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”
Figures 9–15 in Scorpions of the Horn of Africa (Arachnida: Scorpiones). Part XXX. Parabuthus (Buthidae) (Part III), with description of three new species from Somaliland and occurrence of Parabuthus eritreaensis Kovařík, 2003
Figures 9–15: Parabuthus eritreaensis, female. Figure 9. Carapace and tergites I–IV. Figures 10–11. Sternopectinal area and sternites.. Figures 12–15. Right legs I–IV, retrolateral aspect.
Figures 16–26 in Scorpions of the Horn of Africa (Arachnida: Scorpiones). Part XXX. Parabuthus (Buthidae) (Part III), with description of three new species from Somaliland and occurrence of Parabuthus eritreaensis Kovařík, 2003
Figures 16–26. Parabuthus eritreaensis, female, right pedipalp, chela in dorsal (16), external (17), and ventral (18) views, patella in dorsal (19), external (20), and ventral (21) views, femur and trochanter in internal (22), dorsal (23), and ventral (24) views. Dentate margins of movable (25) and fixed (26) fingers. Trichobothrial pattern indicated in Figures 17– 20 and 22–23 by white circles.
Figures 1–2 in Scorpions of the Horn of Africa (Arachnida: Scorpiones). Part XXX. Parabuthus (Buthidae) (Part III), with description of three new species from Somaliland and occurrence of Parabuthus eritreaensis Kovařík, 2003
Figures 1–2: Parabuthus eritreaensis, female. Figure 1. Female in vivo habitus. Figure 2. Locality, Somaliland, vicinity of Garadak.
Figure 3 in X-ray microtomography of the late Carboniferous whip scorpions (Arachnida, Thelyphonida) Geralinura britannica and Proschizomus petrunkevitchi
Figure 3. Results of the cladistic analysis presented herein under equal weights parsimony and Bayesian inference. Top: topology within the pantetrapulmonates, in particular between the Haptopoda, Amblypygi, Thelyphopnida and Schizomida, in both parsimony and Bayesian analyses. Bottom: the relationships recovered for all arachnid and chelicerate orders using the topology from the Bayesian analysis (the arachnid-wide parsimony topology is included in the Supplemental material). Support values are bootstrap/ jackknife (parsimony) or posterior probabilities (Bayesian); plotted against geological time using equal branch lengths between fossil taxa (see Methods). Taxon images either drawn for this publication, or from Lozano-Fernandez et al. (2019).
Fig. 8 in The spider family Oecobiidae (Arachnida: Araneae) in Iran, Afghanistan and Turkmenistan
Fig. 8. Epigynes of Uroctea grossa Roewer, 1960; ventral view. A. Holotype, ♀ (GNM-A497). B. ♀ from Mazandaran Province, Larijan (MHNG). C. ♀ from Sistan and Baluchistan Province, surroundings of Taftan volcano (MHNG). D. ♀ from Turkmenistan (SMF38817). Scale bars = 0.5 mm.
Fig. 9 in The spider family Oecobiidae (Arachnida: Araneae) in Iran, Afghanistan and Turkmenistan
Fig. 9. Vulvae of Uroctea grossa Roewer, 1960; dorsal view. A. ♀ from Mazandaran Province, Larijan (MHNG). B. Holotype, ♀ (GNM-A497). C. ♀ from Turkmenistan (SMF38817). D. ♀ from Sistan and Baluchistan Province, surroundings of Taftan volcano (MHNG). Scale bars = 0.5 mm.
Fig. 7. Left male palps. A–C. Uroctea grossa Roewer, 1960 in The spider family Oecobiidae (Arachnida: Araneae) in Iran, Afghanistan and Turkmenistan
Fig. 7. Left male palps. A–C. Uroctea grossa Roewer, 1960, ♂ from Sistan and Baluchistan Province, surroundings of Taftan volcano (MHNG). D–F. Uroctea gambronica sp. nov., holotype, ♂ (NMP- P6j-180/2002). G. Uroctea thaleri Rheims, Santos & van Harten, 2007, ♂ from Hormozgan Province, Minab County (MHNG). A, D, G = prolateral view; B, E = ventral view; C, F = retrolateral view. Scale bars = 1 mm.
