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.
2,335
datasets available to search
ShareScore release 0.9.0
Dataset results
2,335 results for “Fars”
Fig. 4 in Early Ordovician Conodonts from Far Western New South Wales, Australia
Fig. 4. Bar charts illustrating relative species abundances in the Lower Ordovician conodont faunas of western New South Wales.
Fig. 21. A–L in Early Ordovician Conodonts from Far Western New South Wales, Australia
Fig. 21. A–L, Prioniodus sp. cf. P. amadeus Cooper, 1981: A,B, P element, AMF120412, TAB1/78.2, A, outer lateral view, B, upper, inner lateral view; C,D, P element, AMF120413, TAB1/78.2, C, upper, antero-inner lateral view, D, postero-outer lateral view; E, Sb element, AMF120415, M/A7, inner lateral view; F, Sb element, AMF120416, M/A7, outer lateral view; G, Sc element, AMF120414, TAB1/78.2, lateral view; H,I, Sd element, AMF120417, TAB1/78.2, H, inner lateral view, I, posterior view; J,K, Sa element, AMF120418, M/A11-3, lateral views; L, M element, AMF124213, W/A11-5, anterior view. M–Q, Prioniodus sp. A: M,N, Pb element, AMF120420, M/A7, M, inner lateral view, N, anterior view; O, Pa element, AMF120419, Y4–2, outer lateral view; P, Pa element, AMF120422, Y4– 2, postero-outer lateral view; Q, Pa element, AMF120421, Y4–2, upper view. Scale bars 100 µm.
Fig. 19. A–N in Early Ordovician Conodonts from Far Western New South Wales, Australia
Fig. 19. A–N, Oepikodus pincallyensis Zhen sp. nov.: A, M element, paratype, AMF120399, M/A7, anterior view; B,C, Pa element, paratype, AMF120401, Y4–2, B, outer lateral view, C, anterior view; D,E, Pa element, paratype, AMF120402, Y4–2, D, outer lateral view, E, upper view; F, Pa element, paratype, AMF124210, M/A7, basal view; G,H, paratype, Pb element, AMF124211, Y4–2, G, outer lateral view, H, anterior view; I–L, Pb element, Holotype, AMF120398, Y4–2, I, antero-outer lateral view, J, inner lateral view, K, upper view, L, outer lateral view; M,N, M element, paratype, AMF120400, M/A/7, M, posterior view, N, postero-inner lateral view, showing basal buttress. O, Oepikodus communis (Ethington & Clark, 1964): Pb element, AMF120403, M/A11-2, outer lateral view. Scale bars 100 µm.
Fig. 11. A–O in Early Ordovician Conodonts from Far Western New South Wales, Australia
Fig. 11. A–O, Cooperignathus nyinti (Cooper, 1981): A, M element, AMF120325, M/A7, anterior view; B, M element, AMF120326, TAB1/86.7, basal view; C, Sa element, AMF120327, M/A7, lateral view; D, Sb element, AMF120328, TAB1/39.5, outer lateral view; E–J, Sb element, AMF120329, TAB1/8.1, E, upper view, F, close up of the cusp, upper view, G, outer lateral view, H, inner lateral view, I, anterior view, J, close up showing striation and basal surface, anterior view; K–M, Sc element, AMF120330, M/A7, K, outer lateral view, L, upper inner-lateral view, M, upper view; N, Sc element, AMF120331, TAB1/39.5, outer lateral view; O, Sc element, AMF120332, M/A7, inner lateral view. P–X, Baltoniodus sp. A; P,Q, M element, AMF120425, Y4–2, P, close up showing the surface sculpture, Q, anterior view; R, M element, AMF120426, Y4–2, anterior view; S, P element, AMF120423, Y4–7, inner lateral view; T,U, P element, AMF120424, M/A7, T, upper view, U, upper, outer lateral view; V, P element, AMF120284, M/A11-5, basal view; W,X, P element, AMF120285, M/A11-5, W, outer lateral view, X, upper view. Scale bars 100 µm, unless otherwise indicated.
