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.
2,759
datasets available to search
ShareScore release 0.9.0
Dataset results
2,759 results for “Taxonomic groups”
FIGURES 48–49 in A taxonomic revision of the Eucelatoria ferox species group (Diptera: Tachinidae)
FIGURES 48–49. Female habitus photographs of Eucelatoria ferox group spp., lateral view. 48. E. huitepecensis sp. nov., holotype (ZLB_E.Ferox 00284) (DMW). 49. E. inclani sp. nov., holotype (ZLB_E.Ferox 00397) (CNC).
FIGURES 2–5 in A taxonomic revision of the Eucelatoria ferox species group (Diptera: Tachinidae)
FIGURES 2–5. Female habitus photographs of Eucelatoria ferox group spp., dorsal view. 2. E. ferox (Townsend), Chapare Province (ZLB_E.Ferox 00399) (DMW). 3. E. huitepecensis sp. nov., holotype (ZLB_E.Ferox 00284) (DMW). 4. E. inclani sp. nov., holotype (ZLB_E.Ferox 00397) (CNC). 5. E. aurata (Townsend), Nova Teutonia (ZLB_E.Ferox 00232) (DMW).
FIGURES 14–17 in A taxonomic revision of the Eucelatoria ferox species group (Diptera: Tachinidae)
FIGURES 14–17. Female habitus photographs of Eucelatoria ferox group spp., dorsal view. 14. E. luctuosa (Wulp), Vera Cruz (ZLB_E.Ferox 00283) (DMW). 15. E. rivalis (Reinhard), holotype (CNC). 16. E. sabroskyi sp. nov., Southwest Research Station (ZLB_E.Ferox 00086) (USNM). 17. E. strigata (Wulp), Trinidad (ZLB_E.Ferox 00115) (CNC).
FIGURES 46–47 in A taxonomic revision of the Eucelatoria ferox species group (Diptera: Tachinidae)
FIGURES 46–47. Habitus photographs of Eucelatoria ferox group spp. 46. Male, dorsal view, of E. tenebrionis sp. nov., Nova Teutonia (ZLB_E.Ferox 00268) (DMW). 47. Female, lateral view, of E. ferox, Chapare Province (ZLB_E.Ferox 00399) (DMW).
FIGURES 60–61 in A taxonomic revision of the Eucelatoria ferox species group (Diptera: Tachinidae)
FIGURES 60–61. Female habitus photographs of Eucelatoria ferox group spp., lateral view. 60. E. rivalis (Reinhard), holotype (CNC). 61. E. sabroskyi sp. nov., Southwest Research Station (ZLB_E.Ferox 00086) (USNM).
FIGURES 42–45 in A taxonomic revision of the Eucelatoria ferox species group (Diptera: Tachinidae)
FIGURES 42–45. Male habitus photographs of Eucelatoria ferox group spp., dorsal view. 42. E. hafelei sp. nov., Chapare Province (ZLB_E.Ferox 00386) (DMW). 43. E. kopis sp. nov., allotype (ZLB_E.Ferox 00003) (CNC). 44. E. makhaira sp. nov., allotype (ZLB_E.Ferox 00343) (USNM). 45. E. ritavargasae sp. nov., holotype (ZLB_E.Ferox 00004) (CNC).
FIGURES 10–13 in A taxonomic revision of the Eucelatoria ferox species group (Diptera: Tachinidae)
FIGURES 10–13. Female habitus photographs of Eucelatoria ferox group spp., dorsal view. 10. E. falcata sp. nov., allotype (ZLB_E.Ferox 00276) (DMW). 11. E. fordlandia sp. nov., allotype (ZLB_E.Ferox 00314) (USNM). 12. E. gladiatrix (Townsend), Guanacaste Province (ZLB_E.Ferox 00380) (CNC). 13. E. jorgecortesi sp. nov., holotype (ZLB_E.Ferox 00401) (CNC).
