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.
5,053
datasets available to search
ShareScore release 0.9.0
Dataset results
5,053 results for “Arachnidae”
Fig. 1 in Systematic revision of the pantropical whip spider family Charinidae Quintero, 1986 (Arachnida, Amblypygi)
Fig. 1. Phylogeny of the whip spider family Charinidae Quintero, 1986 with proposed group names for major clades, based on Miranda et al. (2021). Bootstrap values above clades.
Fig. 3. Charinidae Quintero, 1986 in Systematic revision of the pantropical whip spider family Charinidae Quintero, 1986 (Arachnida, Amblypygi)
Fig. 3. Charinidae Quintero, 1986, pedipalp femur, prolateral and dorsal views. A–B. Charinus carinae sp. nov. (MNRJ 9293). C–D. Charinus gertschi Goodnight & Goodnight, 1946 (AMCC [LP 10076]). E–F. Sarax bispinosus (Nair, 1934) (AMCC [LP 12298]). G–H. Sarax willeyi Gravely, 1915 (SMF). Scale bars: A–D, G–H = 1 mm; E–F = 0.5 mm.
Fig. 4. Charinidae Quintero, 1986 in Systematic revision of the pantropical whip spider family Charinidae Quintero, 1986 (Arachnida, Amblypygi)
Fig. 4. Charinidae Quintero, 1986, pedipalp patellar articles, dorsal and prolateral views. A–B. Charinus carinae sp. nov. (MNRJ 9293). C–D. Charinus gertschi Goodnight & Goodnight, 1946 (AMCC [LP 10076]). E–F. Sarax bispinosus (Nair, 1934) (AMCC [LP 12298]). G–H. Sarax willeyi Gravely, 1915 (SMF). Scale bars: A–D, G–H = 1 mm; E–F = 0.5 mm.
Fig. 2. Charinus insularis Banks, 1902 in Systematic revision of the pantropical whip spider family Charinidae Quintero, 1986 (Arachnida, Amblypygi)
Fig. 2. Charinus insularis Banks, 1902 (RBINS), dextral pedipalp, ventral view, illustrating nomenclature for pedipalp segments. Scale bar: 1 mm.
Figs 10-17 in A European discovery: Kalliste pavonum gen. nov., sp. nov., the smallest phalangiid species known to date (Arachnida: Opiliones: Phalangiidae)
Figs 10-17. Kalliste pavonum gen. sp. nov. (10-12) Male pedipalp in pro-lateral (10), retro-lateral (11) and dorsal view (12); patella and tibia only (11-12). (13-15) Female pedipalp in pro-lateral (13), retro-lateral (14) and dorsal view (15); patella and tibia only (14-15). (16-17) Palpal claws of male (16) and female (17), both from Col de Verde, lateral view. Scales: 0.3 mm (Figs 10-15); 0.03 mm (Figs 16-17).
Figs 5-9 in A European discovery: Kalliste pavonum gen. nov., sp. nov., the smallest phalangiid species known to date (Arachnida: Opiliones: Phalangiidae)
Figs 5-9. Kalliste pavonum gen. sp. nov. (5) Body of male holotype with chelicerae and pedipalps in lateral view. (6) Same (without chelicerae and pedipalps) in dorsal view. (7) Male chelicera in retro-lateral view. (8) Female chelicera in same view. (9) Male tuber oculorum in lateral view. Scales: 1.0 mm (Figs 5-6); 0.3 mm (Figs 7-8); 0.25 mm (Fig. 9).
Figs 1-4 in A European discovery: Kalliste pavonum gen. nov., sp. nov., the smallest phalangiid species known to date (Arachnida: Opiliones: Phalangiidae)
Figs 1-4. Kalliste pavonum gen. sp. nov. (1) Body of male holotype in dorsal view. (2) Same in ventral view. (3) Body of female paratype in dorsal view. (4) Same in ventral view. Scale: 0.5 mm.
Figs 1-9 in Description of Lepthyphantes rossitsae sp. n. from Turkey (Arachnida: Araneae: Linyphiidae)
Figs 1-9. Lepthyphantes rossitsae sp. n., male holotype (1-3), male paratype (4-6); Lepthyphates leprosus, male (7-9). (1, 4, 7) Palp, retrolateral view. (2, 5, 8) Palp, dorsal view. (3, 6, 9) Palp, prolateral view. Scale 0.2 mm.
Figs 16-22 in Description of Lepthyphantes rossitsae sp. n. from Turkey (Arachnida: Araneae: Linyphiidae)
Figs 16-22. Lepthyphantes rossitsae sp. n., male holotype (16-17, 19), male paratype (18), female paratype (20-22). (16) Palp, retrolateral view. (17) Embolus. (18) Lamella characteristica. (19) Palp, dorsal view. (20) Epygine, ventral view. (21) Epygine, lateral view. (22) Epygine, dorsal view. Scale 0.2 mm.
