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.
43
datasets available to search
ShareScore release 0.9.0
Dataset results
43 results for “Sapygidae”
Figure 2 in Life cycle of Huarpea fallax (Hymenoptera: Sapygidae) in a xeric forest in Argentina
Figure 2. Emergence pattern of individuals of Huarpea fallax obtained from nests of wild bees collected in trap nests in a xeric forest of Argentina (n = 11).
Fig. 39 in Hospicidal Behavior of the Cleptoparasitic Wasp Sapyga luteomaculata And Investigation into Ontogenetic Changes in Its Larval Anatomy (Hymenoptera: Vespoidea: Sapygidae)
Fig. 39. Microphotograph of labium of cleared postdefecating fourth instar of Sapyga luteomaculata, showing narrow but pronounced premental sclerite, labial palpi, and articulating arms of stipites.
Figs. 37, 38 in Hospicidal Behavior of the Cleptoparasitic Wasp Sapyga luteomaculata And Investigation into Ontogenetic Changes in Its Larval Anatomy (Hymenoptera: Vespoidea: Sapygidae)
Figs. 37, 38. SEM micrographs of postdefecating fourth instar of Sapyga luteomaculata. 37. Posterior part of abdomen, lateral view, showing dorsal divisions of segments into cephalic and caudal annulets. 38. Spiracle.
Figs. 41–43 in Hospicidal Behavior of the Cleptoparasitic Wasp Sapyga luteomaculata And Investigation into Ontogenetic Changes in Its Larval Anatomy (Hymenoptera: Vespoidea: Sapygidae)
Figs. 41–43. SEM micrographs of larval instars of Sapyga luteomaculata. 41. Second instar head, lateral view with hypostomal groove no longer deep or with pores. 42. Head of same, ventrolateral view. 43. Right antennal papilla and slitlike anterior tentorial pit of third instar, oblique frontal view.
Figs. 25–30 in Hospicidal Behavior of the Cleptoparasitic Wasp Sapyga luteomaculata And Investigation into Ontogenetic Changes in Its Larval Anatomy (Hymenoptera: Vespoidea: Sapygidae)
Figs. 25–30. SEM micrographs of first instar of Sapyga luteomaculata. 25. Head, approximate frontoventral view. 26. Close-up of left maxilla identifying low maxillary palpus and galea. 27. Close-up of apex of left antenna, lateral view. 28. Abdominal segment 10, showing laterally branched pygopod, caudal view. 29. Spiracle of first abdominal segment. 30. Spiracle of metathorax to same scale as fig. 29.
Figs. 21–24 in Hospicidal Behavior of the Cleptoparasitic Wasp Sapyga luteomaculata And Investigation into Ontogenetic Changes in Its Larval Anatomy (Hymenoptera: Vespoidea: Sapygidae)
Figs. 21–24. SEM micrographs of first instar of Sapyga luteomaculata. 21. Entire larva, lateral view. 22. Head, lateral view. 23. Head, ventrolateral view, to show pronounced hypostomal groove, gular bridge, stipital sclerites. 24. Close-up of anterior part of hypostomal groove identified by rectangle in fig. 23, showing pores of unknown function.
Figs. 17–20 in Hospicidal Behavior of the Cleptoparasitic Wasp Sapyga luteomaculata And Investigation into Ontogenetic Changes in Its Larval Anatomy (Hymenoptera: Vespoidea: Sapygidae)
Figs. 17–20. Diagrams of right mandible, dorsal views, drawn to approximately same scale; those of first three instars from cast skins attached to a fourth instar, which was not the fourth postdefecating form. 17. First instar. 18. Second instar. 19. Third instar. 20. Fourth instar (postdefecating form).
Figs. 11, 12 in Hospicidal Behavior of the Cleptoparasitic Wasp Sapyga luteomaculata And Investigation into Ontogenetic Changes in Its Larval Anatomy (Hymenoptera: Vespoidea: Sapygidae)
Figs. 11, 12. Macrophotographs of preserved cocoons, side view, taken from nests of Osmia submicans, all to same scale. 11. Four cocoons of Sapyga luteomaculata; left one perhaps not complete, accounting for pale coloration; second from left opened and larva removed; note fecal pellets. 12. Two cocoons of Stelis murina with larvae removed.
Figs. 8–10 in Hospicidal Behavior of the Cleptoparasitic Wasp Sapyga luteomaculata And Investigation into Ontogenetic Changes in Its Larval Anatomy (Hymenoptera: Vespoidea: Sapygidae)
Figs. 8–10. SEM micrographs of egg and mature oocyte of Sapyga luteomaculata. 8. Anterior end of egg showing chorion obscured by flaking coating; micropyle thought to be at center of picture. 9, 10. Anterior end of mature oocyte showing micropyle at anterior pole and close-up of micropyle, respectively.
