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.
3,507
datasets available to search
ShareScore release 0.9.0
Dataset results
3,507 results for “Species identification”
Figs 4–7 in Three new Cryptochetum Rondani, 1875 (Diptera: Cryptochetidae) from Yunnan Province, China and an identification key to Chinese species
Figs 4–7. Cryptochetum euthyiproboscise sp. nov., holotype, ♂ (CR101). 4. Dorsal view. 5. Lateral view. 6. Dorsal view. 7. Lateral view. Scale bars: 4–5 = 0.1 mm; 6–7 = 0.05 mm.
FIGURE 1 in Comparative anatomy of the gut of the South American species of Amitermes, with description of two new species and an identification key based on soldiers and workers
FIGURE 1. Soldiers in dorsal and lateral views: Amitermes amicki (A, B) and A. amifer (C, D).
FIGURE 18 in Comparative anatomy of the gut of the South American species of Amitermes, with description of two new species and an identification key based on soldiers and workers
FIGURE 18. Enteric-valve armatures: Amitermes beaumonti (A) and A. excellens (B).
FIG. 2. — Navicordulia pascali n in The genus Navicordulia Machado & Costa, 1995 (Insecta, Odonata, Corduliidae s.str.): new species, identification key for males and data on ecology and distribution
FIG. 2. — Navicordulia pascali n. sp., holotype: A, wings in ventral view; B, base of left HW in ventral view; C, S2 secondary genitalia in left lateral view; D, vesica spermalis in left lateral view (removed from ethanol and air dried); E, distal segments of the vesica spermalis in left lateral view (removed from ethanol and air dried); F, distal segments of the Vesica spermalis in right lateral view (removed from ethanol and air dried); G, distal part of the first segment and distal segments of the vesica spermalis in ventral view (removed from ethanol and air dried). Scale bars: A, 10 mm; B, D-G, 0.5 mm; C, 1 mm.
FIG. 5. — A in The genus Navicordulia Machado & Costa, 1995 (Insecta, Odonata, Corduliidae s.str.): new species, identification key for males and data on ecology and distribution
FIG. 5. — A, distribution map of Navicordulia Machado & Costa, 1995 species of errans group and tropical today extension of grassland, savannah and shrubland in South America following The Nature Conservancy, terrestrial ecoregions. Map background: Natural Earth II; B, distribution map of Navicordulia species of longistyla and uncertain groups and tropical today extension of grassland, savannah and shrubland in South America following The Nature Conservancy, terrestrial ecoregions. Map background: Natural Earth II.
FIG. 4. — Navicordulia pascali n in The genus Navicordulia Machado & Costa, 1995 (Insecta, Odonata, Corduliidae s.str.): new species, identification key for males and data on ecology and distribution
FIG. 4. — Navicordulia pascali n. sp., paratype: A, top of the head showing the eyes seam; B, vesica spermalis in ventral view (removed from ethanol and air dried): distal part of the first segment and distal segments; arrow indicates the third flagellum; B', detail of same with artificially colored third flagellum; C, vesica spermalis in ventral view with a slight lateral component (in ethanol). Arrow indicates the third flagellum; D, distal part of the vesica spermalis in ventral view (in ethanol). Arrow indicates the third flagellum; E, S9, S10 and anal appendages in right lateral view; F, S7 and S8 pilose complex: ventral view; F' schematic longitudinal cut (lateral view, ventral part above). Scale bars: A, B, E, F, 1 mm.
Figure 9 from: Chen J-Z, Zhao C-L (2020) Morphological and molecular identification of four new resupinate species of Lyomyces (Hymenochaetales) from southern China. MycoKeys 65: 101-118. https://doi.org/10.3897/mycokeys.65.48660
Figure 9 Microscopic structures of Lyomyces wuliangshanensis (drawn from the holotype) A basidiospores B basidia and basidioles C cystidia D cystidioles E a cross section of basidiomata. Scale bars: 5 μm (A); 10 μm (B–E).
Figure 8 from: Chen J-Z, Zhao C-L (2020) Morphological and molecular identification of four new resupinate species of Lyomyces (Hymenochaetales) from southern China. MycoKeys 65: 101-118. https://doi.org/10.3897/mycokeys.65.48660
Figure 8 Microscopic structures of Lyomyces macrosporus (drawn from the holotype) A basidiospores B basidia and basidioles C cystidia D cystidioles E a cross section of basidiomata. Scale bars: 10 μm (A–E).