Fig. 6. Abdominal patterns, dorsal views. A–D. Uroctea grossa Roewer, 1960. A–B in The spider family Oecobiidae (Arachnida: Araneae) in Iran, Afghanistan and Turkmenistan
Fig. 6. Abdominal patterns, dorsal views. A–D. Uroctea grossa Roewer, 1960. A–B. ♀♀ from Iran, Damavand County, Havir village (MHNG). C. ♀ from Mazandaran Province, Larijan (MHNG). D. ♂ from Mazandaran Province, Larijan (MHNG). E. Uroctea gambronica sp. nov., holotype, ♂ (NMP-P6j-180/2002). F. Uroctea thaleri Rheims, Santos & van Harten, 2007, ♂ from Hormozgan Province, Minab County (MHNG). Scale bars = 2 mm.
Fig. 4. Leg spination schematics. A. Legend. B. Uroctea hashemitorum Bosselaers, 1999 in The spider family Oecobiidae (Arachnida: Araneae) in Iran, Afghanistan and Turkmenistan
Fig. 4. Leg spination schematics. A. Legend. B. Uroctea hashemitorum Bosselaers, 1999, holotype, ♂ (RBINS). C. Uroctea durandi (Latreille, 1809), ♂ from Spain, Catalonia, Empordà (CJB-3992). D. Uroctea durandi, ♀ from Spain, Catalonia, Empordà (CJB-2198). E. Uroctea thaleri Rheims, Santos & van Harten, 2007, ♂ from Hormozgan Province, Minab County (MHNG). F. Uroctea grossa Roewer, 1960, ♂ from Sistan and Baluchistan Province, surroundings of Taftan volcano (MHNG). G. Uroctea grossa, holotype, ♀ (GNM-A497). H. Uroctea gambronica sp. nov., holotype, ♂ (NMP- P6j-180/2002).
Fig. 3 in The spider family Oecobiidae (Arachnida: Araneae) in Iran, Afghanistan and Turkmenistan
Fig. 3. Live habitus and tent web of oecobiids. A. Oecobius ferdowsii Mirshamsi, Zamani & Marusik, 2017, ♀. B. Oecobius nadiae (Spassky, 1936), ♀. C. Oecobius putus O. Pickard-Cambridge, 1876, ♂. D. Uroctea thaleri Rheims, Santos & van Harten, 2007, juvenile. E. Uroctea grossa Roewer, 1960, ♀. F. Tent web of Uroctea grossa. A–C, E–F by Alireza Zamani; D courtesy of Mahmoud Kolnegari.
Fig. 1 in The spider family Oecobiidae (Arachnida: Araneae) in Iran, Afghanistan and Turkmenistan
Fig. 1. Distribution of Oecobius Lucas, 1846 in Iran, Afghanistan and Turkmenistan. yellow circles = O. cellariorum (Duges, 1836; pink stars = O. fahimii Zamani & Marusik, 2018; blue squares = O. ferdowsii Mirshamsi, Zamani & Marusik, 2017; cyan triangle = O. ilamensis Zamani, Mirshamsi & Marusik, 2017; green hexagons = O. nadiae (Spassky, 1936); red triangles = O. putus O. Pickard- Cambridge, 1876; black diamonds = O. tadzhikus Andreeva & Tyschchenko, 1969.
Fig. 36 in COI mtDNA barcoding and morphology for the description of a new species of ricinuleid of the genus Pseudocellus (Arachnida: Ricinulei: Ricinoididae) from El Triunfo Biosphere Reserve, Chiapas, Mexico
Fig. 36. Species of the genus Pseudocellus Platnick, 1980 described from Chiapas, Mexico, including the new species described herein. Star: El Triunfo Biosphere Reserve, El Quetzal Camp, Angel Albino Corzo Municipality. Red circle: Cerro Boquerón, Ejido Boquerón, Motozintla Municipality. Orange circle: Sumidero del Camino, 16 km NE of Comitán. Pink circle: Kolem-chen Cave "Cueva Grande", Chan-kin Reserve, Ocosingo Municipality. Blue circle: San Francisco Cave, La Trinitaria Municipality. Purple circle: Finca Guatimoc, south slope of the Tacaná volcano, 32 km north of Tapachula, near Cacahuatán. Green circle: Las Abejas Cave, San Fernando Municipality.