FIGURE 1 in A taxonomic revision of the Eucelatoria ferox species group (Diptera: Tachinidae)
FIGURE 1. CO1-based neighbor-joining tree of 12 species of the Eucelatoria ferox species group, with inset illustrations of mesonota. The outgroup is Eucelatoria armigera (Coquillett). Node labels indicate support values over 60. Scale bar = 2% genetic difference. The E. charapensis (Townsend) sequence with the axial break is of poor quality but is included to show unity of El Bigal specimens with the rest of the metapopulation. Mesonota are illustrated with setal annuli only for clarity. A. E. gustavogutierrezi sp. nov. B. E. kopis sp. nov. C. E. ritavargasae sp. nov. D. E. ferox (Townsend). E. E. huitepecensis sp. nov. F. E. auriceps (Aldrich). G. E. gladiatrix (Townsend). H. E. borealis sp. nov. I. E. yanayacu sp. nov.
FIGURES 30–33 in A taxonomic revision of the Eucelatoria ferox species group (Diptera: Tachinidae)
FIGURES 30–33. Male habitus photographs of Eucelatoria ferox group spp., dorsal view. 30. E. charapensis (Townsend), San Jose Province (ZLB_E.Ferox 00168) (DMW). 31. E. charapensis (Townsend), El Bigal Reserve (ZLB_E.Ferox 00395). 32. E. crambivora sp. nov., holotype (ZLB_E.Ferox 00404) (CNC). 33. E. falcata sp. nov. holotype (ZLB_E.Ferox 00272) (CNC).
FIGURES 70–71 in A taxonomic revision of the Eucelatoria ferox species group (Diptera: Tachinidae)
FIGURES 70–71. Female habitus photographs of Eucelatoria ferox group spp., lateral view. 70. E. sica sp. nov., holotype (ZLB_E.Ferox 00391) (USNM). 71. E. tenebrionis sp. nov., holotype (ZLB_E.Ferox 00216) (DMW).
FIGURES 74–75 in A taxonomic revision of the Eucelatoria ferox species group (Diptera: Tachinidae)
FIGURES 74–75. Male habitus photographs of Eucelatoria ferox group spp., lateral view. 74. E. borealis sp. nov., holotype (ZLB_E.Ferox 00037) (DMW). 75. E. charapensis (Townsend), San Jose Province (ZLB_E.Ferox 00168) (DMW).
FIGURES 56–57 in A taxonomic revision of the Eucelatoria ferox species group (Diptera: Tachinidae)
FIGURES 56–57. Female habitus photographs of Eucelatoria ferox group spp., lateral view. 56. E. fordlandia sp. nov., allotype (ZLB_E.Ferox 00314) (USNM). 57. E. gladiatrix (Townsend), Guanacaste Province (ZLB_E.Ferox 00380) (CNC).
FIGURES 54–55 in A taxonomic revision of the Eucelatoria ferox species group (Diptera: Tachinidae)
FIGURES 54–55. Female habitus photographs of Eucelatoria ferox group spp., lateral view. 54. E. charapensis (Townsend), El Bigal Reserve (ZLB_E.Ferox 00394) (JOSC). 55. E. falcata sp. nov., allotype (ZLB_E.Ferox 00276) (DMW).
FIGURES 76–77 in A taxonomic revision of the Eucelatoria ferox species group (Diptera: Tachinidae)
FIGURES 76–77. Male habitus photographs of Eucelatoria ferox group spp., lateral view. 76. E. charapensis (Townsend), El Bigal Reserve (ZLB_E.Ferox 00395). 77. E. crambivora sp. nov., holotype (ZLB_E.Ferox 00404) (CNC).
FIGURES 72–73 in A taxonomic revision of the Eucelatoria ferox species group (Diptera: Tachinidae)
FIGURES 72–73. Male habitus photographs of Eucelatoria ferox group spp., lateral view. 72. E. aurata (Townsend), Nova Teutonia (ZLB_E.Ferox 00227) (DMW). 73. E. auriceps (Aldrich), Panthersville (ZLB_E.Ferox 00028) (USNM).