Figs. 13–16 in Hospicidal Behavior of the Cleptoparasitic Wasp Sapyga luteomaculata And Investigation into Ontogenetic Changes in Its Larval Anatomy (Hymenoptera: Vespoidea: Sapygidae)
Figs. 13–16. Diagrams of right mandible with apices in maximum profile, outer views, drawn to approximately same scale; those of first three instars from cast skins attached to a fourth instar, which was not the postdefecating form. 13. First instar. 14. Second instar. 15. Third instar. 16. Fourth instar (postdefecating form).
Fig. 40 in Hospicidal Behavior of the Cleptoparasitic Wasp Sapyga luteomaculata And Investigation into Ontogenetic Changes in Its Larval Anatomy (Hymenoptera: Vespoidea: Sapygidae)
Fig. 40. Diagram of abdominal apex of mature larva of Sapyga luteomaculata before cocoon spinning, lateral view, showing small but projecting abdominal segment 10 bearing remnants of pygopod.
Figs. 1–4 in Hospicidal Behavior of the Cleptoparasitic Wasp Sapyga luteomaculata And Investigation into Ontogenetic Changes in Its Larval Anatomy (Hymenoptera: Vespoidea: Sapygidae)
Figs. 1–4. Macrophotographs of live eggs and larvae of Sapyga luteomaculata. 1. Two eggs of cleptoparasite floating on provisions in host cell with host egg at bottom of picture. 2. Same cell as in fig. 1, later, first cleptoparasite egg now hatched leaving chorion behind and first instar attacking other cleptoparasite, which has hatched or is about to hatch; host egg not yet killed. 3. First instar in another cell attacking host egg that is already flaccid. 4. Second instar, showing navicular shape and scalloped lateral outline. 5. Third instar, showing well-defined, opaque yellowish meconial mass at rear of body. 6. Fecal pellets on abdominal apex of feeding fourth instar, showing their shape, darkness in coloration, and, on some, taillike process at apices; note small but projecting apical abdominal segment 10 of actively feeding, defecating larva.
Abb. 1 in Die Sapygina-Arten aus dem Mittelmeerraum (Hymenoptera: Sapygidae)
Abb. 1: Sapygina jordanica nov.sp., Habitus
Fig. 7 in Hospicidal Behavior of the Cleptoparasitic Wasp Sapyga luteomaculata And Investigation into Ontogenetic Changes in Its Larval Anatomy (Hymenoptera: Vespoidea: Sapygidae)
Fig. 7. Diagram of mature oocyte of Sapyga luteomaculata.
FIGURE 2 in A new species of Huarpea Pate, 1947 from Colombia and redescription of H. wagneriella (du Buysson, 1904) (Hymenoptera: Sapygidae)
FIGURE 2. Huarpea wagneriella, ♀. A. lateral view, B. Head in frontal view, C. Dorsal view. Scale = 2 mm.
FIGURE 1 in A new species of Huarpea Pate, 1947 from Colombia and redescription of H. wagneriella (du Buysson, 1904) (Hymenoptera: Sapygidae)
FIGURE 1. Huarpea colombiana sp. nov., A. lateral view, B. Head in frontal view, C. Dorsal view. Scale = 2 mm.
FIGURES 15–24 in A new species of Huarpea Pate, 1947 (Hymenoptera, Sapygidae) from the semiarid region of Brazil
FIGURES 15–24. Key characters for identification of Huarpea species. 15–17. Huarpea wagneriella. 18–24. H. fallax. 15, 18. Clypeus, oblique view. 16, 19. Close up of setae above eye; triangle points overhanging longer setae. 17, 20. T1, dorsal view; arrow indicates protruding spiracles. 21. Mesosoma, lateral view showing metapleura (mt) not constricted. 22. Head, frontal view. 23. Head, oblique view; triangles point frontal carina. 24. Head, oblique view; arrow indicates depression above antenna. Scales: 0.5 mm.
FIGURES 1–6 in A new species of Huarpea Pate, 1947 (Hymenoptera, Sapygidae) from the semiarid region of Brazil
FIGURES 1–6. Huarpea rotundicornis sp. nov. and diagnostic characters for Sapyginae (1, 2, 5. Male, holotype. 3, 4, 6. Female, paratype). 1, 2. Habitus, lateral view. 2, 4. Head, frontal view. 5. Habitus, dorsal view. 6. Legs, arrow indicates rounded projection of hind coxa with carina. Scales: 1.0 mm.
FIGURES 11–14 in A new species of Huarpea Pate, 1947 (Hymenoptera, Sapygidae) from the semiarid region of Brazil
FIGURES 11–14. Male genitalia of Huarpea rotundicornis sp. nov., holotype. 11. Genital capsule. 12. Aedeagus, ventral view. 13. Aedeagus, lateral view. 14. Paramere and associated structures. Scales: 0.5 mm.
FIGURES 26–29. Female head, oblique view. 26. Huarpea wagneriella. 27. H. fallax. 28. H in A new species of Huarpea Pate, 1947 (Hymenoptera, Sapygidae) from the semiarid region of Brazil
FIGURES 26–29. Female head, oblique view. 26. Huarpea wagneriella. 27. H. fallax. 28. H. rotundicornis sp. nov., paratype. 29. Sapyga quinquepunctata. Arrows indicate occipital carina. Scales: 1.0 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.