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Fig. 1 in Taxonomy of the ant genus Nesomyrmex Wheeler (Formicidae, Myrmicinae) in the Afrotropical region, with a review of current species groups and description of a new species of the N. angulatus group from Mozambique
Fig. 1. Schematic line drawings of Nesomyrmex inhaca sp. nov., illustrating the measurements used. A. Body in profile with measuring lines for EL, WL, PH, PTH and PPH. B. Mesosoma in dorsal view with measuring line for PW. C. Petiole and postpetiole in dorsal view with measuring lines for PTL, PTW, PPL and PPW. D. Head in full-face view with measuring lines for HL, HW and SL. E. Dorsocaudal view of the propodeum with measuring line for PSL.
Fig. 20 in Taxonomy of the ant genus Nesomyrmex Wheeler (Formicidae, Myrmicinae) in the Afrotropical region, with a review of current species groups and description of a new species of the N. angulatus group from Mozambique
Fig. 20. Nesomyrmex stramineus (Arnold, 1948) (CASENT0922011). A. Body in profile view. B. Body in dorsal view. C. Head in full-face view. D. Map of Africa and Madagascar showing currently known distribution.
Fig. 9 in Taxonomy of the ant genus Nesomyrmex Wheeler (Formicidae, Myrmicinae) in the Afrotropical region, with a review of current species groups and description of a new species of the N. angulatus group from Mozambique
Fig. 9. Body in profile. A. Nesomyrmex angulatus (Mayr, 1862) (CASENT0922010). B. N. grisoni (Forel, 1916) (CASENT0908994).
Figs 28-31 in The scolopendromorph centipedes (Chilopoda, Scolopendromorpha) of Tunisia: taxonomy, distribution and habitats
Figs 28-31. Cryptops punicus: 28 – tergite 1; 29 – coxosternum; 30 – labral tooth; 31 – tibia and tarsus of ultimate leg. Arrows on figures 26 and 28 indicate the tergal sutures.
Figs 26-27 in The scolopendromorph centipedes (Chilopoda, Scolopendromorpha) of Tunisia: taxonomy, distribution and habitats
Figs 26-27. Cryptops trisulcatus: 26 – posterior part of head plate and tergite 1; 27 – coxosternum.
Figs 14-17 in The scolopendromorph centipedes (Chilopoda, Scolopendromorpha) of Tunisia: taxonomy, distribution and habitats
Figs 14-17. Cormocephalus gervaisianus: 14 – head plate; 15 – forcipular coxosternum and forcipules; 16 – terminal tergite and prefemur of ultimate leg, dorsal view; 17 – prefemur of ultimate leg, ventral view.
Figs 1-7 in The scolopendromorph centipedes (Chilopoda, Scolopendromorpha) of Tunisia: taxonomy, distribution and habitats
Figs 1-7. Scolopendra canidens: 1 – head plate; 2 – forcipular coxosternum and forcipules; 3 – leg 1; 4 – spiracle; 5 – coxopleural process, lateral view; 6-7 – prefemur of ultimate leg, dorsal and ventral views, respectively.
Fig. 7 in Taxonomy of Bradysia Winnertz (Diptera, Sciaridae) in the Northern Holarctic, with the description of four new species
Fig. 7. Bradysia quercina Menzel & Köhler, 2014 (from Sweden). A. Part of hypopygium, ventral view. B. Gonostylus, ventral view. C. Apical part of gonostylus, ventral view. Scales = 0.1 mm.
Fig. 6 in Taxonomy of Bradysia Winnertz (Diptera, Sciaridae) in the Northern Holarctic, with the description of four new species
Fig. 6. Bradysia plusiospina sp. nov. (holotype). A. Part of hypopygium, ventral view. B. Gonostylus, ventral view. Scales = 0.1 mm.
Fig. 5 in Taxonomy of Bradysia Winnertz (Diptera, Sciaridae) in the Northern Holarctic, with the description of four new species
Fig. 5. Bradysia oelandica sp. nov. (holotype). A. Gonostylus, ventral view. B. Part of hypopygium, ventral view. C. Medial parts of hypopygium, ventral view. Scale bars: A = 0.1 mm, B–C = 0.3 mm. 1 = lobe at dorsal mesial margin of gonocoxa, 2 = tegmen, 3 = gonocoxal apodeme, 4 = aedeagal apodeme.