FIGURE 1 in Taxonomic revision of the Apiomerus maya species group (Heteroptera: Reduviidae: Harpactorinae)
FIGURE 1. Dorsal habitus images of (A) A. immundus Bergroth, 1898 [♂ LECTOTYPE = UCR_ENT 00040816], (B) Apiomerus maya Dispons, 1971 [♀ = UCR_ENT 00013169, ♂ HOLOTYPE = UCR_ENT 00038047], (C) A. pipil Dispons, 1971 [♀ = AMNH_PBI 00218895, ♂ = UCR_ENT 00032865], and (D) A. venosus Stål, 1872 [♀ = UCR_ENT 00031790, ♂ = UCR_ENT 00032336]. All scale bars represent 4 mm.
FIGURE 3 in Taxonomic revision of the Apiomerus maya species group (Heteroptera: Reduviidae: Harpactorinae)
FIGURE 3. Dorsal (A–D) and lateral (E–H) views of the aedeagus of males of the maya species group. An arrow-shaped dorsal phallothecal sclerite (dps) is commonly seen in males of these species (subconical in A. immundus). Note the paired triangular projections (tp) positioned basally on the dps of Apiomerus maya (B & F); these projections are absent in other maya group taxa. The basal dorsolateral sclerites of the endosoma (bdls) can be short and round (A. maya), moderately elongated with fine sculpturing basally (A. immundus), or greatly elongated and slightly twisted (A. pipil and A. venosus). The number of peg-like endosomal denticles (ed) aligned longitudinally along the distal dorsal lobes of the endosoma (ddl) varies across the group. In some taxa, notably A. immundus and some A. venosus, lateral sclerotizations of the endosoma (ls) may be observed along the endosoma's proximal dorsolateral surface. All scale bars represent 0.5 mm.
FIGURE 5 in Taxonomic revision of the Apiomerus maya species group (Heteroptera: Reduviidae: Harpactorinae)
FIGURE 5. Apiomerus venosus lectotype dorsal habitus (A), specimen labels (B), and caudal view of pygophore (C). The "Allotypus" label associated with this specimen is a curatorial artifact. Dorsal habitus (D) and labels (E) of the A. tristis lectotype (UCR_ENT 00048736). Figures A and D are not to scale. A–C photographed by Gunvi Lindberg (© 2022 NHRS). Original photos cropped, light levels and contrast adjusted. Made available by the Swedish Museum of Natural History under Creative Commons Attribution 4.0 International Public License, CC-BY 4.0.
Data from: Inordinate spinescence: taxonomic revision and microtomography of the Pheidole cervicornis species group (Hymenoptera, Formicidae)
The ant genus Pheidole—for all of its hyperdiversity and global ubiquity—is remarkably conservative with regard to morphological disparity. A striking exception to this constrained morphology is the spinescent morphotype, which has evolved multiple times across distantly related lineages of Indoaustralian Pheidole. The Pheidole cervicornis group contains perhaps the most extraordinary spinescent forms of all Pheidole. Here we present a taxonomic revision of the P. cervicornis group, and use microtomographic scanning technology to investigate the internal anatomy of the thoracic spines. Our findings suggest the pronotal spines of Pheidole majors, are possibly skeletomuscular adaptations for supporting their disproportionately large heads. The 'head support hypothesis' is an alternative to the mechanical defense hypothesis most often used to explain spinescence in ants. The P. cervicornis group is known only from New Guinea and is represented by the following four species, including two described here as new: P. barumtaun Donisthorpe, P. drogon sp. nov., P. cervicornis Emery, and P. viserion sp. nov. The group is most readily identified by the minor worker caste, which has extremely long pronotal spines and strongly bifurcating propodeal spines. The major and minor workers of all species are illustrated with specimen photographs, with the exception of the major worker of P. cervicornis, which is not known.
Figure 10 in Songs, genetics, and morphology: revealing the taxonomic units in the European Cicadetta cerdaniensis cicada group, with a description of new taxa (Hemiptera: Cicadidae)
Figure 10. Habitats of Cicadetta sibillae sp. nov. in Tiglieto (Liguria, A) and at the Monte San Giorgio (Ticino, B), and most important location of Cicadetta anapaistica lucana ssp. nov. in the mountainous Pollino National Park (C). Threatened core population habitat of Cicadetta anapaistica anapaistica in the Madonie Mountains as a result of overgrazing and soil erosion (D).
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.