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.
29,350
datasets available to search
ShareScore release 0.9.0
Dataset results
29,350 results for “new records”
Fig. 23 in Twelve new species of Platypalpus Macquart (Diptera: Hybotidae) from Morocco, with additional new records
Fig. 23. Platypalpus shamshevi Zouhair & Grootaert sp. nov., male terminalia (holotype, RBINS). A. Right epandrial lamella. B. Epandrium with cerci. C. Left epandrial lamella. Scale bar = 0.1 mm.
Fig. 4 in Twelve new species of Platypalpus Macquart (Diptera: Hybotidae) from Morocco, with additional new records
Fig. 4. Platypalpus taninensis Zouhair & Grootaert sp. nov., male terminalia (holotype, RBINS). A. Right epandrial lamella with detail of apex. B. Epandrium, dorsal view. C. Left epandrial lamella. D. Cerci, dorsal view. Scale bar = 0.1 mm.
Fig. 28 in Twelve new species of Platypalpus Macquart (Diptera: Hybotidae) from Morocco, with additional new records
Fig. 28. Platypalpus albocapillatus Fallén, 1815, male habitus (Oued El Kannar (Douar Assoul), RBINS).
Fig. 8. Platypalpus palmeni Frey, 1943 in Twelve new species of Platypalpus Macquart (Diptera: Hybotidae) from Morocco, with additional new records
Fig. 8. Platypalpus palmeni Frey, 1943, ♂ (holotype, MZH, Luomus, Helsinki). A. Habitus with detail of hind femur. B. Detail of mid femur and mid tibia with small apical spur. Scale bars = 0.5 mm. Photos: Jere Kahanpää.
Fig. 1 in Twelve new species of Platypalpus Macquart (Diptera: Hybotidae) from Morocco, with additional new records
Fig. 1. Location of the studied sites in Morocco. Details on the individual sites are available in Table 1.
Fig. 11 in Twelve new species of Platypalpus Macquart (Diptera: Hybotidae) from Morocco, with additional new records
Fig. 11. Platypalpus atlasensis Zouhair & Grootaert sp. nov., male terminalia (holotype, LESCB). A. Right epandrial lamella. B. Epandrium with cerci. C. Left epandrial lamella. D. Left cercus, lateral view. E. Left cercus, ventral view. Scale bar = 0.1 mm.
Fig. 19 in Twelve new species of Platypalpus Macquart (Diptera: Hybotidae) from Morocco, with additional new records
Fig. 19. Platypalpus imlilensis Grootaert & Zouhair sp. nov., male terminalia (holotype, RBINS). A. Right epandrial lamella. B. Epandrium with cerci. C. Left epandrial lamella. Scale bar = 0.1 mm.
Fig. 27 in Twelve new species of Platypalpus Macquart (Diptera: Hybotidae) from Morocco, with additional new records
Fig. 27. Platypalpus brevicornoides Zouhair & Grootaert sp. nov., ♂♂, habitus. A. Specimen with antennae entirely black (holotype, RBINS). B. Specimen with pedicel yellow at the base and the legs with fore and mid tibia ventrally, and apical and basal parts of hind tibia dark (paratype from Amrah, RBINS). Scale bars = 0.5 mm.
Fig. 26 in Twelve new species of Platypalpus Macquart (Diptera: Hybotidae) from Morocco, with additional new records
Fig. 26. Platypalpus brevicornoides Zouhair & Grootaert sp. nov., male terminalia (holotype, RBINS). A. Right epandrial lamella. B. Epandrium, dorsal view. C. Left cercus in lateral view, left epandrial lamella and apex of hypandrium. Scale bar = 0.1 mm.
Fig. 21 in Twelve new species of Platypalpus Macquart (Diptera: Hybotidae) from Morocco, with additional new records
Fig. 21. Platypalpus nigritellus Zouhair & Grootaert sp. nov., male terminalia (holotype, RBINS). A. Right epandrial lamella. B. Epandrium with cerci. C. Left epandrial lamella. Scale bar = 0.1 mm.
Fig. 15 in Twelve new species of Platypalpus Macquart (Diptera: Hybotidae) from Morocco, with additional new records
Fig. 15. Platypalpus fatnae Zouhair & Grootaert sp. nov., male terminalia (holotype, LESCB). A. Right epandrial lamella. B. Epandrium with cerci and detail of tip of left cercus in lateral view. C. Left epandrial lamella. Scale bar = 0.1 mm.
Fig. 17 in Twelve new species of Platypalpus Macquart (Diptera: Hybotidae) from Morocco, with additional new records
Fig. 17. Platypalpus pauli Zouhair & Grootaert sp. nov., male terminalia (holotype, RBINS). A. Right epandrial lamella. B. Epandrium with cerci. C. Apex of right surstylus. D. Left epandrial lamella. Scale bar = 0.1 mm.