Fig. 1 in COI mtDNA barcoding and morphology for the description of a new species of ricinuleid of the genus Pseudocellus (Arachnida: Ricinulei: Ricinoididae) from El Triunfo Biosphere Reserve, Chiapas, Mexico
Fig. 1. Neighbour-Joining (NJ) tree with p-distances constructed with COI barcode sequences from different specimens and species of Pseudocellus Platnick, 1980. Colors of the branches indicate species of Pseudocellus already described, red branches indicate the new species. Numbers on the branches represent Bootstrap support values (>50% significant).
Figs 32–35 in COI mtDNA barcoding and morphology for the description of a new species of ricinuleid of the genus Pseudocellus (Arachnida: Ricinulei: Ricinoididae) from El Triunfo Biosphere Reserve, Chiapas, Mexico
Figs 32–35. Pseudocellus giribeti sp. nov. Paratypes (MCZ 80010). 32–33. Deutonymph, habitus, dorsal and ventral views. 34–35. Tritonymph, habitus, dorsal and ventral views. Scale bars = 2 mm.
Figs 20–26 in COI mtDNA barcoding and morphology for the description of a new species of ricinuleid of the genus Pseudocellus (Arachnida: Ricinulei: Ricinoididae) from El Triunfo Biosphere Reserve, Chiapas, Mexico
Figs 20–26. Pseudocellus giribeti sp. nov. Holotype, ♂ (MCZ 80010). 20–22. Right leg III (copulatory apparatus), retrolateral, prolateral and dorsal views. 23. Copulatory apparatus extended, prolateral view. 24. Copulatory apparatus, dorsal view. 25. Copulatory apparatus, prolateral view. 26. Tarsal process, distal half, prodorsal view. Scale bars: 20–22 = 0.5 mm; 23–25 = 0.2 mm; 26 = 0.1 mm.
Figs 7–10 in COI mtDNA barcoding and morphology for the description of a new species of ricinuleid of the genus Pseudocellus (Arachnida: Ricinulei: Ricinoididae) from El Triunfo Biosphere Reserve, Chiapas, Mexico
Figs 7–10. Pseudocellus giribeti sp. nov. Holotype, ♂ (MCZ 80010). 7–8. Opisthosoma, dorsal and ventral views. 9. Tergite XI, median plate (arrow indicates the lateral depression). 10. Pygidium, posterior view. Scale bars: 7–8 = 1 mm; 9 = 0.5 mm; 10 = 0.2 mm.
Figs 3–6 in COI mtDNA barcoding and morphology for the description of a new species of ricinuleid of the genus Pseudocellus (Arachnida: Ricinulei: Ricinoididae) from El Triunfo Biosphere Reserve, Chiapas, Mexico
Figs 3–6. Pseudocellus giribeti sp. nov. Holotype, ♂ (MCZ 80010). 3–4. Habitus, dorsal and ventral views. 5. Carapace, dorsal view. 6. Prosoma, ventral view, showing coxosternal region. Scale bars: 3–4 = 2 mm; 5–6 = 0.5 mm.
Fig. 5 in Redescription of Mimoscorpius pugnator (Butler, 1872) (Arachnida: Thelyphonida), with first description of the female
Fig. 5. Subtropical forest habitat of Mimoscorpius pugnator (Butler, 1872) near El Papayo, Guatemala.
Fig. 4 in Redescription of Mimoscorpius pugnator (Butler, 1872) (Arachnida: Thelyphonida), with first description of the female
Fig. 4. Map of Guatemala, plotting the known locality records of Mimoscorpius pugnator (Butler, 1872).
Fig. 2 in Redescription of Mimoscorpius pugnator (Butler, 1872) (Arachnida: Thelyphonida), with first description of the female
Fig. 2. Mimoscorpius pugnator (Butler, 1872), habitus, ♀ (AMNH). A. Dorsal aspect. B. Ventral aspect. Scale 5 10 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.