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.
69
datasets available to search
ShareScore release 0.9.0
Dataset results
69 results for “Cetotheriidae”
FIG. 1 in The anatomy and relationships of Piscobalaena nana (Cetacea, Mysticeti), a Cetotheriidae s.s. from the early Pliocene of Peru
FIG. 1. — Piscobalaena nana, holotype (SMNK Pal 4050), skull: A, dorsal view; B, ventral view. Scale bar: 10 cm.
Fig. 1 in Cetotheriidae (Cetacea, Mysticeti) From The Collections Of The National Geological Museum, Bucharest (Romania)
Fig. 1. Location of the studied area in Romania (left) and the geological structures and location of the fossiliferous localities (right) in Gorj County (modified after Codarcea et al., 1968): 1 — Igneous rocks; 2 — Sarmatian s. l.; 3 — Maeotian; 4 — Upper Besarabian–Maeotian; 5 — Holocene; 6 — Pleistocene; 7 — Volhynian–Lower richnessBessarabian(Bercia; 8 —et al., fossiliferous 1968). Theselocality. deposits are situated in the Novaci depression and continue to the east and to the west, as well as south of the Ciocadia–Săcel anticline (Bercia et al., 1968). The paleontological content is also represented by invertebrate species such as: Unio cf. subrecurvus Teisseyre 1907, Radix cf. velutina Deshayes 1838, and Congeria navicula Andrusov 1897 (Popescu, 1955; Bercia et al., 1968). The last sedimentary sequence, situated east of the Cerna River, on the northern rim of the Dacian Basin is composed of detritic deposits containing rare Mactra Linnaeus 1767 remains, characteristic of the Bessarabian and Khersonian, while eastwards, towards Râmnicu Vâlcea these detritic deposits overlay the Lower Bessarabian formations with C. pesanseris, and above these, the Maeotian deposits, predominantly detritic, composed of sands and sandy marls with gravel interlays follow (Bercia et al., 1968).
Fig. 3 in Cetotheriidae (Cetacea, Mysticeti) From The Collections Of The National Geological Museum, Bucharest (Romania)
Fig. 3. Cetotheriidae lumbar vertebrae: 10.068 in: A — cranial view; B — caudal view; C — lateral view; D — dorsal view; E — ventral view; 10.064 in: F — cranial view; G — caudal view; H — lateral view; I — dorsal view; J — ventral view; 10.066 in: K — cranial view; L — caudal view; M — lateral view; N — dorsal view; O — ventral view; 10.069 in: P — cranial view; Q — caudal view; R — lateral view; S — dorsal view; T — ventral view; 21.115 in: U — cranial view; V — caudal view; W — lateral view; X — dorsal view; Y — ventral view. Scale bar 10 mm.
Fig. 2 in Cetotheriidae (Cetacea, Mysticeti) From The Collections Of The National Geological Museum, Bucharest (Romania)
Fig. 2. Cetotheriidae caudal vertebrae: 10.096 in: A — cranial view; B — caudal view; C — lateral view. D — dorsal view; E — ventral view; 10.067 in: F — cranial view; G — caudal view; H — lateral view; I — dorsal view; J — ventral view; 10.143 in: K — cranial view; L — caudal view; M — lateral view; N — dorsal view; O — ventral view; 21.113 in: P — cranial view; Q — caudal view; R — lateral view; S — dorsal view; T — ventral view; 21.114 in: U — cranial view; V — caudal view; W — lateral view; X — dorsal view; Y — ventral view; 21.116 in: Z — cranial view; A` — caudal view; B` — lateral view; C` — dorsal view; D` — ventral view; 21.117 in: E` — cranial view; F` — caudal view; G` — lateral view; H` — dorsal view; I` — ventral view; 21.118 in: J` — cranial view; K` — caudal view. L` — lateral view; M` — dorsal view; N` — ventral view; 10.097 in: O` — cranial view; P` — caudal view; Q` — lateral view; R` — Dorsal view; S` — ventral view. Scale bar 10 mm.
Fig. 4 in Cetotheriidae (Cetacea, Mysticeti) From The Collections Of The National Geological Museum, Bucharest (Romania)
Fig. 4. Mithridatocetus sp. humerus 21.112 in: A — anterior view; B — posterior view; C — ventral view; D — dorsal view. Scale bar 10 mm.