Figure 7 from: Chen J-Z, Zhao C-L (2020) Morphological and molecular identification of four new resupinate species of Lyomyces (Hymenochaetales) from southern China. MycoKeys 65: 101-118. https://doi.org/10.3897/mycokeys.65.48660
Figure 7 Microscopic structures of Lyomyces cremeus (drawn from the holotype) A basidiospores B basidia and basidioles C cystidia D cystidioles E a cross section of basidiomata. Scale bars: 5 μm (A); 10 μm (B–E).
Figure 6 from: Chen J-Z, Zhao C-L (2020) Morphological and molecular identification of four new resupinate species of Lyomyces (Hymenochaetales) from southern China. MycoKeys 65: 101-118. https://doi.org/10.3897/mycokeys.65.48660
Figure 6 Microscopic structures of Lyomyces bambusinus (drawn from the holotype) A basidiospores B basidia and basidioles C cystidia D cystidioles E a cross section of basidiomata. Scale bars: 5 μm (A); 10 μm (B–E).
Figure 1 from: Chen J-Z, Zhao C-L (2020) Morphological and molecular identification of four new resupinate species of Lyomyces (Hymenochaetales) from southern China. MycoKeys 65: 101-118. https://doi.org/10.3897/mycokeys.65.48660
Figure 1 Maximum parsimony strict consensus tree illustrating the phylogeny of four new species and related species in Lyomyces based on ITS sequences. Branches are labelled with maximum likelihood bootstrap equal to or higher than 70%, parsimony bootstrap proportions equal to or higher than 50% and Bayesian posterior probabilities equal to or high than 0.95 respectively.
Figure 7 from: Mu Y-H, Hu Y-P, Wei Y-L, Yuan H-S (2020) Hydnaceous fungi of China 8. Morphological and molecular identification of three new species of Sarcodon and a new record from southwest China. MycoKeys 66: 83-103. https://doi.org/10.3897/mycokeys.66.49910
Figure 7 Microscopic structures of Sarcodon grosselepidotus (drawn from IFP 012529) a basidiospores b section of hymenophoral trama with basidia c hyphae from pileal context.
Figure 4 from: Mu Y-H, Hu Y-P, Wei Y-L, Yuan H-S (2020) Hydnaceous fungi of China 8. Morphological and molecular identification of three new species of Sarcodon and a new record from southwest China. MycoKeys 66: 83-103. https://doi.org/10.3897/mycokeys.66.49910
Figure 4 Microscopic structures of Sarcodon coactus (drawn from IFP 019351) a basidiospores b section of hymenophoral trama with basidia c hyphae from pileal context.
Figure 10 from: Mu Y-H, Hu Y-P, Wei Y-L, Yuan H-S (2020) Hydnaceous fungi of China 8. Morphological and molecular identification of three new species of Sarcodon and a new record from southwest China. MycoKeys 66: 83-103. https://doi.org/10.3897/mycokeys.66.49910
Figure 10 Microscopic structures of Sarcodon lidongensis (drawn from IFP 019357) a basidiospores b section of hymenophoral trama with basidia c hyphae from pileal context.
Figure 1 from: Mu Y-H, Hu Y-P, Wei Y-L, Yuan H-S (2020) Hydnaceous fungi of China 8. Morphological and molecular identification of three new species of Sarcodon and a new record from southwest China. MycoKeys 66: 83-103. https://doi.org/10.3897/mycokeys.66.49910
Figure 1 Maximum likelihood tree illustrating the phylogeny of Sarcodon coactus, S. grosselepidotus, S. lidongensis, S. leucopus and related taxa based on ITS and LSU sequence datasets. Branches are labelled with maximum likelihood bootstrap support greater than 50%, parsimony bootstrap proportions greater than 50% and Bayesian posterior probabilities greater than 0.95.
Fig. 9 in Palaearctic species of Charipinae (Hymenoptera, Figitidae): two new species, synthesis and identification key
Fig. 9. Types of propodeum. 1. Alloxysta arcuata (Kieffer, 1902). 2. A. victrix (Westwood, 1833). 3. Phaenoglyphis americana Baker, 1896. Scale bars: 50 μm.