Figs 10-15 in Description of Lepthyphantes rossitsae sp. n. from Turkey (Arachnida: Araneae: Linyphiidae)
Figs 10-15. Lepthyphantes rossitsae sp. n., female paratype (10-12); Lepthyphantes leprosus, female (13-15). (10, 13) Epygine, ventral view. (11, 14) Epygine, lateral view. (12, 15) Epygine, dorsal view. Scale 0.2 mm.
Fig.1 in Distribution Of Ixodes Ricinus (Arachnida, Ixodidae) In Ukraine In The Context Of Tick Hazard, And Factors Favoring Its Persistence In Conditions Of Fast-Going Environmental Change
Fig.1. The hiatus in the range that has been noted on the territory of Ukraine: 1 — European area of distribution; 2 — Crimean area of distribution; 3 — Caucasian-Western Asian area of distribution; 4 — zone of disjunction (after fig. 1 Akimov & Nebogatkin, 1996 with changes).
Fig. 2 in Distribution Of Ixodes Ricinus (Arachnida, Ixodidae) In Ukraine In The Context Of Tick Hazard, And Factors Favoring Its Persistence In Conditions Of Fast-Going Environmental Change
Fig. 2. Distribution of I. ricinus on the territory of Ukraine, from the point of view of tick-borne danger.
Figures 89–94 in Scorpions of the Horn of Africa (Arachnida Scorpiones) Part XXVIII Scorpions of Djibouti
Figures 89–94. Hemiscorpius lipsae sp. n. female holotype. Figures 89–90. Dorsal (89) and ventral (90) views. Figures 91–94. Left legs I–IV, retrolateral aspect. Scale bar: 10 mm (89–90).
Figure 10 in Scorpions of China: an updated checklist with comments on some taxonomic issues (Arachnida: Scorpiones)
Figure 10. Color comparison in the typical morph of Mesobuthus thersites: a normal adult female vs. an orange juvenile (above); the same normal adult female vs. a variegated adult female (below).
Figure 9 in Scorpions of China: an updated checklist with comments on some taxonomic issues (Arachnida: Scorpiones)
Figure 9. Color variation in the dark morph of Mesobuthus thersites. Figure 9a–9b. Juveniles. Figure 9c. Darker adults. Figure 9d. Lighter adults.
Figure 7 in Scorpions of China: an updated checklist with comments on some taxonomic issues (Arachnida: Scorpiones)
Figure 7. Subadult and adult comparison of Olivierus sp. (cf. longichelus). Figure 7a. Females. Figure 7b. Males.
Figure 5 in Scorpions of China: an updated checklist with comments on some taxonomic issues (Arachnida: Scorpiones)
Figure 5. Examined specimens of Mesobuthus thersites from Urumqi County, Urumqi Municipality, Xinjiang Uygur Autonomous Region. Figure 5a. Typical morph. Figure 5b. Dark morph.
Figure 4 in Scorpions of China: an updated checklist with comments on some taxonomic issues (Arachnida: Scorpiones)
Figure 4. Examined specimens of Olivierus sp. (cf. longichelus) from Wujiaqu City, Changji Prefecture, Xinjiang Uygur Autonomous Region. Figure 4a. Juveniles. Figure 4b. Subadults. Figure 4c. Adults.
Figure 3 in Scorpions of China: an updated checklist with comments on some taxonomic issues (Arachnida: Scorpiones)
Figure 3. Map showing known localities of some Olivierus from China and Kazakhstan: O. longichelus (●), O. sp. (●), O. bolensis (●), "M. c. intermedius" from Kurty (●), O. mikhailovi/"M. c. intermedius" from Chardara (●), O. tarabaevi from Kyzylorda (type locality) (●) and O. tarabaevi from Kapchagai (●).
Figure 2 in Scorpions of China: an updated checklist with comments on some taxonomic issues (Arachnida: Scorpiones)
Figure 2. Map showing known distribution of the parvorder Iurida in China: Scorpiops (solid circle), Liocheles (star), "Tibetiomachus" (triangle), and Deccanometrus (square). Scorpiops asthenurus (●), S. atomatus (●, one largely covered by S. asthenurus), S. hardwickii (●), S. ingens (●), S. jendeki (●), "S. jingshanensis" (●), S. kamengensis (●), S. kubani (●), S. langxian (●, largely covered by S. atomatus and S. hardwickii), S. leptochirus (●), S. lhasa (●), S. lii (●), S. luridus (●, largely covered by S. atomatus), S. margerisonae (●), S. novaki (●, one largely covered by S. asthenurus), S. petersii (●, accurate location unknown), S. puerensis (●), S. shidian (●), S. songi (●), S. taxkorgan (●), S. tibetanus (●, one largely covered by S. lhasa and S. margerisonae, and another by S. langxian), S. vachoni (●, one largely covered by S. langxian), S. validus (●), S. wrzecionkoi (, largely covered by S. tibetanus), S. xui (●), S. yangi (●), S. zhangshuyuani (○); Liocheles. australasiae (★); "Tibetiomachus himalayensis" (▲);Deccanometrus bengalensis (■).
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.