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.
18
datasets available to search
ShareScore release 0.9.0
Dataset results
18 results for “Caenohalictus”
Figure 9 in Behavior and nest architecture of the bee Caenohalictus alexandrei (Hymenoptera, Halictinae)
Figure 9. Pollinic resource used by C. alexandrei. (A-B) Taraxacum officinale: (A) Flower with adult female; (B) Pollen grains; (C-D) Bidens pilosa: (C) Flowers; (D) Pollen grains; (E-F) Senecio madagascariensis, (E) Flower with adult female; (F) Pollen grains. Scale: 100 µm.
Figure 8 in Behavior and nest architecture of the bee Caenohalictus alexandrei (Hymenoptera, Halictinae)
Figure 8. Breeding cells of C. alexandrei. (A-B) Eggs on pollen mass in the cell; (C-F) Larvae: (C) Young larva; (D-E) Larvae in intermediate stage with pollen in their digestive tract; (F) Mature larva; (G-H) Pupae: (H) Young pupa; (G) Mature pupa.
Figure 6 in Behavior and nest architecture of the bee Caenohalictus alexandrei (Hymenoptera, Halictinae)
Figure 6. Internal architecture of nests of C. alexandrei. (A) Nest 2; (B) Nest 8; (C) Nest 1; (D) Nest 4. ♀ and ♂ indicating on sex of adult bees, female and male respectively, ♀ + indicate dead females. Scale: 2 cm.
Figure 3. Nests C in Behavior and nest architecture of the bee Caenohalictus alexandrei (Hymenoptera, Halictinae)
Figure 3. Nests C. alexandrei in the earth banks. (A-B) aggregations of nests: (A) nesting site C; (B) nesting site Z: (C-F) Open nests entrances with traces of soil falling down the bank: (G-H) Close nests entrances with soil. Red arrows indicate the open entrances of the nest. Red circles indicate the close entrance of the nest.
Figure 5 in Behavior and nest architecture of the bee Caenohalictus alexandrei (Hymenoptera, Halictinae)
Figure 5. Nests of C. alexandrei in the earth banks. (A) Female leaving the nest to perform foraging activity; (B, D-E) Female arrival and entry to the nest with a load of pollen in her hind femoral, tibial and ventral scopa and contact with the guardian female; (C) Female performing guarding activity in the entrance of the nest and waiting for the returns of another nest female′s; (F) Exit of the guardian female to forage just after the return of another adult female from the nest.
Figure 2 in Behavior and nest architecture of the bee Caenohalictus alexandrei (Hymenoptera, Halictinae)
Figure 2. Nesting sites of C. alexandrei on earth banks in Colombia. (A) nesting site Z (Zipaquirá – San Jorge); (B) nesting site C (Cajicá – UMNG); (C-D) Red arrows indicate the entrance of the nest in the earth banks.
Figure 1 in Behavior and nest architecture of the bee Caenohalictus alexandrei (Hymenoptera, Halictinae)
Figure 1. Geographical location of the nesting sites. Green area represents the Cundinamarca department. Gray area corresponds to the municipality of Zipaquirá with the nesting site Z (red circle) and brown area corresponds to the municipality of Cajicá with the nesting site C (blue circle).
FIGURES 20–23. Genital capsule males.20–21 in Two new species of Caenohalictus Cameron, 1903 (Hymenoptera: Halictidae) from Colombia
FIGURES 20–23. Genital capsule males.20–21:C. sabanaensis n. sp., 20, dorsal view, 21, ventral view; 22–23: C. alexandrei n. sp., 22,dorsal view, 23,ventral view. Scale 200 µm. G—gonostylus, igp—Inner gonostylar plate, igpp—Inner gonostylar plate projections, opg—outer gonostilar plate,V—penis valves, P—penis, Dl—Dorsal lamina of the valve, Vo— volsella, Gc—gonocoxito, Ms— median sulcus and Gb—gonobase.