Fig. 5 in Palaearctic species of Charipinae (Hymenoptera, Figitidae): two new species, synthesis and identification key
Fig. 5. Types of radial cell of Alloxysta Förster, 1869. 1. A. nigricans Hellén, 1963. 2. A. nigrita (Thomson, 1862). 3. A. obscurata (Hartig, 1840). 4. A. pallidicornis (Curtis, 1838). 5. A. patens Hellén, 1963. 6. A. piceomaculata (Cameron, 1883). 7. A. pilipennis (Hartig, 1840). 8. A. pleuralis (Cameron, 1879). 9. A. postica (Hartig, 1841). 10. A. proxima Belizin, 1962. 11. A. pusilla (Kieffer, 1902). 12. A. quedenfeldti (Kieffer, 1909). 13. A. ramulifera (Thomson, 1862). 14. A. rufiventris (Hartig, 1840). 15. A. salicicola Belizin, 1973. 16. A. sawoniewiczi Kierych, 1988. 17. A. semiaperta Fergusson, 1986. 18. A. slovenica Ferrer-Suay & Pujade-Villar, 2013. 19. A. soluta Hellén, 1963. 20. A. tscheki (Giraud, 1860). 21. A. victrix (Westwood, 1833). 22. A. xanthocera (Thomson, 1862). 23. A. xanthopa (Thomson, 1862). 24. A. trapezoidea (Hartig, 1841). Scale bars: 50 μm.
Fig. 2 in Palaearctic species of Charipinae (Hymenoptera, Figitidae): two new species, synthesis and identification key
Fig. 2. Types of antenna of Alloxysta Förster, 1869. 1. A. abdera Fergusson, 1986. 2. A. aperta (Hartig, 1841). 3. A. apteroidea Hellén, 1963. 4. A. arcuata (Kieffer, 1902). 5. A. aurata Belizin, 1968. 6. A. basimacula (Cameron, 1886). 7. A. brachycera Hellén, 1963. 8. A. brachyptera (Hartig, 1840). 9. A. brevis (Thomson, 1862). 10. A. brevitarsis (Thomson, 1862). 11. A. castanea (Hartig, 1841). 12. A. circumscripta (Hartig, 1841). 13. A. citripes (Thomson, 1862). 14. A. consobrina (Zetterstedt, 1838). 15. A. crassa (Cameron, 1889). 16. A. crassicornis (Thomson, 1862). 17. A. fracticornis (Thomson, 1862). 18. A. fuscipes (Thomson, 1862). 19. A. glebaria Hellén, 1963. 20. A. halterata (Thomson, 1862). 21. A. heptatoma Hellén, 1963. 22. A. kovilovica Ferrer-Suay & Pujade-Villar, 2013. 23. A. leunisii (Hartig, 1841). 24. A. longipennis (Hartig, 1841). 25. A. macrophadna (Hartig, 1841). 26. A. marshalliana (Kieffer, 1900). 27. A. melanogaster (Hartig, 1840). 28. A. mullensis (Cameron, 1883). 29. A. nigricans Hellén, 1963. 30. A. nigrita (Thomson, 1862). 31. A. obscurata (Hartig, 1840). 32. A. pallidicornis (Curtis, 1838). 33. A. patens Hellén, 1963. Scale bars: 50 μm.
Figure 6 from: Sharaf MR, Aldawood AS, Mohamed AA, Hita Garcia F (2020) The genus Lepisiota Santschi, 1926 of the Arabian Peninsula with the description of a new species, Lepisiota elbazi sp. nov. from Oman, an updated species identification key, and assessment of zoogeographic affinities. Journal of Hymenoptera Research 76: 127-152. https://doi.org/10.3897/jhr.76.50193
Figure 6 Lepisiota elbazi sp. nov. A body in profile B body in dorsal view C head in full-face view, CASENT0922860, (Michele Esposito), www.AntWeb.org.
Figure 4 from: Sharaf MR, Aldawood AS, Mohamed AA, Hita Garcia F (2020) The genus Lepisiota Santschi, 1926 of the Arabian Peninsula with the description of a new species, Lepisiota elbazi sp. nov. from Oman, an updated species identification key, and assessment of zoogeographic affinities. Journal of Hymenoptera Research 76: 127-152. https://doi.org/10.3897/jhr.76.50193
Figure 4 A mesosoma of L. omanensis in profile showing propodeal spines, CASENT0922278 (Michele Esposito) B body of L. frauenfeldi in profile propodeal and petiolar spines, CASENT0909884 (Zach Lieberman) C body of L. nigrescens in profile, CASENT0912400 (Will Ericson) D body of L. obtusa in profile showing reduced petiolar spines, CASENT0280477 (Shannon Hartman), www.AntWeb.org.
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.