: a new basal physeteroid (Mammalia, Cetacea) from the Late Miocene of Italy
Figure 2. Sketch showing in plain view the relative positions of the skeletal elements of MAUL 229/1, holotype of Zygophyseter varolai gen. et sp. nov. as they were preserved. CV, caudal vertebrae; LV, lumbar vertebrae; MD, mandible; RB, ribs; SC(l), left scapula; SC(r), right scapula; SK, skull; TV, thoracic vertebrae.
Figure 1 in Killer sperm whale: a new basal physeteroid (Mammalia, Cetacea) from the Late Miocene of Italy
Figure 1. Map of south-eastern Italy showing the location of the Cisterna Quarry, the type locality of Zygophyseter varolai gen. et sp. nov.
Figure 4 in The trouble with flippers: a report on the prevalence of digital anomalies in Cetacea
Figure 4. Tracing (A) and radiograph (B) of the right flipper of a grey whale (Eschrichtius robustus, LACM 54543). An additional digit lies between digits IV and V, and is represented by a single rounded metacarpal and three phalanges. The dotted line indicates the extent of cartilage shared between digit IV and the anomalous digit. Tracing (C) and radiograph (D) of the flipper of a fin whale (Balaenoptera physalus, USNM 550116). Three additional phalanges are embedded in the connective tissue between digits IV and V. Scale bars: 1 cm. Key: metacarpals, dark grey; phalanges, light grey; cartilages, white; anomalous elements, black.
Figure 2 in The trouble with flippers: a report on the prevalence of digital anomalies in Cetacea
Figure 2. Illustrations of digital anomalies. A, the typical mammalian manus with five digits and a phalangeal formula of 2/3/3/3/3. B, hyperphalangy. C, polydactyly. D, polyphalangy. E, interdigital elements. Key: metacarpals (mc), dark grey; phalanges (ph), light grey; anomalous elements, black.
Figure 3 in The trouble with flippers: a report on the prevalence of digital anomalies in Cetacea
Figure 3. Published reports of cetacean digital malformations. A, cartilaginous interdigital elements in a fin whale (Balaenoptera physalus; Kükenthal, 1893). B and C, polyphalangy and an accessory ossification in two harbour porpoise (Phocoena phocoena; Kunze, 1912). D, polydactyly in the vaquita (Phocoena sinus; Ortega-Ortiz et al., 2000). E, polyphalangy in a bottlenose dolphin (Tursiops truncatus; Watson et al., 1994). F, polyphalangy in the beluga (Delphinapterus leucas; Yablokov, 1974). Illustrations are not drawn to scale. Roman numerals identify digits. Key: metacarpals, dark grey; phalanges, light grey; cartilages, white; anomalous elements, black.
Figure 7 in The trouble with flippers: a report on the prevalence of digital anomalies in Cetacea
Figure 7. Patterns of cetacean digital anomalies, and the possible developmental mechanisms that could generate these morphologies. Key: metacarpals, dark grey; phalanges, light grey; cartilages, white; anomalous elements, black.
Figure 5 in The trouble with flippers: a report on the prevalence of digital anomalies in Cetacea
Figure 5. Phalangeal fusion in tracing (A) and radiograph (B) of a common dolphin (Delphinus delphis, USNM 550041). C and D, accessory ossification in a dwarf sperm whale (Kogia sima, USNM 550482). E and F, additional metacarpal ossification centre in an Atlantic spotted dolphin (Stenella frontalis, USNM 504736). G and H, metacarpal–phalangeal and interphalangeal fusion in Gervais' beaked whale (Mesoplodon europeus, USNM 504256). Scale bars: 1 cm. Key: metacarpals, dark grey; phalanges, light grey; cartilages, white; anomalous elements, black.