FIG. 24 in The anatomy and relationships of Piscobalaena nana (Cetacea, Mysticeti), a Cetotheriidae s.s. from the early Pliocene of Peru
FIG. 24. — Piscobalaena nana, MNHN SAS 1617, right ribs. Scale bar: 20 cm.
FIG. 7 in The anatomy and relationships of Piscobalaena nana (Cetacea, Mysticeti), a Cetotheriidae s.s. from the early Pliocene of Peru
FIG. 7. — Piscobalaena nana, lateral view of the skull (MNHN SAS 1617). Scale bar: 20 cm.
Data from: A systematic review of cetothere baleen whales (Cetacea, Cetotheriidae) from the Late Miocene of Crimea and Caucasus, with a new genus
Nine taxa of Miocene baleen whales were described from the Black Sea region under the name Cetotherium before 1951, and a further four closely related species representing three genera have been added in recent years. This rich diversity requires taxonomic revision and ordering. Here, a new genus, Mithridatocetus, is described from the Tortonian of Crimea and Caucasus, with two species, M. eichwaldi and M. adygeicus (originally Kurdalagonus adygeicus); 'Cetotherium' mayeri (a nomen dubium) is also a member of this genus. In comparison with other Cetotheriinae, Mithridatocetus is distinguished by the autapomorphic shape of the tympanic bulla with the swollen main ridge, the lowered anterior portion of the involucrum and the oblique anterolateral margin; such synapomorphies, as a transversely narrow squamosal with the ventromedially oriented postglenoid process (shared with Eucetotherium), a squamosal cleft (shared with Kurdalagonus) and an oval surface of the compound posterior process of the tympanoperiotic on the posterolateral skull wall (shared with Brandtocetus); and a unique combination of a high neurocranium and a long and robust paroccipital process. The genus Kurdalagonus is redefined here as containing only one described species, K. mchedlidzei. Therefore, the group Cetotheriinae is now restricted to the latest Serravallian and Tortonian of the Eastern Paratethys and includes at least five genera: Cetotherium, Brandtocetus, Kurdalagonus, Mithridatocetus and Zygiocetus. In addition, ?Cetotherium priscum and C. incertum are considered to be nomina dubia; 'Cetotherium' klinderi and 'Cetotherium' pusillum require more complete specimens for reassessment; 'Cetotherium' maicopicum and Eucetotherium helmersenii require further research to identify their taxonomical affinities.
Figure 16 in Herpetocetus morrowi (Cetacea: Mysticeti), a new species of diminutive baleen whale from the Upper Pliocene (Piacenzian) of California, USA, with observations on the evolution and relationships of the Cetotheriidae
Figure 16. Herpetocetus morrowi sp. nov., UCMP 124950, illustrated right temporal wall of holotype skull in lateral view showing configuration of anatomical elements.
Figure 34 in Herpetocetus morrowi (Cetacea: Mysticeti), a new species of diminutive baleen whale from the Upper Pliocene (Piacenzian) of California, USA, with observations on the evolution and relationships of the Cetotheriidae
Figure 34. Herpetocetus morrowi sp. nov., UCMP 124950, holotype thoracic vertebrae. A, vertebra #6, anterior view; B, adjoined vertebrae and rib fragment, anterior view; C, vertebra #6, posterior view; D, adjoined vertebrae and rib fragment, posterior view; E, vertebra #6, dorsal view; F, adjoined vertebrae and rib fragment, dorsal view. Scale bar = 5 cm.
Figure 37 in Herpetocetus morrowi (Cetacea: Mysticeti), a new species of diminutive baleen whale from the Upper Pliocene (Piacenzian) of California, USA, with observations on the evolution and relationships of the Cetotheriidae
Figure 37. Phylogram showing the strict consensus of five most parsimonious trees (348 steps, consistency index = 0.4785, retention index = 0.6533) recovered during analysis. Numerical values to the left of nodes are Bremer support values and bootstrap support values, respectively. Nodes that received a bootstrap score of less than 50% are denoted with '-'.
