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.
700
datasets available to search
ShareScore release 0.9.0
Dataset results
700 results for “fossil record”
Fig. 4 in Africanacetus from the sub-Antarctic region: The southernmost record of fossil beaked whales
Fig. 4. The beaked whale Africanacetus sp., skull (YugNIRO 409) in posterior view. A. Photograph. B. Explanatory drawing.
Fig. 6 in Africanacetus from the sub-Antarctic region: The southernmost record of fossil beaked whales
Fig. 6. Geographical range of the beaked whale Africanacetus. 1, type area; 2, Banzare Bank (from where the present material was recovered).
Fig. 2 in Africanacetus from the sub-Antarctic region: The southernmost record of fossil beaked whales
Fig. 2. The beaked whale Africanacetus sp., skull (YugNIRO 409) in ventral view. A. Photograph. B. Explanatory drawing.
Fig. 1 in Africanacetus from the sub-Antarctic region: The southernmost record of fossil beaked whales
Fig. 1. The beaked whale Africanacetus sp., skull in dorsal view. A. YugNIRO 409, photograph (A1) and explanatory drawing (A2). B. YugNIRO 408.
Fig. 5 in Africanacetus from the sub-Antarctic region: The southernmost record of fossil beaked whales
Fig. 5. The beaked whale Africanacetus sp. (YugNIRO 408), narial region of the skull in ventral view.
Fig. 1. A in First record of the fossil dragonfly family Eumorbaeschnidae from the Upper Jurassic of Poland
Fig. 1. A. Middle Volgian (= Upper Tithonian) palaeofacial map of Poland (after Gaździcka, 1998, slightly modified). B. Road map of Tomaszów Mazowiecki area showing location of Owadów−Brzezinki quarry. B. Stratigraphical position of the sedimentary sequence cropped out in the quarry at Owadów−Brzezinki showing the successive sedimentary units I–III of the Middle Volgian (= Upper Tithonian) strata. Z. reg., Zaraiskites regularis.
Fig. 2 in First record of the fossil dragonfly family Eumorbaeschnidae from the Upper Jurassic of Poland
Fig. 2. Dragonfly Eumorbaeschna adriankini sp. nov., holotype ZPAL J1/O−B1; Upper Tithonian, Owadów−Brzezinki quarry, Poland. Forewing in ventral view (A) and explanatory drawing (B). Abbreviations: CuA, cubitus anterior; IR, interrradius; MA, media anterior; MP, media posterior; Mspl, median supplement; RA, radius anterior; RP, radius posterior; Rspl, radial supplement; ScP, subcosta posterior.
Fig. 1. 3D in First fossil record of polypore fungus beetles from Lower Cretaceous amber of France
Fig. 1. 3D reconstruction of the holotype of polypore fungus beetle Synchrotronia idinineteena Soriano and Pollock gen. et sp. nov., University of Rennes I, Archingeay-Les Nouillers, Albian. Specimen tomographied in beamline ID19 of the ESRF, at 30 keV and 5.06 μ voxel size. In ventral (A), lateral (B, C), dorsal (D), frontal (E), and posterior (F) views.
Fig. 2 in First fossil record of polypore fungus beetles from Lower Cretaceous amber of France
Fig. 2. Sagittal cut of the 3D volume of the holotype of polypore fungus beetle Synchrotronia idinineteena Soriano and Pollock gen. et sp. nov., University of Rennes I, Archingeay-Les Nouillers, Albian. Arrows mark the wings preserved under the collapsed notum.
Fig. 1 in Commensalism in the fossil record: Eunicid polychaete bioerosion on Pliocene solitary corals
Fig. 1. Palaeogeographical map of the Western Mediterranean during the Piacenzian (Early Pliocene) showing the location of the basins that have provided the study material: 1, Liguria (NW Italy); 2, Alpes−Maritimes (SE France); 3, Roussillon (SE France); 4, Alt Empordà (Catalonia, NE Spain); 5, Baix Llobregat (Catalonia, NE Spain); 6, Baix Ebre (Catalonia, NE Spain); 7, Níjar−Almería (Andalusia, SE Spain); 8, Vélez−Málaga (Andalusia, SE Spain); 9, Estepona (Andalusia, SE Spain).
Fig. 5 in Commensalism in the fossil record: Eunicid polychaete bioerosion on Pliocene solitary corals
Fig. 5. Recent polychaete Lumbrineris flabellicola (Fage, 1936) infesting alive caryophyllids. Pictures by Alan and Eve Southward, from the Marine Biological Association, UK; reproduced with permission.
