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.
16,415
datasets available to search
ShareScore release 0.8.0
Dataset results
16,415 results for “species key”
FIGURE 5 in A New Species of Whip-Like Gorgonian Coral in the Genus Swiftia from the Gulf of the Farallones in Central California, with a Key to Eastern Pacific Species in California (Cnidaria, Octocorallia, Plexauridae)
FIGURE 5. Swiftia farallonesica sp. nov. Scanning electron micrographs of coenenchymal sclerites — eight radiates. Scale bar = 0.03 mm.
FIGURE 6 in A New Species of Whip-Like Gorgonian Coral in the Genus Swiftia from the Gulf of the Farallones in Central California, with a Key to Eastern Pacific Species in California (Cnidaria, Octocorallia, Plexauridae)
FIGURE 6. Swiftia farallonesica sp. nov. Scanning electron micrographs of coenenchymal sclerites — spindles. Scale bar = 0.03 mm.
FIGURE 3 in A New Species of Whip-Like Gorgonian Coral in the Genus Swiftia from the Gulf of the Farallones in Central California, with a Key to Eastern Pacific Species in California (Cnidaria, Octocorallia, Plexauridae)
FIGURE 3. Swiftia farallonesica sp. nov. Underwater photographs taken in situ by ROV, between 181 and 190 m in depth, 6 September 2014.
FIGURE 8 in A New Species of Whip-Like Gorgonian Coral in the Genus Swiftia from the Gulf of the Farallones in Central California, with a Key to Eastern Pacific Species in California (Cnidaria, Octocorallia, Plexauridae)
FIGURE 8. Map of the Greater Farallones National Marine Sanctuary (central California, USA), showing type locality of Swiftia farallonesica sp. nov. (represented by red triangle). Map modified from National Oceanic and Atmospheric Administration (2014).
Рис. 1. Рисуночный кΛюч ΑΛя опреΑеΛения виΑов роΑа Ethmolaimus de Man, 1880: A, C, E, G, I, K, M, O, Q, S, U, W — гоΛова самца; B, D, F, H, J, L, N, P, R, T, V, X — заΑний конец теΛа самца; Y — гоΛова самки; Z — заΑний конец теΛа самки Fig. 1. Pictorial key to the species of the genus Ethmolaimus de Man, 1880: A, C, E, G, I, K, M, O, Q, S, U, W — head of male; B, D, F, H, J, L, N, P, R, T, V, X — posterior body end of male; Y — head of female; Z — posterior body end of female in Morphological review of the genus Ethmolaimus de Man 1880 (Nematoda, Chromadorida)
Рис. 1. Рисуночный кΛюч ΑΛя опреΑеΛения виΑов роΑа Ethmolaimus de Man, 1880: A, C, E, G, I, K, M, O, Q, S, U, W — гоΛова самца; B, D, F, H, J, L, N, P, R, T, V, X — заΑний конец теΛа самца; Y — гоΛова самки; Z — заΑний конец теΛа самки Fig. 1. Pictorial key to the species of the genus Ethmolaimus de Man, 1880: A, C, E, G, I, K, M, O, Q, S, U, W — head of male; B, D, F, H, J, L, N, P, R, T, V, X — posterior body end of male; Y — head of female; Z — posterior body end of female
Fig. 53 in Dasydorylas Skevington, 2001 (Pipunculidae, Tomosvaryellini) of Colombia, with description of three new species and a key to Neotropical males
Fig. 53. Geographical records of species of Dasydorylas Skevington, 2001 in Colombia. Dasydorylas colombiensis sp. nov., D. gibber sp. nov., D. nigellus (Rafael, 1991) and D. santainesensis sp. nov.
Figs 14–26 in Dasydorylas Skevington, 2001 (Pipunculidae, Tomosvaryellini) of Colombia, with description of three new species and a key to Neotropical males
Figs 14–26. Dasydorylas gibber sp. nov., ♂, holotype (IAvH). 14. Habitus, left lateral view. 15. Habitus, dorsal view. 16. Antenna. 17. Thorax, dorsal view. 18. Wing. 19. Abdomen, dorsal view. 20. Tergites and sternites 6 and 7, ventral view. 21. Terminalia, dorsal view. 22. Left surstylus, lateral view. 23. Right surstylus, lateral view. 24. Hypandrium and gonopods, ventral view. 25. Phallic guide and phallus, left lateral view. 26. Ejaculatory apodeme.