Figure 28 in Herpetocetus morrowi (Cetacea: Mysticeti), a new species of diminutive baleen whale from the Upper Pliocene (Piacenzian) of California, USA, with observations on the evolution and relationships of the Cetotheriidae
Figure 28. Herpetocetus morrowi sp. nov., UCMP 124950, left holotype dentary. A, dorsal view; B, lateral view; C, ventral view; D, medial view (mirrored horizontally) with transverse cross-sections. Scale bar = 10 cm.
Figure 9 in Herpetocetus morrowi (Cetacea: Mysticeti), a new species of diminutive baleen whale from the Upper Pliocene (Piacenzian) of California, USA, with observations on the evolution and relationships of the Cetotheriidae
Figure 9. Herpetocetus morrowi sp. nov., SDNHM 65781, paratype skull. A, dorsal view; B, ventral view. Scale bar = 10 cm.
Figure 8 in Herpetocetus morrowi (Cetacea: Mysticeti), a new species of diminutive baleen whale from the Upper Pliocene (Piacenzian) of California, USA, with observations on the evolution and relationships of the Cetotheriidae
Figure 8. Herpetocetus morrowi sp. nov., UCMP 124950, holotype skull. A, posterior view; B, illustrated posterior view showing major anatomical features. Scale bar = 10 cm.
Figure 20 in Herpetocetus morrowi (Cetacea: Mysticeti), a new species of diminutive baleen whale from the Upper Pliocene (Piacenzian) of California, USA, with observations on the evolution and relationships of the Cetotheriidae
Figure 20. Herpetocetus morrowi sp. nov., SDNHM 125833, left referred squamosal. A, dorsal view; B, ventral view; C, lateral view. Scale bar = 5 cm.
Figure 7 in Herpetocetus morrowi (Cetacea: Mysticeti), a new species of diminutive baleen whale from the Upper Pliocene (Piacenzian) of California, USA, with observations on the evolution and relationships of the Cetotheriidae
Figure 7. Herpetocetus morrowi sp. nov., UCMP 124950, holotype skull. A, anterodorsal view; B, illustrated anterodorsal view showing major anatomical features.
Figure 5 in Herpetocetus morrowi (Cetacea: Mysticeti), a new species of diminutive baleen whale from the Upper Pliocene (Piacenzian) of California, USA, with observations on the evolution and relationships of the Cetotheriidae
Figure 5. Herpetocetus morrowi sp. nov., UCMP 124950, illustrated holotype skull in ventral view showing anatomical features. LPF, lateral palatal foramen. Scale bar = 10 cm.
Figure 4 in Herpetocetus morrowi (Cetacea: Mysticeti), a new species of diminutive baleen whale from the Upper Pliocene (Piacenzian) of California, USA, with observations on the evolution and relationships of the Cetotheriidae
Figure 4. Herpetocetus morrowi sp. nov., UCMP 124950, holotype skull in ventral view. Scale bar = 10 cm.
Figure 3 in Herpetocetus morrowi (Cetacea: Mysticeti), a new species of diminutive baleen whale from the Upper Pliocene (Piacenzian) of California, USA, with observations on the evolution and relationships of the Cetotheriidae
Figure 3. Herpetocetus morrowi sp. nov., UCMP 124950, illustrated holotype skull in dorsal view showing anatomical features. DMF, dorsal maxillary foramen. Scale bar = 10 cm.
Figure 1 in Herpetocetus morrowi (Cetacea: Mysticeti), a new species of diminutive baleen whale from the Upper Pliocene (Piacenzian) of California, USA, with observations on the evolution and relationships of the Cetotheriidae
Figure 1. Herpetocetus morrowi sp. nov. A, illustrated quarry map of UCMP 124950 as discovered in the field showing the configuration of visible bone elements; B, inferred position of known bone elements of H. morrowi within the body; C, overhead view of the field excavation of UCMP 124950; D, oblique view of the field excavation of UCMP 124950. Numbers in A are those assigned in the field during excavation of the specimen as referred to in the text: 1, lumbar(?) vertebra; 2, lumbar vertebra; 4, lumbar vertebra; 5, lumbar vertebra; 6, thoracic vertebra; 7, vertebral epiphysis; 8, rib; 9, rib.
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.