Fig. 3 in Commensalism in the fossil record: Eunicid polychaete bioerosion on Pliocene solitary corals
Fig. 3. Polychaete trace fossil Sulcichnus maeandriformis on Flabellum sp. from different Lower Pliocene sites. Pairs of pictures correspond to both sides of a single corallite and show the specular symmetry of the boring. A. Paratype, MMPE/Ic001.003.001, Bizcornil, Estepona. B. Paratype, MMPE/Ic001. 002.001, Velerín, Estepona. C. Holotype, MMPE/Ic001.001.001, Velerín, Estepona. D. Paratype, MMPE/Ic001.004.001, Velerín, Estepona. E. Paratype, MMPE/Ic001.005.001, Velerín, Estepona. F. Paratype, JMC−UB/I−0087, Vila−robau, Alt Empordà. G. JMC−UB/I−0130, Rio Torsero, Liguria. H. JMC−UB/I−0089, Vila−robau, Alt Empordà. I. UG−N−P−0117, Almería−Níjar. Scale bars 10 mm.
Fig. 4 in Commensalism in the fossil record: Eunicid polychaete bioerosion on Pliocene solitary corals
Fig. 4. Examples of the three Sulcichnus ichnospecies. Sulcichnus sigillum on Trochocyathus sp. Pairs of pictures correspond to both sides of a single corallite, showing the specular symmetry of the groove. A. Paratype, MMPE/Ic003.002.001, Arroyo Vaquero, Estepona. B. Paratype, MMPE/Ic003.003.001, Velerín, Estepona. C. Holotype, MMPE/Ic003.001.001, Parque Antena, Estepona. S. helicoidalis on Trochocyathus sp. D. Paratype, MMPE/Ic002.002.001, La Lobilla, Estepona. S. helicoidalis on Flabellum sp. E. Holotype, MMPE/Ic002.001.001, Velerín, Estepona. F. Paratype, JMC−UB/I−0086, Vila−robau, Alt Empordà. G. MGSC−3523, Baix Llobregat. H. MGSC−3524, Baix Llobregat. S. maeandriformis on Ceratotrochus sp., Rio Torsero, Liguria. I. MGPUT−I−001. J. MGPUT−I−002. K. MGPUT−I−003. L. MGPUT−I−004. Scale bars 10 mm.
Fig. 2 in Commensalism in the fossil record: Eunicid polychaete bioerosion on Pliocene solitary corals
Fig. 2. Idealized models of Sulcichnus maeandriformis (A), Sulcichnus helicoidalis (B), and Sulcichnus sigillum (C).
Fig. 9 in New fossil triakid sharks from the early Eocene of Prémontré, France, and comments on fossil record of the family
Fig. 9. Distribution of living triakid genera (areas) and their fossil relatives (geometric symbols) compiled from the literature. The number of symbols (plotting the fossil evidence) is intentionally reduced for western Europe and southeastern USA. Living Mustelus is circumglobal in all temperate and tropical seas and is not figured on the map.
Fig. 1. A in New fossil triakid sharks from the early Eocene of Prémontré, France, and comments on fossil record of the family
Fig. 1. A. Location of the Prémontré Abbey (Aisne, northern France). B. Simplified stratigraphic column of Prémontré with fossiliferous (2–3) and non−fossiliferous (4–12) levels (from Dégrémont et al. 1985: 12).
Fig. 5. Triakid shark Gomphogaleus rodgersi Case, 1994 in New fossil triakid sharks from the early Eocene of Prémontré, France, and comments on fossil record of the family
Fig. 5. Triakid shark Gomphogaleus rodgersi Case, 1994. Prémontré Abbey, late Ypresian. A. UM−PRE 16, anterior tooth, labial face (A1), profile view (A2), and lingual face (A3). B. UM−PRE 17, holotype, antero−lateral tooth, labial face (B1), apical view (B2), and lingual face (B3).
Fig. 7 in New fossil triakid sharks from the early Eocene of Prémontré, France, and comments on fossil record of the family
Fig. 7. Triakid shark Pachygaleus lefevrei (Daimeries, 1891). Prémontré Abbey, late Ypresian. A. UM−PRE 19, anterior tooth, labial face. B. UM−PRE 20, antero−lateral tooth, labial face. C. UM−PRE 21, lateral tooth, labial (C1) and lingual (C2) faces.
Fig. 8 in New fossil triakid sharks from the early Eocene of Prémontré, France, and comments on fossil record of the family
Fig. 8. Fossil record of triakid genera plotted against simplified phylogenetic relationships of extant Triakidae (from Lopez et al. 2006 in part). See text and Appendix 2 for discussion and details.
Fig. 6. Triakid shark Mustelus aff. M. vanderhoefti Herman, 1982 in New fossil triakid sharks from the early Eocene of Prémontré, France, and comments on fossil record of the family
Fig. 6. Triakid shark Mustelus aff. M. vanderhoefti Herman, 1982. Prémontré Abbey, late Ypresian. UM−PRE 18, lateral tooth, lingual face (A), profile view (B), occlusal face (C), and basal face (D).
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.