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.
3,126
datasets available to search
ShareScore release 0.9.0
Dataset results
3,126 results for “france”
Fig. 2 in The odonatan insects from the Paleocene of Menat, central France
Fig. 2. Reconstruction of forewing base of anisopteran odonatan Macrogomphus menatensis sp. nov., holotype MNT Nel 4173; from Paleocene, Menat, France.
Fig. 5 in The odonatan insects from the Paleocene of Menat, central France
Fig. 5. Reconstructions of wing of zygopteran odonatan Menatagrion hervetae gen. et sp. nov., holotype MNT Nel Odo 1; from Paleocene, Menat, France. Wing (A1), apex (A2), base (A3), base (A4), and nodus (A5) region. Scale bars 2 mm.
Fig. 7 in The odonatan insects from the Paleocene of Menat, central France
Fig. 7. Zygopteran odonatan Menatlestes palaeocenicus gen. et sp. nov., holotype MNT Nel Odo 2; from Paleocene, Menat, France. Habitus, imprint.
Fig. 11 in The odonatan insects from the Paleocene of Menat, central France
Fig. 11. Zygopteran odonatan Lestes ceresti Nel and Papazian, 1985, from Oligocene, Céreste, France. A. PNRL 2019, imprint (A1) and counterimprint (A2) of head and thorax. B. PNRL 2020, imprint of head and thorax. Scale bars 2 mm.
Fig. 12 in The odonatan insects from the Paleocene of Menat, central France
Fig. 12. Zygopteran odonatan Lestes ceresti Nel and Papazian, 1985, PNRL 2021; from Oligocene, Céreste, France. Imprint (A1, A2), counterimprint (A3). Scale bars 2 mm.
Fig. 4 in Paleocene of Menat Formation, France, reveals an extraordinary diversity of orthopterans and the last known survivor of a Mesozoic Elcanidae
Fig. 4. Habitus of Caelifera from Paleocene of Menat, France. A. Orthacanthacris incertus Piton, 1940, holotype MNHN.F.R07017. B. Ochrilidia lineata Piton, 1940, holotype, MNHN.F.R07043.
Fig. 7 in Paleocene of Menat Formation, France, reveals an extraordinary diversity of orthopterans and the last known survivor of a Mesozoic Elcanidae
Fig. 7. Tegmina of chorotypid orthopteran Paleochina spp. from Paleocene of Menat, France. A. Paleochina duvergeri gen. et sp. nov., holotype, MNT NEL 3267; A1, left wing; A2, right wing (reversed view). B. Paleochina minuta sp. nov., holotype, MNT NEL 1928. C. Paleochina minuta sp. nov., paratype, MNT BDL 1043. Scale bars 5 mm. Abbreviations: C, costa; CuA/P, cubitus anterior/posterior; CuPaα, most anterior branch of CuP; CuPaβ, median branch of CuP; CuPb, posterior branch of CuP; M, median vein; RA/P, radius anterior/posterior; ScA/P, subcostal anterior/posterior.
Fig. 6 in Paleocene of Menat Formation, France, reveals an extraordinary diversity of orthopterans and the last known survivor of a Mesozoic Elcanidae
Fig. 6. Wings and hind legs of chorotypid orthopteran Paleochina duvergeri gen. et sp. nov., holotype, MNT NEL 3267 from Paleocene of Menat, France.
Fig. 3 in Paleocene of Menat Formation, France, reveals an extraordinary diversity of orthopterans and the last known survivor of a Mesozoic Elcanidae
Fig. 3. Habitus of Ensifera from Paleocene of Menat, France. A. Prophasgonura lineatocollis Piton, 1940, holotype, MNHN.F.R07050. B. Conocephalus martyi Piton, 1940, holotype, MNHN.F.R07019.
Fig. 8 in Paleocene of Menat Formation, France, reveals an extraordinary diversity of orthopterans and the last known survivor of a Mesozoic Elcanidae
Fig. 8. Tegmen of Elcanid orthopteran Cenoelcanus menatensis gen. et sp. nov., holotype, MNHN.F.A71198 from Paleocene of Menat, France. Photograph (A1), reconstruction (A2). Abbreviations: CuA/P, cubitus anterior/posterior; CuPaα, most anterior branch of CuP; M, median vein; RA/P, radius anterior/posterior; ScP, subcostal posterior.
Fig. 2 in Paleocene of Menat Formation, France, reveals an extraordinary diversity of orthopterans and the last known survivor of a Mesozoic Elcanidae
Fig. 2. Grylloidean orthopteran Menatgryllus longixiphus gen. et sp. nov., holotype, MNT-1053 from Paleocene of Menat, France. Photograph of habitus A1), reconstruction of hind tibiae and tarsus (A2, left; A3, right).
Fig. 1 in Paleocene of Menat Formation, France, reveals an extraordinary diversity of orthopterans and the last known survivor of a Mesozoic Elcanidae
Fig. 1. Orthopteran Grylloidea sp., MNT NEL 1681 from Paleocene of Menat, France. A. Habitus. B. Apex of hind tibia.
Fig. 2 in Conulariids from the Lower Ordovician of the southern Montagne Noire, France
Fig. 2. Stratigraphic range of conulariids in the Lower Ordovician of the southern Montagne Noire. Stratigraphic column redrawn and modified from Courtessole et al. (1983). Stratigraphy based on Vizcaïno et al. (2001), Álvaro and Vizcaïno (2003), Tortello et al. (2006), and Serpagli et al. (2007).
