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.
288
datasets available to search
ShareScore release 0.9.0
Dataset results
288 results for “Erythraeidae”
FIGURE 4. Mypongia brevipes Southcott, 1961 in Abrolophus from Australasia, and the mysterious Mypongia (Trombidiformes: Parasitengona: Erythraeidae)
FIGURE 4. Mypongia brevipes Southcott, 1961. (A) Palp; (B) Palp tarsus; (C) Leg I, trochanter to genu; (D) Tibia; (E); Tarsus.
FIGURE 8 in Abrolophus from Australasia, and the mysterious Mypongia (Trombidiformes: Parasitengona: Erythraeidae)
FIGURE 8. Abrolophus ripicola (Womersley, 1934). Nymph (N187595). (A) Ventral gnathosoma; (B) Dorsal tarsus.
FIGURE 11 in Abrolophus from Australasia, and the mysterious Mypongia (Trombidiformes: Parasitengona: Erythraeidae)
FIGURE 11. Abrolophus ripicola (Womersley, 1934). Adult. (A) Female, non-type, genital and anal opening; (B) Male, syntype, genitalia (leg obscuring genitalia).
FIGURE 14 in Abrolophus from Australasia, and the mysterious Mypongia (Trombidiformes: Parasitengona: Erythraeidae)
FIGURE 14. (A) Abrolophus brevus (Womersley, 1934). Adult female, non-type, tibia III, arrows point to thickened setae; (B) Abrolophus ripicola (Womersley, 1934). Adult female, non-type, tibia III.
FIGURE 10 in Abrolophus from Australasia, and the mysterious Mypongia (Trombidiformes: Parasitengona: Erythraeidae)
FIGURE 10. Abrolophus ripicola (Womersley, 1934). Adult. (A) Female, non-type, mid-prodorsum; (B) Male, syntype, midprodorsum; (C) Female, non-type, posterior dorsal setae.
FIGURE 3. Mypongia brevipes Southcott, 1961 in Abrolophus from Australasia, and the mysterious Mypongia (Trombidiformes: Parasitengona: Erythraeidae)
FIGURE 3. Mypongia brevipes Southcott, 1961. (A) Prodorsum; (B) Subcapitulum; (C) Dorsal gnathosoma.
FIGURE 13 in Abrolophus from Australasia, and the mysterious Mypongia (Trombidiformes: Parasitengona: Erythraeidae)
FIGURE 13. Abrolophus ripicola (Womersley, 1934). Adult female. (A) Non-type, tarsus I; (B) Non-type, tibia I.
FIGURE 24 in Abrolophus from Australasia, and the mysterious Mypongia (Trombidiformes: Parasitengona: Erythraeidae)
FIGURE 24. Photographs of Abrolophus zelandicus Luxton, 1989, holotype male from Leigh. (A) Habitus, x 10; (B) Prodorsal region, x 40; (C) Palp, ventral aspect, x 100; (D) Tarsus I, ventral aspect, x 100.
FIGURE 25 in Abrolophus from Australasia, and the mysterious Mypongia (Trombidiformes: Parasitengona: Erythraeidae)
FIGURE 25. Photographs of Abrolophus ripicola (Womersley, 1934) from the Plant Health & Environment Laboratory, Auckland, New Zealand (PANZ). (A) Habitus, x10; (B) Prodorsal region, x 40; (C) Palp, dorsal aspect, x 100; (D) Ventral opisthosoma, x 40.
FIGURE 17 in Abrolophus from Australasia, and the mysterious Mypongia (Trombidiformes: Parasitengona: Erythraeidae)
FIGURE 17. Habitus photographs (x 40) of (A) Abrolophus ripicola (Womersley, 1934), female, intercepted specimen (larger body size, N114385); (B) A. ripicola female, syntype (J24621); (C) Abrolophus novaeguinensis (Gunther, 1941), holotype nymph (J25788); (D) Abrolophus brevus (Womersley, 1934), non-type, nymph (J25777).
FIGURE 16 in Abrolophus from Australasia, and the mysterious Mypongia (Trombidiformes: Parasitengona: Erythraeidae)
FIGURE 16. Abrolophus ripicola (Womersley, 1934), nymph (N187595). (A) habitus, x 100; (B) prodorsum and palps, x 200.