Figs 1–13 in Dasydorylas Skevington, 2001 (Pipunculidae, Tomosvaryellini) of Colombia, with description of three new species and a key to Neotropical males
Figs 1–13. Dasydorylas colombiensis sp. nov., ♂, holotype (IAvH–M1063). 1. Habitus, left lateral view. 2. Habitus, dorsal view. 3. Antenna. 4. Thorax, dorsal view. 5. Wing. 6. Abdomen, dorsal view. 7. Tergites and sternites 6 and 7, ventral view. 8. Terminalia, dorsal view. 9. Left surstylus, lateral view. 10. Right surstylus, lateral view. 11. Hypandrium and gonopods, ventral view. 12. Phallic guide and phallus, left lateral view. 13. Ejaculatory apodeme.
Figs 40–52 in Dasydorylas Skevington, 2001 (Pipunculidae, Tomosvaryellini) of Colombia, with description of three new species and a key to Neotropical males
Figs 40–52. Dasydorylas santainesensis sp. nov., ♂, holotype (CEUA–M101599). 40. Habitus, left lateral view. 41. Habitus, dorsal view. 42. Antenna. 43. Thorax, dorsal view. 44. Wing. 45. Abdomen, dorsal view. 46. Tergites and sternites 6 and 7, ventral view. 47. Terminalia, dorsal view. 48. Left surstylus, lateral view. 49. Right surstylus, lateral view. 50. Hypandrium and gonopods, ventral view. 51. Phallic guide and phallus, left lateral view. 52. Ejaculatory apodeme.
Fig. 1. Study area and surrounding intertidal habitats. A in Two new species of Perinereis Kinberg, 1865 (Annelida: Nereididae) from the rocky shore of Maharashtra, India, including notes and an identification key to Group 1
Fig. 1. Study area and surrounding intertidal habitats. A. Coastal region of Maharashtra (western India) and collecting localities. B. Aerial view of the rocky intertidal habitat of the study area. C. Intertidal area with rocks covered with seaweed. D. Close-up view of the intertidal area with rocks covered with seaweed and oyster shells. E. Scraped-out seabed (oyster shells, algae, and sediment), burrows of polychaetes and other small invertebrates can be seen. F. Close-up view of burrowing nereidid dwelling among the seabed. Red arrows point to burrowing worms. Scale bars: B = 20 m; C = 1 m; D = 50 cm; E–F = 3 cm.
Fig. 3 in Two new species of Perinereis Kinberg, 1865 (Annelida: Nereididae) from the rocky shore of Maharashtra, India, including notes and an identification key to Group 1
Fig. 3. Perinereis misrai sp. nov. from Mumbai, Maharashtra, India. A–C, F–N. Holotype (MSUBZL-AN-PCh-06), atoke. D–E. Paratype (ZSI-WRC ANN/27), atoke. A. Whole body in dorsal view. B. Anterior end and everted proboscis in dorsal view. C. Everted proboscis in ventral view. D. Left jaw in ventral view, arrows pointing to inner canals. E. Paired oesophageal caeca (arrows) in dorsal view. F–J. Parapodia in anterior view; numbers refer to the chaetiger. K. Heterogomph spiniger from neuropodial subacicular fascicle (chaetiger 25). L. Heterogomph falciger from neuropodial subacicular fascicle (chaetiger 61). M. Heterogomph falciger from neuropodial supracicular fascicle (chaetiger 61). Scale bars: A = 9 mm; B = 0.45 mm; C–D, N = 0.5 mm; E = 0.35 mm; F, J = 0.15 mm; G–I = 0.22 mm; K = 18 μm; L–M = 10 μm.
Fig. 2 in Two new species of Perinereis Kinberg, 1865 (Annelida: Nereididae) from the rocky shore of Maharashtra, India, including notes and an identification key to Group 1
Fig. 2. Perinereis malabarensis sp. nov. from Mumbai, Maharashtra, India. A–E, H–O. Holotype (MSUB-ZL-AN-PCh-04), atoke. F–G. Paratype (ZSI-WRC ANN/26), atoke. A. Whole body in dorsal view. B. Anterior end and everted proboscis in dorsal view. C. Maxillary ring of proboscis in ventral view. D. Oral ring of proboscis in ventral view. E. Oral ring of proboscis in dorsal view. F. Left jaw in ventral view, arrow pointing to inner canals. G. Paired oesophageal caeca (arrows) in dorsal view. H–L. Parapodia in anterior view (except I and K, in posterior view), numbers refer to the chaetiger. M. Homogomph spiniger from notopodia (chaetiger 50). N. Heterogomph falciger from neuropodial supracicular fascicle (chaetiger 50). O. Heterogomph falciger from neuropodial subacicular fascicle (chaetiger 50). Scale bars: A = 6 mm; B = 0.7 mm; C–D, F = 0.5 mm; E = 0.4 mm; G = 0.8 mm; H = 0.22 mm; I–L = 0.23 mm; M = 12 μm; N–O = 16 μm.