Fig. 3 in Conulariids from the Lower Ordovician of the southern Montagne Noire, France
Fig. 3. Conulariid scyphozoan Archaeoconularia cf. insignis (Barrande, 1867), Landeyran Formation, upper Floian, Lower Ordovician; southern Montagne Noire, France. Specimens oriented with the apertural end directed toward the top of the page; arrows in A1 and B1 point to a facial midline. A. The two exposed faces of the part of the most complete specimen (MNHN.F.A71851a), which terminates in a crumpled schott (A1). Detail of the part, arrow pointing to the crumpled terminal schott (A2). B. The counterpart of the specimen in A (MNHN.F.A71851b) (B1). Detail of the apertural region of the counterpart, showing the fine ornament including some of the most clearly defined nodes (arrows) (B2).
Fig. 1 in Conulariids from the Lower Ordovician of the southern Montagne Noire, France
Fig. 1. Geology of the Montagne Noire with conulariid localities. A. Geologic sketch of the Montagne Noire. B. Geologic sketch of France showing the pre-Hercynian rocks and the location of the Montagne Noire (rectangle). C. Simplified geological map of the Minervois and Pardailhan nappes, southern Montagne Noire, with the four main areas yielding Lower Ordovician conulariids (dashed square boxes); 1, western Minervois area, Aude (ruisseau des Lavandières, vallée de l'Ourdivieille); 2, eastern Minervois area, Aude (Brama, vallée du Merlaux); 3, western Saint-Chinianais area, Hérault (Canimals, Donnadieu, Saint-Cels); 4, eastern Saint-Chinianais area, Hérault (Pech Tavernier, les Rocs Nègres, la Rouvelane, les Sources du Foulon). Maps redrawn and modified from Guérangé-Lozes and Burg (1990) and Álvaro and Vizcaïno (2001).
Fig. 3 in Marine-like isopod Heterosphaeroma priscum from a Late Paleocene freshwater system in Sézanne, France revisited
Fig. 3. Appendage views of isopod Heterosphaeroma priscum (MilneEdwards, 1868), late Thanetian of Sézanne, Marne, France. A. SU.PAL.2017. 0.2.12 (plaster cast). B. SU.PAL.2017.0.2.3.2-2. Abbreviations: pln, pleonite; prn, pereonite; prp, pereopod. Photographs RV and Rémi Brageu (SU).
Fig. 2 in Marine-like isopod Heterosphaeroma priscum from a Late Paleocene freshwater system in Sézanne, France revisited
Fig. 2. Detailed anatomy of isopod Heterosphaeroma priscum (Milne-Edwards, 1868), late Thanetian of Sézanne, Marne, France. A. SU.PAL.2017.0.2.61 (inner mold, holotype), in dorsal view. B. SU.PAL.2017.0.0.4 (plaster cast), in dorsal view. C. SU.PAL.2017.0.2.4 (C 1, body fossil anterior half; C 2, head close-up), ventral side. Abbreviations: md, mandibular palp; mxp, maxilliped; mx, maxilla; pln, pleonite; prn, pereonite; prp, pereopod. Photographs RV and Rémi Brageu (SU).
Fig. 1 in Marine-like isopod Heterosphaeroma priscum from a Late Paleocene freshwater system in Sézanne, France revisited
Fig. 1. Dorsal views of isopod Heterosphaeroma priscum (Milne-Edwards, 1868), late Thanetian of Sézanne, Marne, France. A. SU.PAL.2017.0.2.61 outer mold, holotype). B. MNHN.F.B71849 (plaster cast of lost SU.PAL.2017.0.2.61, inner mold). C. SU.PAL.2017.0.2.3.1. D. SU.PAL.2017.0.2.3.2. Abbreviations: pln, pleonite. Scale bars 3 mm. Photographs Lilian Cazes (MNHN) and Rémi Brageu (SU).
Fig. 4 in Marine-like isopod Heterosphaeroma priscum from a Late Paleocene freshwater system in Sézanne, France revisited
Fig. 4. Detailed anatomy of isopod Heterosphaeroma priscum (MilneEdwards, 1868), late Thanetian of Sézanne, Marne, France. A. SU.PAL.2017. 0.2.3.1, ventral view. B. SU.PAL.2017.0.2.3.2-1, dorsal view and leaf co-occurrence (dashed), isopod individuals (arrows). C. SU.PAL.2017.0.2.3.2-2, dorsal view. Abbreviations: pln, pleonite; plp, pleopod; prn, pereonite; prp, pereopod. Photographs RV and Rémi Brageu (SU).
Assessment of Fair Trade education programs in France: data 2022 from the control group and those from the two experimental fields (the Fair Generation scheme and the Fair Trade Universities Label)
<p><span>see the technical report (period 2019-2021) on researchgate:</span></p> <p><span><a href="https://www.researchgate.net/publication/380823820_Evaluation_of_the_fair-trade_education_programs_Results_of_the_first_phase_of_the_Fair_Future_program">(PDF) Evaluation of the fair-trade education programs. Results of the first phase of the Fair Future program (researchgate.net)</a></span></p>
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.