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.
1,346
datasets available to search
ShareScore release 0.9.0
Dataset results
1,346 results for “rare species”
FIGURE 1 in Two rare species of Danielsseniinae (Copepoda: Harpacticoida: Pseudotachidiidae) from the Kara and East Siberian Seas, with description of their previously unknown sexes
FIGURE 1. Danielssenia spitsbergensis Gee & Huys, 1994, female: A, genital field; B, antennule; C, P2; D, P5.
FIGURES 1–7 in The rare genus Leptospathius Szépligeti (Hymenoptera, Braconidae, Doryctinae) from China, with description of a new species
FIGURES 1–7. Leptospathius hunanensis sp. n. 1, habitus, lateral aspect; 2, metasoma, dorsal aspect; 3, first-third abdominal tergites, dorsal aspect; 4, wings; 5, head, frontal aspect; 6, head, dorsal aspect; 7, hind trochanter and femur; 8, mesosoma, lateral aspect. Scale bar 5.0 mm.
FIGURE 10. Holotype CUMZ 3207 in Revision of the rare centipede genus Sterropristes Attems, 1934, with description of a new species from Thailand (Chilopoda: Scolopendromorpha: Scolopendridae)
FIGURE 10. Holotype CUMZ 3207 of Sterropristes violaceus Muadsub and Panha n. sp. A. Head and leg-bearing segments 1 to 5. B. Forcipules. C. Ventral view of head and leg-bearing segments 1 to 5. D. Tergites 11 to 15. E. Sternites 11 to 15. F. Tergites 18 to 21 and ultimate leg. G. Sternites 18 to 21, sternite of ultimate leg-bearing segment almost the same length as coxopleura. H. Lateral view of segments 19 to 21 and showing convex underside of ultimate leg tibia.
FIGURE 7. Specimen CUMZ 3205 in Revision of the rare centipede genus Sterropristes Attems, 1934, with description of a new species from Thailand (Chilopoda: Scolopendromorpha: Scolopendridae)
FIGURE 7. Specimen CUMZ 3205 of Sterropristes metallicus from Penang Botanical Gardens, Penang, Malaysia. A. Head and leg-bearing segments 1 to 5. B. Forcipules. C. Ventral view of head and sternites 1 to 5. D. Tergites 11 to 15. E. Sternites 11 to 15. F. Tergites 18 to 21 and ultimate legs showing convex underside of tibia. G. Sternite 18 to 21 and ultimate legs showing sternite of ultimate leg-bearing segment almost the same length as coxopleura.
FIGURE 11 in Revision of the rare centipede genus Sterropristes Attems, 1934, with description of a new species from Thailand (Chilopoda: Scolopendromorpha: Scolopendridae)
FIGURE 11. Drawings of Sterropristes violaceus Muadsub and Panha n. sp., holotype CUMZ 3207. A. Antennae, head ventral and segment 1. B. Forcipules. C. Tergites 14 to 15. D. Sternites 14 to 15. E. Sternite of ultimate leg-bearing segment almost the same length as coxopleura. F. Lateral view of ultimate leg showing convex underside of tibia. G. Oblique view of ultimate leg showing posterior femur groove.
FIGURE 4 in Revision of the rare centipede genus Sterropristes Attems, 1934, with description of a new species from Thailand (Chilopoda: Scolopendromorpha: Scolopendridae)
FIGURE 4. Drawings of Sterropristes sarasinorum Attems, 1934, holotype NMB 432a. A. Antennae. B. Forcipules. C. Sternites 1 and 2. D, E. Sternites and legs 8 and 18. F. Sternite of ultimate leg-bearing segment shorter than coxopleura. G. Oblique view of ultimate leg showing posterior grooves on prefemur and femur. H. Lateral view of ultimate leg showing convex underside on both tarsi.
FIGURE 9 in Revision of the rare centipede genus Sterropristes Attems, 1934, with description of a new species from Thailand (Chilopoda: Scolopendromorpha: Scolopendridae)
FIGURE 9. Relationship between body length and number of tarsungula denticles of Sterropristes species.
FIGURE 8 in Revision of the rare centipede genus Sterropristes Attems, 1934, with description of a new species from Thailand (Chilopoda: Scolopendromorpha: Scolopendridae)
FIGURE 8. Drawings of Sterropristes metallicus, CUMZ 3205. A. Antennae, head ventral and segment 1. B. Forcipules. C, D. Tergites 3 and 4 (C) and sternites 3 and 4 (D) showing transition from one tibial spur and two tarsal spurs on leg 3 to no tibial spur and one tarsal spur on leg 4. E. Sternite of ultimate leg-bearing segment almost the same length as coxopleura. F. Lateral view of ultimate legs with posterior femoral groove and convex underside of tibia.
FIGURE 1 in Revision of the rare centipede genus Sterropristes Attems, 1934, with description of a new species from Thailand (Chilopoda: Scolopendromorpha: Scolopendridae)
FIGURE 1. Spiracles of segments 3, 5 and 7 (left to right, respectively). A–C. Holotype NMB 432a of Sterropristes sarasinorum Attems, 1934. D–F. Specimen CUMZ 3205 of Sterropristes metallicus from Penang Botanical Gardens, Penang, Malaysia. G–I. Holotype CUMZ 3207 of Sterropristes violaceus Muadsub and Panha n. sp.