Fig. 2 in Description of a new species of Aleurotulus Quaintance & Baker (Hemiptera: Aleyrodidae) from Mexico, with a key to species
Fig. 2. Aleurotulus carapiai Sánchez-Flores and García-Martínez sp. nov. puparium mounted on slides.
Fig. 70. Lower elevational vegetations. A in Taxonomy of the ant genera Leptothorax Mayr, 1855 and Temnothorax Mayr, 1861 (Hymenoptera: Formicidae) of China with descriptions of twenty-eight new species and a key to the known Chinese species
Fig. 70. Lower elevational vegetations. A. Semi-moist evergreen broadleaf forest (2000 m, Tengchong, Yunnan). B. Dry deciduous broadleaf forest (1840 m, Luquan, Yunnan). C. Keteleeria evelyniana Mast. forest (1820 m, Anning, Yunnan). D. Monsoon evergreen broadleaf forest (1500 m, Gengma, Yunnan). E. Quercus variabilis Blume forest (1350 m, Guangnan, Yunnan). F. Dry evergreen broadleaf forest (518 m, Yuanyang, Yunnan). Photos by Zheng-Hui Xu.
Fig. 62 in Taxonomy of the ant genera Leptothorax Mayr, 1855 and Temnothorax Mayr, 1861 (Hymenoptera: Formicidae) of China with descriptions of twenty-eight new species and a key to the known Chinese species
Fig. 62. Temnothorax reduncus (Wang & Wu, 1988), holotype worker (CAF). A. Head in full-face view. B. Body in lateral view. C. Body in dorsal view.
Fig. 67. Temnothorax pisarskii Radchenko, 2004 in Taxonomy of the ant genera Leptothorax Mayr, 1855 and Temnothorax Mayr, 1861 (Hymenoptera: Formicidae) of China with descriptions of twenty-eight new species and a key to the known Chinese species
Fig. 67. Temnothorax pisarskii Radchenko, 2004, paratype worker (MIZW). A. Head in full-face view. B. Body in lateral view. C. Body in dorsal view.. Images cited from www.antweb.org, CASENT 0917459, photos by Kate Martynova.
Fig. 61 in Taxonomy of the ant genera Leptothorax Mayr, 1855 and Temnothorax Mayr, 1861 (Hymenoptera: Formicidae) of China with descriptions of twenty-eight new species and a key to the known Chinese species
Fig. 61. Temnothorax barrettoi Hamer & Guénard, 2023, holotype worker (ZRC). A. Head in full-face view. B. Body in lateral view. C. Body in dorsal view. Images cited from Hamer et al. (2023), photos by Matthew T. Hamer et al.
Fig. 60 in Taxonomy of the ant genera Leptothorax Mayr, 1855 and Temnothorax Mayr, 1861 (Hymenoptera: Formicidae) of China with descriptions of twenty-eight new species and a key to the known Chinese species
Fig. 60. Temnothorax reticulatus (Chang & He, 2001), holotype worker (NXU 98-610). A. Head in fullface view. B. Body in lateral view. C. Body in dorsal view.
Fig. 58 in Taxonomy of the ant genera Leptothorax Mayr, 1855 and Temnothorax Mayr, 1861 (Hymenoptera: Formicidae) of China with descriptions of twenty-eight new species and a key to the known Chinese species
Fig. 58. Temnothorax ruginosus Zhou et al., 2010, holotype worker (GXNU0407357). A. Head in fullface view. B. Body in lateral view. C. Body in dorsal view. Photos by Zhi-Lin Chen.
Fig. 57. Temnothorax xanthos Radchenko, 2004 in Taxonomy of the ant genera Leptothorax Mayr, 1855 and Temnothorax Mayr, 1861 (Hymenoptera: Formicidae) of China with descriptions of twenty-eight new species and a key to the known Chinese species
Fig. 57. Temnothorax xanthos Radchenko, 2004, holotype worker (MIZW). A. Head in full-face view. B. Body in lateral view. C. Body in dorsal view. Images cited from www.antweb.org, CASENT 0917212, photos by Kate Martynova.
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.