FIGURES 18–19 in Two new species of Caenohalictus Cameron, 1903 (Hymenoptera: Halictidae) from Colombia
FIGURES 18–19. Metasoma in ventral view, male: 18, C. sabanaensis n. sp.; 19, C. alexandrei n. sp. Scale 200 µm.
FIGURES 2–5. 2–3 in Two new species of Caenohalictus Cameron, 1903 (Hymenoptera: Halictidae) from Colombia
FIGURES 2–5. 2–3: C. sabanaensis n. sp., 2, female, 3, male; 4–5: C. alexandrei n. sp., 4, female, 5, male.Scale 1 mm.
FIGURES 12–17.12–14 in Two new species of Caenohalictus Cameron, 1903 (Hymenoptera: Halictidae) from Colombia
FIGURES 12–17.12–14: Distal process of the labrum in frontal view, 12–13: females, 12, C. sabanaensis n. sp., 13, C. alexandrei n. sp.; 14, male, C. sabanaensis n. sp. 15–17: Pygidial plate, males, 15, C. sabanaensis n. sp.; 16 or 17, C. alexandrei n. sp. 12–14: Scale 100 µm; 15–17: Scale 300 µm.
FIGURES 6–11 in Two new species of Caenohalictus Cameron, 1903 (Hymenoptera: Halictidae) from Colombia
FIGURES 6–11. Lunula in dorsal view.6–7: C. sabanaensis n. sp., 6, female, 7, male; 8–9: C.alexandrei n. sp., 8, female, 9, male. 10–11: Inner hind tibial spur of females, 10, C. sabanaensis n. sp., 11, C. alexandrei n. sp. 6–9: Scale 200 µm, 10–11: Scale 50 µm.
FIGURES 63–64 in Revision of the species of the bee genus Caenohalictus (Hymenoptera: Halictidae) occurring in Argentinean Patagonia
FIGURES 63–64. Distribution maps. Color patterns follow De Martonne aridity index. 63, black circles, C. autumnalis; white circles, C. cyanopygus; black triangles, C. galletue; white triangles, C. iodurus. 64, black circles, C. opaciceps; white circles, C. thamyris; black triangles, C. turquesa; white triangles, C. flammeus n. sp.
FIGURES 59–62 in Revision of the species of the bee genus Caenohalictus (Hymenoptera: Halictidae) occurring in Argentinean Patagonia
FIGURES 59–62. Labrum of the female. 59, C. cyanopygus. 60, C. flammeus n. sp. 61, C. turquesa. 62, C. thamyris. Scale 100 µm.
FIGURES 32–38 in Revision of the species of the bee genus Caenohalictus (Hymenoptera: Halictidae) occurring in Argentinean Patagonia
FIGURES 32–38. Hind tibial spur of the female. 32, C. opaciceps. 33, C. cyanopygus. 34, C. flammeus n. sp. 35, C. iodurus. 36, C. turquesa. 37, C. thamyris. 38, C. autumnalis. Scale 50 µm.
FIGURES 1–2. 1 in Revision of the species of the bee genus Caenohalictus (Hymenoptera: Halictidae) occurring in Argentinean Patagonia
FIGURES 1–2. 1, mesoscutum of C. thamyris, male. 2, lateral sulcus of T2 of C. opaciceps, male. Scale 1, 200 µm; 2, 20 µm.
FIGURE 1. Distribution map. Circles, C. sabanaensis n in Two new species of Caenohalictus Cameron, 1903 (Hymenoptera: Halictidae) from Colombia
FIGURE 1. Distribution map. Circles, C. sabanaensis n. sp., triangles, C. alexandrei n. sp.
Figure 7 in Behavior and nest architecture of the bee Caenohalictus alexandrei (Hymenoptera, Halictinae)
Figure 7. Cells of nests of C. alexandrei. (A-B) Empty cells: (A) External appearance of cells; (B) Internal appearance of cells with a lateral tunnel; (C-D) Cells with traces of old pollen, possibly previously inhabited; (E) Cells with partial pollen provisioning, which are being provisioned for future use; (F) Pollen storage cells, ready for oviposition and its eventual use.
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.