Fig. 8. A–J in Early Ordovician Conodonts from Far Western New South Wales, Australia
Fig. 8. A–J, Bergstroemognathus kirki Stait & Druce, 1993: A, Pa element, AMF120307, M/A11-3, outer lateral view; B, Pb element, AMF120308, M/A11-3, outer lateral view; C, Pb element, AMF120309, M/A11-3, inner lateral view; D, M element, AMF120310, M/ A11-3, posterior view; E, Sa element, AMF120311, Y4–4, posterior view; F, Sa element, AMF120212, Y4–4, anterior view; G, Sb element, AMF120313, Y4–4, posterior view; H, Sc element, AMF120314, M/A11-3, posterior view; I, Sc element, AMF120315, M/ A11-3, anterior view; J, Sd element, AMF120316, M/A11-4, anterior view. K,L, Ansella jemtlandica (Löfgren, 1978): K, Sa element, AMF120317, M/A7, lateral view; L, Sa element, AMF120318, C1612, lateral view. M–Q, Acodus sp.: M–O, septicostae element, AMF120305, M/A11-3, lateral view; P, septicostae element, AMF120304, M/A11-3, lateral view; Q, quadricostae element, AMF120306, M/A11-3, lateral view. Scale bars 100 µm.
Fig. 15 in Early Ordovician Conodonts from Far Western New South Wales, Australia
Fig. 15. Drepanoistodus costatus (Abaimova, 1971): A–C, Sa element, AMF120361, TAB1/78.2, A, anterolateral view, B, lateral view, C, basal view; D, Sa element, AMF120362, C1612, basal view; E–G, M element, AMF120369, C1611, E, basal view, F, posterior view, G, anterior view; H, M element, AMF120368, TAB1/86.7, anterior view; I, Sb element, AMF120363, C1612, outer lateral view; J,K, Sb element, AMF120364, M/A11-5, J, basal view, K, inner lateral view; L, Sc element, AMF120365, M/A7, inner lateral view; M–O, Sc element, AMF120366, Y4–8, M, inner lateral view, N, basal view, O, outer lateral view; P–R, Sd element, AMF120367, Y4–7, P,Q, lateral views, R, basal view. Scale bars 100 µm.
Fig. 23. A–P in Early Ordovician Conodonts from Far Western New South Wales, Australia
Fig. 23. A–P, Protopanderodus nogamii (Lee, 1975): A, Sa element, AMF120430, C1611, basal view showing the basal cavity; B, Sa element, AMF120428, C1612, lateral view; C,D, Sb element, AMF120427, C1612, C, lateral view of the basal part showing furrow and striation, D, lateral view; E,F, Sc element, AMF120431, Y4–2, E, inner lateral view, F, outer lateral view; G,H, Sd element, AMF120429,
Fig. 24. A–D in Early Ordovician Conodonts from Far Western New South Wales, Australia
Fig. 24. A–D, Protoprioniodus yapu Cooper, 1981: A, M element, AMF120448, M/A7, posterior view; B,C, Pb element, AMF 120449, Y4–2, B, outer lateral view, C, inner lateral view; D, Pb element, AMF120450, M/A7, outer lateral view. E,F, Oneotodus sp.: E, AMF120451, M/A11-3, posterolateral view; F, AMF 124226, C1612, inner lateral view. Scale bars 100 µm.
Fig. 16. Erraticodon patu Cooper, 1981 in Early Ordovician Conodonts from Far Western New South Wales, Australia
Fig. 16. Erraticodon patu Cooper, 1981: A,B, Pa element, AMF120370, M/A11-3, A, posterobasal view, B, posterior view; C, Pa element, AMF120371, Y4–6, posterior view; D, Pb element, AMF120372, M/A4, postero-upper view; E, Pb element, AMF120373, Y4–5, antero-outer lateral view; F, Pb element, AMF120374, Y4–7, upper, anterior view; G, Pb element, AMF120375, Y4–7, upper, posterior view; H, Pb element, AMF120376, M/A4, upper, posterior view; I, Pa element, AMF120296, Y4–6, anterior view; J,K, Pb element, AMF124209, M/A7, J, antero-upper view, K, postero-upper view. Scale bars 100 µm.