FIGURE 20 in Abrolophus from Australasia, and the mysterious Mypongia (Trombidiformes: Parasitengona: Erythraeidae)
FIGURE 20. Gnathosoma of (A) Abrolophus ripicola (Womersley, 1934), intercepted female (N114385), x 200 (B) Abrolophus sp. nr. ripicola from South Africa (J24239), x 400; (C) Abrolophus novaeguinensis (Gunther, 1941), holotype nymph (J25788), x 400; (D) Abrolophus insularum (Womersley, 1934), holotype nymph (J25786), x 200.
FIGURE 22 in Abrolophus from Australasia, and the mysterious Mypongia (Trombidiformes: Parasitengona: Erythraeidae)
FIGURE 22. Posterior mid-prodorsum (x 1000) of (A) Abrolophus ripicola (Womersley, 1934), intercepted female (N114385) (B) Abrolophus sp. nr. ripicola from South Africa (J24239); (C) Abrolophus novaeguinensis (Gunther, 1941), holotype nymph (J25788); (D) Abrolophus insularum (Womersley, 1934), holotype nymph (J25786).
FIGURE 21 in Abrolophus from Australasia, and the mysterious Mypongia (Trombidiformes: Parasitengona: Erythraeidae)
FIGURE 21. Anterior mid-prodorsum (x 1000) of (A) Abrolophus ripicola (Womersley, 1934), intercepted female (N114385) (B) Abrolophus sp. nr. ripicola from South Africa (J24239); (C) Abrolophus novaeguinensis (Gunther, 1941), holotype nymph (J25788); (D) Abrolophus insularum (Womersley, 1934), holotype nymph (J25786).
Figure 15 in Correlation of heteromorphic life instars in terrestrial Parasitengona mites and its impact on taxonomy - the case of Leptus molochinus (C. L. Koch, 1837) and Leptus ignotus (Oudemans, 1903) (Acari: Trombidiformes: Prostigmata: Erythraeidae)
Figure 15. Leptus molochinus (C. L. Koch, 1837), larva, scanning electron micrograph. Tarsus II termination.
Figure 13 in Correlation of heteromorphic life instars in terrestrial Parasitengona mites and its impact on taxonomy - the case of Leptus molochinus (C. L. Koch, 1837) and Leptus ignotus (Oudemans, 1903) (Acari: Trombidiformes: Prostigmata: Erythraeidae)
Figure 13. Leptus molochinus (C. L. Koch, 1837), larva, scanning electron micrograph. Vestigiala on genu II and solenidion on tibia II.
Figure 12 in Correlation of heteromorphic life instars in terrestrial Parasitengona mites and its impact on taxonomy - the case of Leptus molochinus (C. L. Koch, 1837) and Leptus ignotus (Oudemans, 1903) (Acari: Trombidiformes: Prostigmata: Erythraeidae)
Figure 12. Leptus molochinus (C. L. Koch, 1837), larva, scanning electron micrograph. Odontus and palp tarsus.
Figure 11 in Correlation of heteromorphic life instars in terrestrial Parasitengona mites and its impact on taxonomy - the case of Leptus molochinus (C. L. Koch, 1837) and Leptus ignotus (Oudemans, 1903) (Acari: Trombidiformes: Prostigmata: Erythraeidae)
Figure 11. Leptus molochinus (C. L. Koch, 1837), larva, scanning electron micrograph. Mouth and terminal segments of palps.
Figure 9 in Correlation of heteromorphic life instars in terrestrial Parasitengona mites and its impact on taxonomy - the case of Leptus molochinus (C. L. Koch, 1837) and Leptus ignotus (Oudemans, 1903) (Acari: Trombidiformes: Prostigmata: Erythraeidae)
Figure 9. Leptus molochinus (C. L. Koch, 1837), larva. Ventral side of the body (legs omitted beyond trochanters).
Figure 8 in Correlation of heteromorphic life instars in terrestrial Parasitengona mites and its impact on taxonomy - the case of Leptus molochinus (C. L. Koch, 1837) and Leptus ignotus (Oudemans, 1903) (Acari: Trombidiformes: Prostigmata: Erythraeidae)
Figure 8. Leptus molochinus (C. L. Koch, 1837), larva. Dorsal side of the body (legs omitted beyond trochanters).
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.