Fig. 4 in Taxonomy of Bradysia Winnertz (Diptera, Sciaridae) in the Northern Holarctic, with the description of four new species
Fig. 4. Bradysia falciceps sp. nov. (holotype). A. Part of hypopygium, ventral view. B. Gonostylus, ventral view. Scales = 0.1 mm.
Fig. 2 in Taxonomy of Bradysia Winnertz (Diptera, Sciaridae) in the Northern Holarctic, with the description of four new species
Fig. 2. Bradysia bigeminata sp. nov. (holotype). A. Part of hypopygium, ventral view. B. Gonostylus, ventral view. Scales = 0.1 mm.
Fig. 3 in Taxonomy of Bradysia Winnertz (Diptera, Sciaridae) in the Northern Holarctic, with the description of four new species
Fig. 3. Bradysia chlorocornea Mohrig & Menzel, 1992 (from Finland). A. Gonostylus, ventral view. B. Part of hypopygium, ventral view. Scales = 0.1 mm.
Fig. 1. Bradysia ascenda Rudzinski, 1994 in Taxonomy of Bradysia Winnertz (Diptera, Sciaridae) in the Northern Holarctic, with the description of four new species
Fig. 1. Bradysia ascenda Rudzinski, 1994 (from Sweden). A. Part of hypopygium, ventral view. B. Gonostylus, ventral view. C. Tegmen and cerci, ventral view. D. Apical part of gonostylus, ventral view. Scales = 0.1 mm.
Fig. 20. Crematogaster sewellii Forel, 1891 in Taxonomy of the Crematogaster degeeri-species-assemblage in the Malagasy region (Hymenoptera: Formicidae)
Fig. 20. Crematogaster sewellii Forel, 1891, worker and queen. A-C. Worker (CASENT0120975). A. Full-face. B. Profile. C. Dorsal. D-F. Queen (CASENT0496779). D. Full-face. E. Profile. F. Dorsal.
Fig. 2 in Molecular phylogeny of Blaberidae (Dictyoptera, Blattodea), with implications for taxonomy and evolutionary scenarios
Fig. 2. Conflicting results among different molecular markers. The phylogenetic relationships of four species are detailed for separate and combined analyses performed in Maximum Likelihood (ML) and Bayesian Inference (BI). Boxes colored as 'Untested or unresolved' refer to missing data and multifurcation, respectively.
Fig. 1 in Molecular phylogeny of Blaberidae (Dictyoptera, Blattodea), with implications for taxonomy and evolutionary scenarios
Fig. 1. [part 2 on next page] Optimal phylogenetic tree reconstructed in Maximum Likelihood with the combined dataset. Bootstrap values and posterior probabilities are reported for each node (bootstrap values below 25% are not displayed). The color of internal branches is proportional to bootstrap values. Geographic origin of the specimens sequenced is provided in brackets after the species names. In purple, monophyletic group congruent with morphological hypotheses; in blue, monophyletic group with geographic consistency at the continental level; in brown, incertae sedis species; in green, four species with conflicting and supported positions (Thanatophyllum akinetum Grandcolas, 1991 and Phoetalia pallida (Brunner von Wattenwyl, 1865) or congruent, but weakly supported positions (Laxta sp. and Pronauphoeta cf. viridula (Palisot de Beauvois, 1805)). The four latter species are discussed in the text (see also Fig. 2). The subfamilies indicated on the right of the tree are derived from traditional morphology-based classifications. Units for the branch length scale at the bottom right: number of expected substitutions per site.
Fig. 21. Crematogaster sewellii Forel, 1891 in Taxonomy of the Crematogaster degeeri-species-assemblage in the Malagasy region (Hymenoptera: Formicidae)
Fig. 21. Crematogaster sewellii Forel, 1891, male and distribution. A, C. Male (CASENT0317761). A. Full-face. C. Profile. B. Species distribution.
Fig. 17 in Taxonomy of the Crematogaster degeeri-species-assemblage in the Malagasy region (Hymenoptera: Formicidae)
Fig. 17. Crematogaster malahelo sp. nov., worker and distribution. A, C-D. Worker (CASENT0317768). A. Full-face. C. Profile. D. Dorsal. B. Species distribution.
Fig. 16 in Taxonomy of the Crematogaster degeeri-species-assemblage in the Malagasy region (Hymenoptera: Formicidae)
Fig. 16. Crematogaster maina sp. nov., queen, male and distribution. A-C. Queen (CASENT0485040). A. Full-face. B. Profile. C. Dorsal. D. Species distribution. E-F. Male (CASENT0455252). E. Full-face. F. Profile.
ScienceDex guides
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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.