Fig. 28 in Early Ordovician Conodonts from Far Western New South Wales, Australia
Fig. 28. Triangulodus larapintinensis (Crespin, 1943): A,B, Pa element, AMF120476, TAB1/85.7, A, inner lateral view, B, outer lateral view; C,D, Pb element, AMF120477, Y4–6, C, inner lateral view, D, outer lateral view; E, M element, AMF120478, Y4–6, anterior view; F, M element, AMF120479, M/A7, posterior view; G, Sa element, AMF120480, M/A7, anterior view; H, Sa element, AMF120481, Y4–6, posterolateral view; I, Sa element, AMF120482, M/A4, lateral view; J,K, Sa element, AMF124214, Y4–8, lateral views; L,M, Sb element, AMF120484, Y4–7, L, inner lateral view, M, outer lateral view; N,O, Sb element, AMF124215, Y4–8, N, inner lateral view, O, basal view; P,Q, Sc element, AMF124216, Y4–8, P, basal view, Q, inner lateral view; R,S, Sc element, AMF124217, Y4–7, R, outer lateral view, S, inner lateral view; T, Sd element, AMF124218, M/A11-3, outer lateral view; U,V, Sd element, AMF124219, Y4–8, U, posterior view, V, outer lateral view. Scale bars 100 µm.
Fig. 25 in Early Ordovician Conodonts from Far Western New South Wales, Australia
Fig. 25. Scalpellodus latus (van Wamel, 1974): A,B, Sa element, AMF120452, Y4–2, A, inner lateral view of the basal part showing the fine striae, B, lateral view; C, Sb element, AMF120453, Y4–2, inner lateral view; D, Sb element, AMF120454, M/A11-1, inner lateral view; E,H, Sd element, AMF120455, M/A7, E, inner lateral view, H, close up showing fine striae; F, Sd element, AMF120456, M/A7, posterior view; G, P element, AMF120457, TAB1/39.5, inner lateral view; I, Sd element, AMF120458, M/A7, inner lateral view; J, Sc element, AMF120459, Y4–2, lateral view. Scale bars 100 µm, unless otherwise indicated.
Figs 1, 2 in REVIEW OF THE GENUS PLATYDRACUS (COLEOPTERA: STAPHYLINIDAE) FROM THE RUSSIAN FAR EAST
Figs 1, 2. Habitus of Platydracus spp., dorsal view. 1 – P. inornatus; 2 – P. vicarius. Scale bars = 1 mm.
Fig. 1. A in The first record of the Far Eastern grass-carrying wasp Isodontia nigella (F. Smith, 1856) (Hymenoptera: Sphecidae: Sphecinae) from the Crimea
Fig. 1. A sheaf of reed canes with closing plugs of grass made by Isodontia nigella (F. Smith, 1856).
Fig. 6. Physatocheila spp. A, C in Descriptions of three new species and one subspecies of Physatocheila (Heteroptera: Tingidae) from China and the Russian Far East, with an identification key to the species of the Russian fauna
Fig. 6. Physatocheila spp. A, C, Ph. dumetorum (Herrich-Schaeffer, 1838), female, 60 km SSW of Voronezh, Russia; B, D, Ph. confinis Horváth, 1905, male, environs of Teberda, 1700 m a.s.l., North Caucasus, Russia. General appearance, dorsal view (A, B); head and pronotum, dorsolateral view (C, D). Paranotum shown by arrow. Scale bars: 1 mm.