FIGURE 6 in Revision of the rare centipede genus Sterropristes Attems, 1934, with description of a new species from Thailand (Chilopoda: Scolopendromorpha: Scolopendridae)
FIGURE 6. Live specimens of Sterropristes species. A, B. Specimen CUMZ 3205 of Sterropristes metallicus from Penang Botanical Gardens, Penang, Malaysia (length 28 mm), dorsal (A), and ventral view (B). C. Paratype CUMZ 3208 of Sterropristes violaceus Muadsub and Panha n. sp. from its type locality (length 33 mm).
FIGURE 3. Holotype NMB 432a in Revision of the rare centipede genus Sterropristes Attems, 1934, with description of a new species from Thailand (Chilopoda: Scolopendromorpha: Scolopendridae)
FIGURE 3. Holotype NMB 432a of Sterropristes sarasinorum Attems, 1934. A. Ventral view of forcipules. B. Dorsal view of left antenna. C. Tergites 2 to 5, complete paramedian sutures start on tergite 3. D. Sternites 1 to 5, complete paramedian sutures start on sternite 4. E. Tergites 18 to 21. F. Sternites 18 to 21, showing sternite of ultimate leg-bearing segment shorter than coxopleura. G–J. Ultimate legs; (G, I) posterior groove on prefemur and femur, and (H, J) prominently convex shape of both tarsi.
FIGURE 5. Holotype slide ZSM A200309521-3 in Revision of the rare centipede genus Sterropristes Attems, 1934, with description of a new species from Thailand (Chilopoda: Scolopendromorpha: Scolopendridae)
FIGURE 5. Holotype slide ZSM A200309521-3 of Sterropristes metallicus (Verhoeff, 1937). A. Cephalic plate and antennae. B. Forcipular tarsungula and segments 1 and 2 C. Segments 5 and 6. D. Segments 19 to 21. E, F. Ultimate legs. G, H. Mandible. I. First maxilla. J, K. Second maxilla.
FIGURE 38 in On the arboreal acarofauna of Hungary: Some new and rare species of prostigmatic mites (Acari: Prostigmata: Tydeidae, Iolinidae and Stigmaeidae)
FIGURE 38. Mediolata ronaldi Laniecka, sp. nov., holotype deutonymph. (A) stigmata with main branches of tracheae; (B) palptibial double claws—different aspects; (C) opisthosomal seta c; (D) aspidosomal seta ae; (E) leg apotele with claws, empodium and raylets.
FIGURE 39 in On the arboreal acarofauna of Hungary: Some new and rare species of prostigmatic mites (Acari: Prostigmata: Tydeidae, Iolinidae and Stigmaeidae)
FIGURE 39. Mediolata ronaldi Laniecka, sp. nov., holotype deutonymph. (A) general view, dorsally; (B) gnathosoma + left leg I.
FIGURE 37 in On the arboreal acarofauna of Hungary: Some new and rare species of prostigmatic mites (Acari: Prostigmata: Tydeidae, Iolinidae and Stigmaeidae)
FIGURE 37. Mediolata ronaldi Laniecka sp. nov., holotype deutonymph. (A) right leg III (dorso-paraxially); (B) right leg IV (dorso-paraxially).
FIGURE 36 in On the arboreal acarofauna of Hungary: Some new and rare species of prostigmatic mites (Acari: Prostigmata: Tydeidae, Iolinidae and Stigmaeidae)
FIGURE 36. Mediolata ronaldi Laniecka, sp. nov., holotype deutonymph. (A) cheliceral stiletto; (B) left palpus (dorsal view); (C) palpal thumb-claw complex (left, dorsally); (D) left leg I (dorso-paraxially); (E) left leg II (dorso-paraxially).
FIGURE 33 in On the arboreal acarofauna of Hungary: Some new and rare species of prostigmatic mites (Acari: Prostigmata: Tydeidae, Iolinidae and Stigmaeidae)
FIGURE 33. Neopronematus solani Laniecka and Kazmierski, sp. nov. (A) holotype female, right tarsus I; (B) paratype male, right tarsus I; (C) paratype male, total view; (D) paratype male, dorsal fragment of opisthosoma with setae d1, e1 and sieveshaped organs.
FIGURE 32 in On the arboreal acarofauna of Hungary: Some new and rare species of prostigmatic mites (Acari: Prostigmata: Tydeidae, Iolinidae and Stigmaeidae)
FIGURE 32. Neopronematus solani Laniecka and Kazmierski, sp. nov., paratype male. (A) cheliceral stiletto; (B) right palpus (paraxially); (C) right leg I (dorso-paraxially); (D) right leg IV with femoral spur.
FIGURE 26. Lorryia atyeoi Baker, 1968 in On the arboreal acarofauna of Hungary: Some new and rare species of prostigmatic mites (Acari: Prostigmata: Tydeidae, Iolinidae and Stigmaeidae)
FIGURE 26. Lorryia atyeoi Baker, 1968; female I from Hungary. (A) cheliceral stiletto; (B) right palptarsus (ventrally); (C) left leg I (adaxial view); (D) tibia+tarsus II (left, adaxially).
FIGURE 17 in On the arboreal acarofauna of Hungary: Some new and rare species of prostigmatic mites (Acari: Prostigmata: Tydeidae, Iolinidae and Stigmaeidae)
FIGURE 17. Lorryia sanctikingai Ripka and Laniecka, sp. nov., holotype female. (A) dorsal fragment with setae f1 and h1; (B) cheliceral stiletto; (C) right palpus (dorsally); (D) palptarsus (left, ventrally); (E) left leg I (dorsal view).
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.