Figures 3–4 in The large carpenter bee Xylocopa augusti (Hymenoptera: Apidae): New record for Chile
Figures 3–4. Distribution of Xylocopa (Neoxylocopa) augusti Lepeletier de Saint Fargeau. 3. New record in central Chile (Santiago, Metropolitan area). 4. South American countries (in gray) from which this species is currently known (Moure, 2007).
Figures 1–2 in The large carpenter bee Xylocopa augusti (Hymenoptera: Apidae): New record for Chile
Figures 1–2. Xylocopa (Neoxylocopa) augusti Lepeletier de Saint Fargeau. 1. Female. 2. Male on Passiflora sp. (Passifloraceae).
Fig. 6 in The oldest fossil record of the extant penguin genus Spheniscus-a new species from the Miocene of Peru
Fig. 6. Simpson's (1941) ratio−diagram of the main long bones of all extant and fossil Spheniscus species and some more fossil penguin species. The differences of the limb bone measurements, converted into logarithms, are shown in ratio to those of the chosen standard, Spheniscus humboldti. The horizontal distance between the points, marking the same bone elements of different taxa, is proportional to the ratio of their real dimensions. It is essentially: log (mean of measurement of compared taxon) – log (mean of measurement of standard taxon) = log (mean of measurement of compared taxon / mean of measurement of standard taxon). L, length; GL, greatest length. Fossil taxa are indicated by an asterisk.
Fig. 5 in The oldest fossil record of the extant penguin genus Spheniscus-a new species from the Miocene of Peru
Fig. 5. Comparison of proximal humerus (in proximal view) of Spheniscus muizoni sp. nov. (A) and Spheniscus humboldti Meyen, 1834 (B), showing the difference in the development of the lip−like projection proximally bordering the fossa pneumotricipitalis. Not to scale.
Fig. 2 in The oldest fossil record of the extant penguin genus Spheniscus-a new species from the Miocene of Peru
Fig. 2. Spheniscid penguin Spheniscus muizoni sp. nov. from Cerro la Bruja, latest middle/earliest late Miocene, Pisco Formation, Peru. A. Left scapula (MNHN PPI 147b) cranial end, in medial (A1) and lateral (A2) views. B. Left ulna (MNHN PPI 147d), in ventral (B1) and dorsal (B2) views. C. Left humerus (MNHN PPI 147c), in caudal (C1), cranial (C2), and distal (C3) views. D. Left radius (MNHN PPI 150), in dorsal (D1) and ventral (D2) views. E. Cranial portion of sternum (MNHN PPI 147i), in cranial (E1) and ventral (E2) views. F. Left coracoid (MNHN PPI 147a), in ventral (F1), ventrolateral (F2), and dorsal (F3) views. G. Right carpometacarpus (MNHN PPI 154), in ventral (G1) and dorsal (G2) views.
Fig. 1 in The oldest fossil record of the extant penguin genus Spheniscus-a new species from the Miocene of Peru
Fig. 1. Geographic position of the latest middle/earliest late Miocene locality Cerro La Bruja, and further fossil penguin bearing localities in the Pisco Formation, Peru. Modified after McDonald and Muizon (2002: fig. 1).
Fig. 4 in The oldest fossil record of the extant penguin genus Spheniscus-a new species from the Miocene of Peru
Fig. 4. Morphological differences between Spheniscus muizoni sp. nov. (A, C, E, G, I) and Spheniscus chilensis Emslie and Correa, 2003, paratype material from UF (B, D, F, H, J). A, B. Right humerus, in cranial (A1, B1), caudal (A2, B2), ventral (A3, B3), and distal (A4) views. C, D. Right carpometacarpus, in dorsal view. E, F. Right tibiotarsus, in cranial (E1, F1), caudal (E2, F2), and medial (E3, F3) views. G, H. Right tarsometatarsus, in dorsal (G1, H1), plantar (G2, H2), and distal (G3, H3) views. I, J. Right femur, in distal view.
Fig. 3 in The oldest fossil record of the extant penguin genus Spheniscus-a new species from the Miocene of Peru
Fig. 3. Spheniscid penguin Spheniscus muizoni sp. nov. from Cerro la Bruja, latest middle/earliest late Miocene, Pisco Formation, Peru. A. Right tibiotarsus (MNHN PPI 147f), in medial (A1), caudal (A2), lateral (A3), and cranial (A4) views. B. Right femur (MNHN PPI 147e), distal end, distal view (B1), proximal end, caudal view (B2), distal end, caudal view (B3), proximal end, cranial view (B4), and distal end, cranial view (B5). C. Right tarsometatarsus (MNHN PPI 147h), in dorsal (C1) and plantar (C2) views. D. Synsacrum (MNHN PPI 147l), in dorsal (D1) and caudal (D2) views. E. Pygostyl (MNHN PPI 152), in lateral view. F. Thoracic vertebrae T3−7? (MNHN PPI 147), in lateral view. G. Thoracic vertebra T4? (MNHN PPI 147), in caudal (G1) and cranial (G2) views. H. Cervical vertebra C12? (MNHN PPI 147), in caudal (H1) and dorsal (H2) views.
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.