Fig. 5. Physatocheila spp. A, C in Descriptions of three new species and one subspecies of Physatocheila (Heteroptera: Tingidae) from China and the Russian Far East, with an identification key to the species of the Russian fauna
Fig. 5. Physatocheila spp. A, C, Ph. smreczynskii China, 1952, male, southern Primorskiy Territory, Russia; B, D, Ph. orientis Drake, 1942, female, Yuzhno-Sakhalinsk, Sakhalin Island, Russia. General appearance, dorsal view (A, B); head and pronotum, dorsolateral view (C, D). Paranotum shown by arrow. Scale bars: 1 mm.
Fig. 2. Physatocheila spp. A, C, E in Descriptions of three new species and one subspecies of Physatocheila (Heteroptera: Tingidae) from China and the Russian Far East, with an identification key to the species of the Russian fauna
Fig. 2. Physatocheila spp. A, C, E, Ph. potanini sp. nov., holotype, female; B, D, F, G, Ph. miyatakei latiuscula subsp. nov., holotype, male. General appearance, dorsal view (A, B); head and pronotum, dorsolateral view (C, D); labels of holotype (E, F) and paratype (G). Paranotum shown by arrow. Scale bars: 1 mm.
Fig. 3. Physatocheila spp. A, C in Descriptions of three new species and one subspecies of Physatocheila (Heteroptera: Tingidae) from China and the Russian Far East, with an identification key to the species of the Russian fauna
Fig. 3. Physatocheila spp. A, C, Ph. distinguenda (Jakovlev, 1880), female, southern Primorskiy Territory, Russia; B, D, Ph. costata (Fabricius, 1794), male, environs of St Petersburg, Russia. General appearance, dorsal view (A, B); head and pronotum, dorsolateral view (C, D). Paranotum shown by arrow. Scale bars: 1 mm.
Fig. 1. Physatocheila spp. A, C, E, F in Descriptions of three new species and one subspecies of Physatocheila (Heteroptera: Tingidae) from China and the Russian Far East, with an identification key to the species of the Russian fauna
Fig. 1. Physatocheila spp. A, C, E, F, Ph. explanata sp. nov., holotype, male; B, D, Ph. angusta sp. nov. (B, G, holotype, male; D, paratype, female). General appearance, dorsal view (A, B); head and pronotum, dorsolateral view (C, D); labels of holotype (E, G) and paratype (F). Paranotum shown by arrow. Scale bars: 1 mm.
Fig. 4. Physatocheila spp. A, C in Descriptions of three new species and one subspecies of Physatocheila (Heteroptera: Tingidae) from China and the Russian Far East, with an identification key to the species of the Russian fauna
Fig. 4. Physatocheila spp. A, C, Ph. putshkovi Golub, 1976, paratype, female, foothills of Saur Ridge, Kazakhstan; B, D, Ph. marginulata Golub, 1976, female, holotype, southern Primorskiy Territory, Russia. General appearance, dorsal view (A, B); head and pronotum, dorsolateral view (C, D). Paranotum shown by arrow. Scale bars: 1 mm.
Mapping the core of the Tarantula Nebula with VLT-MUSE. III. A template for metal-poor starburst regions in the visual and far-ultraviolet
<p>Cumulative optical (VLT/MUSE) and far-ultraviolet (mix of HST empirical and ULLYSES templates) spectrum of NGC2070 (2x2 arcmin^2) presented in Figures 2 and 4, respectively, of Crowther & Castro (MNRAS in press, https://arxiv.org/abs/2311.07642) which should be cited if either dataset is used. </p><p>Contents:</p><p>MUSE.dat (ascii format, column 1 wavelength in Angstrom, column 2 flux in erg/s/cm^2/Ang). Further details of MUSE dataset is described in N. Castro et al. (2018 A&A 614 A147)</p><p>ULLYSES.dat (ascii format, column 1 wavelength in Angstrom, column 2 flux in erg/s/cm^2/Ang, some detector gaps). Further details of ULLYSES survey is described in R. Roman-Duval et al. (2020, Research Notes of AAS, 4, 205)</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.