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.
324
datasets available to search
ShareScore release 0.9.0
Dataset results
324 results for “Vanuatu”
FIG. 10 in Eneopterinae crickets (Insecta, Orthoptera, Grylloidea) from Vanuatu
FIG. 10. — Male genitalia: A-C, Lebinthus santoensis n. sp., in dorsal (A), ventral (B) and lateral (C) views; D-F, L. nattawa n. sp., in dorsal (D), ventral (E) and lateral (F) views. Abbreviations: see Material and methods. Scale bar: 1 mm.
FIG. 12 in Eneopterinae crickets (Insecta, Orthoptera, Grylloidea) from Vanuatu
FIG. 12. — Female copulatory papilla in ventral, dorsal and lateral views: A-C, Lebinthus santoensis n. sp.; D-F, L. nattawa n. sp.; G-I, L. malekulensis n. sp. Scale bar: 0.5 mm.
FIG. 7 in Eneopterinae crickets (Insecta, Orthoptera, Grylloidea) from Vanuatu
FIG. 7. — Female copulatory papilla in ventral,dorsal and lateral views: A-C, Cardiodactylus enkraussi Otte, 2007; D-F, C. pentecotensis n. sp.; G-I, C. cheesmani Otte, 2007; J-L, C. tankara n. sp.; M-O, C. aobaensis n. sp.; P-R, C. epiensis n. sp. Scale bars: 1 mm.
FIG. 6 in Eneopterinae crickets (Insecta, Orthoptera, Grylloidea) from Vanuatu
FIG. 6. — Apex of ovipositor in lateral view: A, Cardiodactylus enkraussi Otte, 2007; B, C. tankara n. sp.; C, C. pentecotensis n. sp.; D, C. aobaensis n. sp.; E, C. cheesmani Otte, 2007a; F, C. epiensis n. sp.; G, Lebinthus santoensis n. sp.; H, L. nattawa n. sp.; I, L. malekulensis n. sp. Scale bar: 1 mm.
FIG. 5 in Eneopterinae crickets (Insecta, Orthoptera, Grylloidea) from Vanuatu
FIG. 5.— Female FW venation:A, Cardiodactylus enkraussi Otte,2007;B, C. tankara n. sp.;C, C. aobaensis n. sp.; D, C.cheesmani Otte, 2007; E, C. epiensis n. sp. Dotted areas represent patterns of white or yellow areas. Abbreviations: see Material and methods. Scale bar: 5 mm.
FIG. 4 in Eneopterinae crickets (Insecta, Orthoptera, Grylloidea) from Vanuatu
FIG. 4. — Male genitalia: A-C, Cardiodactylus enkraussi Otte, 2007, in ventral (A), dorsal (B) and lateral (C) views; D, E, C. pentecotensis n. sp., in ventral (D) and lateral (E) views; F-H, C. tankara n. sp., in ventral (F), dorsal (G) and lateral (H) views. Abbreviations: see Material and methods. Scale bar: 1 mm.
FIG. 14 in Eneopterinae crickets (Insecta, Orthoptera, Grylloidea) from Vanuatu
FIG. 14. — Calling song of Cardiodactylus enkraussi Otte, 2007: A, oscillogram showing four single echemes (SE) and four double echemes (DE); B, spectrogram (linear amplitude); C, oscillogram of a single echeme; D, oscillogram of a double echeme; E, sonogram of a double echeme. Abbreviations: f1-f3, first (fundamental) to third harmonic frequencies; Fd, dominant frequency.
FIG. 3 in Eneopterinae crickets (Insecta, Orthoptera, Grylloidea) from Vanuatu
FIG. 3. — SEM view of stridulatory file: A, Cardiodactylus tankara n. sp.; B, Lebinthus santoensis n. sp.; C, C. enkraussi Otte, 2007; D, L. nattawa n. sp. Photos: S. Hugel. Scale bars: 100 μm.
FIG. 1 in Eneopterinae crickets (Insecta, Orthoptera, Grylloidea) from Vanuatu
FIG. 1. — Male FW venation in dorsal and lateral views: A, B, Cardiodactylus enkraussi Otte, 2007; C, D, C. tankara n. sp.; E, F, Lebinthus santoensis n. sp.; G, H, L. nattawa n. sp. Abbreviations: see Material and methods. Scale bars: 1 mm.
FIG. 16 in Eneopterinae crickets (Insecta, Orthoptera, Grylloidea) from Vanuatu
FIG. 16. — Calling song of Lebinthus santoensis n. sp.: A, oscillogram showing two successive echemes; B, detailed sonogram (top) and oscillogram (bottom) of two syllables within the slow part; C, E, detailed sonogram (top) and oscillogram (bottom) of 17 (C) and three (E) syllables within the fast part; D, spectrogram (linear amplitude). Abbreviations: f1-f3, first (fundamental) to third harmonic frequencies; Fd, dominant frequency.
FIG. 19. — Lebinthus nattawa n in Eneopterinae crickets (Insecta, Orthoptera, Grylloidea) from Vanuatu
FIG. 19. — Lebinthus nattawa n. sp.: A, habitat, B, female; C, male, in Nattawa, Espiritu Santo, Vanuatu, by day, pastured forest. Photos: T. Robillard (A, TR-114) and S. Hugel (B, C, SH-29x06a).
FIG. 22 in Gryllacrididae and Tettigoniidae (Insecta, Orthoptera, Ensifera) from Espiritu Santo, Vanuatu
FIG. 22. — Calling of Phisis holdhausi Karny, 1926: A, specimen MNHN-ENSIF2296 recorded in situ; 21°C, 22H00 (Lebinthus sp. [Eneopterinae crickets] specimens are singing on the ground all around);B, C, specimen MNHN-ENSIF2291 (other specimen responding, not collected) in situ, 21°C, 22H00.