Figure 1 in The trouble with flippers: a report on the prevalence of digital anomalies in Cetacea
Figure 1. The evolution of digits among tetrapods. A, the early Devonian tetrapod Tiktaalik (Shubin et al., 2006) with radials. B, Acanthostega (Coates & Clack, 1990) was the first tetrapod with digits. C, a synapsid (Carroll, 1988) displayed the canonical pentadactylous tetrapod manus. D, the pendtadactylous archaeocete cetacean Rodhocetus displayed the primitive mammalian phalangeal formula of 2/3/3/3/3 (Gingerich et al., 2001). Roman numerals indicate digit identity. Dark-grey elements are metacarpals, light-gray elements are phalanges. Radials (r) and lepitotrichia (le). Scale bars: 1 cm.
Figure 10 in Morphology and phylogenetic relationships of a new eschrichtiid genus (Cetacea: Mysticeti) from the Early Pliocene of northern Italy
Figure 10. Phylogenetic relationships of Eschrichtioides gastaldii gen. nov., comb. nov.. Strict consensus tree from nine equally most-parsimonious trees. Tree statistics: tree length, 503 steps; Consistency Index (CI), 0.5447; Retention Index (RI), 0.8115; Homoplasy Index (HI), 0.4553; Rescaled CI, 0.4421.
Figure 9 in Morphology and phylogenetic relationships of a new eschrichtiid genus (Cetacea: Mysticeti) from the Early Pliocene of northern Italy
Figure 9. Eschrichtioides gastaldii gen. nov., comb. nov.: forelimb (redrawn from Portis, 1885). A, lateral and medial views of humerus. B, lateral and medial views of ulna (lateral view). Scale bar = 100 mm. Horizontal lines indicate shark bite marks discussed by Bianucci et al. (2002).
Figure 7 in Morphology and phylogenetic relationships of a new eschrichtiid genus (Cetacea: Mysticeti) from the Early Pliocene of northern Italy
Figure 7. Eschrichtioides gastaldii gen. nov., comb. nov.: cross-sections of dentary. Selected cross-sections of the left dentary. Numbers over the sections are mm from the anterior end of the dentary. Scale bar = 100 mm. Explanation of abbreviations: a, coronoid process; b, groove between coronoid and satellite process; c, satellite process; mdf, mandibular foramen; *, groove for mental ligament. Broken line indicates missing portion of dentary.
Figure 6 in Morphology and phylogenetic relationships of a new eschrichtiid genus (Cetacea: Mysticeti) from the Early Pliocene of northern Italy
Figure 6. Eschrichtioides gastaldii gen. nov., comb. nov.. A, left dentary, medial view. B, left dentary, lateral view. C, right dentary, dorsal view. D, close-up of the left dentary showing the condyle and coronoid region in medial view. Scale bar = 15 cm in A, B and C, and 5 cm in D.
Figure 8 in Morphology and phylogenetic relationships of a new eschrichtiid genus (Cetacea: Mysticeti) from the Early Pliocene of northern Italy
Figure 8. Eschrichtioides gastaldii gen. nov., comb. nov.: postcrania. A, atlas (rostral view). B, axis (caudal view). C, lumbar vertebra (rostral view). D, caudal vertebra (lateral view). E, ribs of the right side (note double-headed rib shown by arrowhead). Scale bars = 100 mm.
Figure 4 in Morphology and phylogenetic relationships of a new eschrichtiid genus (Cetacea: Mysticeti) from the Early Pliocene of northern Italy
Figure 4. Eschrichtioides gastaldii gen. nov., comb. nov.: vertex. See Anatomical abbreviations for explanation of lettering. Scale bar = 5 cm.
Figure 11 in Morphology and phylogenetic relationships of a new eschrichtiid genus (Cetacea: Mysticeti) from the Early Pliocene of northern Italy
Figure 11. Fifty-% majority-rule strict consensus bootstrap tree; tree statistics: CI, 0.568; RI, 0.7582; HI, 0.5173; Rescaled CI, 0.3659. Numbers above branch are bootstrap support values; numbers in bold are values higher than 80%.
ScienceDex guides
Understand access before you commit
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.