FIG. 21 in Gryllacrididae and Tettigoniidae (Insecta, Orthoptera, Ensifera) from Espiritu Santo, Vanuatu
FIG. 21. — Phisis Stål, 1861 species from Espiritu Santo:A, C, P. holdhausi Karny, 1926; B, D, P. pseudopallida Jin & Kevan, 1992; A, B, male terminalia in dorsal view; C, D, SEM pictures of stridulatory files. Scale bars: 1 mm.
FIG. 20 in Gryllacrididae and Tettigoniidae (Insecta, Orthoptera, Ensifera) from Espiritu Santo, Vanuatu
FIG. 20. — Calling song of Salomona redtenbacheri Brongniart, 1897: A, isolated call, studio recording, specimen MNHN-ENSIF2306, 1H00, 21°C; B, specimen not collected, recorded near Butmas, down to the Tankara plateau, 17.X.2006, 20H30, 22°C; C, studio recording 6.XII.2006, specimen MNHN-ENSIF2308, 22H00, 20°C.
FIG. 18 in Gryllacrididae and Tettigoniidae (Insecta, Orthoptera, Ensifera) from Espiritu Santo, Vanuatu
FIG. 18. — Salomona redtenbacheri Brongniart, 1897: A-D face in frontal view; E, fastigium in left lateral view; F, G, left cerci in dorsal view (not exactly the same angle for both); H, SEM picture of the file; I-L, male subgenital plate in ventral view, lateral lobed are visible or not depending on the specimen preservation; M, O, male left forewing in dorsal view; N, P, male right forewing in dorsal view. A, K, M, N, specimen MNHN-ENSIF2305 and B, L, O, P, specimen MNHN-ENSIF2304 both from Penaoru, note the strong difference in size; C, G, I, holotype of S. magnifica Willemse, 1925 (UMO); D, J, holotype of S. haani Brongniart, 1897 (MNHN-ENSIF1614); E, holotype of S. redtenbacheri (MNHN-ENSIF1616). Scale bars: 1 mm.
FIG. 16 in Gryllacrididae and Tettigoniidae (Insecta, Orthoptera, Ensifera) from Espiritu Santo, Vanuatu
FIG. 16. — Calling song of Conocephalus upoluensis (Karny, 1907), specimen MNHN-ENSIF2269, 20H30, 21.5°C.
FIG. 19 in Gryllacrididae and Tettigoniidae (Insecta, Orthoptera, Ensifera) from Espiritu Santo, Vanuatu
FIG. 19. — Salomona redtenbacheri Brongniart, 1897: A, B, female holotype of S. haani Brongniart,1897 (MNHN-ENSIF1614);ovipositor in right lateral view (A); subgenital plate in ventral view (B); C, head width below the eyes as a function of head maximal width. Note that although strongly variable, these two parameters are strongly correlated. Scale bars: A, 10 mm; B, 1 mm.
FIG. 15 in Gryllacrididae and Tettigoniidae (Insecta, Orthoptera, Ensifera) from Espiritu Santo, Vanuatu
FIG. 15. — Calling songs: A, Ityocephala francoisi Bolívar, 1903 specimen MNHN-ENSIF2188, 20H30, 21°C, 2 m high, Cardiodactylus sp. (Eneopterinae cricket) and Salomona redtenbacheri Brongniart, 1897 are singing around (grey); B, C, Phaneroptera gracilis (Burmeister, 1838), the specimen MNHN-ENSIF2200 has been IR filmed in order to distinguish its call (black) from the other calls (Conocephalus sp. and crickets, in grey) 0H30, 20°C; D, Furnia insularis (Stål, 1876), the specimen MNHN-ENSIF2311 has been IR filmed in order to distinguish its calls (arrows) from the background calls (Cardiodactylus sp. and Salomona redtenbacheri, see Fig. 20) 20H00, 21°C, 3 m from the specimen; E, Pseudorhynchus lessonii Serville, 1838, specimen MNHN-ENSIF2282, 19H40, 22°C. All songs recorded in situ.
FIG. 14 in Gryllacrididae and Tettigoniidae (Insecta, Orthoptera, Ensifera) from Espiritu Santo, Vanuatu
FIG. 14. — Furnia Stål, 1876: A-C, F. incerta (Brunner von Wattenwyl, 1878) (after unpublished pictures from the holotype, NHW); D, E, F. malaya Stål, 1876 (after unpublished pictures of the holotype NHRS); F, F. bakeri Karny, 1921; A, D, frontal view of the face; B, F, ventral view of male subgenital plate; C, dorsal view of male cercus; E, female ovipositor. Scale bar: 1 mm.
FIG. 13 in Gryllacrididae and Tettigoniidae (Insecta, Orthoptera, Ensifera) from Espiritu Santo, Vanuatu
FIG. 13. — Furnia insularis (Stål, 1876): A, female holotype face in frontal view (after unpublished pictures, NHRS); B, female holotype ovipositor in right side view (after unpublished pictures, NHRS); C, female terminalia ventral view (no type specimen from Espiritu Santo, the female holotype subgenital plate is damaged);D, male left forewing anal field in dorsal view (specimen from Espiritu Santo); E, male right forewing anal field in dorsal view (specimen from Espiritu Santo); F, male cercus in dorsal view (specimen from Espiritu Santo); G, male subgenital plate (non type specimen from Samoa as the female holotype [MNHN, L. Chopard Det.]); H, SEM picture of the file. Scale bars: 1 mm.
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.