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196 results for “male characters”
FIGURE 8. Male characters. Scale bars, 1 in Phylogeny of Dynastor and Brassolis butterflies (Lepidoptera: Nymphalidae): a tough nut to crack
FIGURE 8. Male characters. Scale bars, 1 mm. Labial palp in lateral view. (A) Bia actorion. (B) Brassolis sophorae. (C) Dynastor darius. Tegumen in dorsal view. (D) B.astyra. Genitalic capsule in lateral view. (E) D. darius. (F) B. sophorae. Tegumen and uncus in lateral view. (G) D. macrosiris. Phallus in lateral view. (H) D. napoleon. Juxta in ventral view. (I) B. astyra. (J) D. napoleon. Phallus in ventral view. (K) D. darius. (L) B. haenschi. (M) B. granadensis.
FIGURE 6. Male pleopod II in Development of sexual characters in the cave shrimp genus Troglocaris (Crustacea: Decapoda: Atyidae) and their applicability in taxonomy
FIGURE 6. Male pleopod II (plpII) appendices and pereopod III (ppIII) distal articles in T. (S.) prasence (Spra), T. (S.) kapelana (Ska), juvenile (jSne) and presumably adult (Sne) T. (S.) neglecta. While the maturity of T. (S.) prasence male is ascertained, for the males of T. (S.) neglecta and T. (S.) kapelana (full) maturity cannot be ascertained due to deficient number of specimens. Carapace length (in mm): jSne, 5.7; Sne, 6.3; Ska, 8.5; Spra, 7.7.
FIGURES 1–9. C. perseana adult characters. 1, male holotype. 2, female. 3, male genitalia. 4, female genitalia. 5, male eighth abdominal sternite. 6 in A new avocado pest in Central America (Lepidoptera: Tortricidae) with a key to Lepidoptera larvae threatening avocados in California
FIGURES 1–9. C. perseana adult characters. 1, male holotype. 2, female. 3, male genitalia. 4, female genitalia. 5, male eighth abdominal sternite. 6, male coremata, slide mounted. 7, head. 8, male coremata, posterior aspect. 9, male coremata, lateral aspect.
FIGURES 10–15. Characters and states. Adult males. 10–12 Luciola indica Motschulsky male. 13–15 undescribed species 7 in Emeia gen. nov., a new genus of Luciolinae fireflies from China (Coleoptera: Lampyridae) with an unusual trilobite-like larva, and a redescription of the genus Curtos Motschulsky
FIGURES 10–15. Characters and states. Adult males. 10–12 Luciola indica Motschulsky male. 13–15 undescribed species 7 (Figure 7 number 4) male. 10, 11 whole body, (character 119); 12 aedeagus (character 271); 13, 14 terminal abdomen; 15 T8 (10, 13, 15 ventral, 11, 12, 14 dorsal (characters 121–123).
FIGURE 3 in Anopheles (Kerteszia) lepidotus (Diptera: Culicidae), not the malaria vector we thought it was: Revised male and female morphology; larva, pupa, and male genitalia characters; and molecular verification
FIGURE 3. Anopheles (Kerteszia) lepidotus Zavortink, female habitus: A, wing; B, thorax, dorsal view; C, head, lateral view; D, thorax, lateral view; E, abdomen, dorsal and ventral views; F, (left to right) foreleg, anterior view; midleg, anterior view; hindleg, anterior view; hindleg, dorsal view.
FIGURE 1. The ITS2 in Anopheles (Kerteszia) lepidotus (Diptera: Culicidae), not the malaria vector we thought it was: Revised male and female morphology; larva, pupa, and male genitalia characters; and molecular verification
FIGURE 1. The ITS2 (rDNA) sequence alignments of Anopheles (Kerteszia) pholidotus (n = 3, Venezuela) and An. lepidotus (n = 5, Ecuador), using MAFFT (Katoh et al., 2002). A total of 343 nucleotides were identical; 45 transversions, 39 transitions, and 89 gaps were observed. Underlined bases show the ITS2 primers.
FIGURE 2 in Anopheles (Kerteszia) lepidotus (Diptera: Culicidae), not the malaria vector we thought it was: Revised male and female morphology; larva, pupa, and male genitalia characters; and molecular verification
FIGURE 2. Bootstrap NJ-K2P tree of COI sequences belonging to Anopheles (Kerteszia) lepidotus and An. pholidotus from Ecuador (EC) and Venezuela (VZ). Bootstrap values below 70 % are not shown. Outgroup: An. (Ker.) homunculus Komp.
FIGURE 4 in Anopheles (Kerteszia) lepidotus (Diptera: Culicidae), not the malaria vector we thought it was: Revised male and female morphology; larva, pupa, and male genitalia characters; and molecular verification
FIGURE 4. Anopheles (Kerteszia) lepidotus. A, male genitalia (from Zavortink, 1973); B, An. lepidotus pupal trumpet, pinna (Pi) long, about 0.5 trumpet length; C, pupal paddle showing lateral margin exceptionally thick, lateral margin without long filamentous spicules and relatively straight apical margin at 1-Pa; D, seta 3-C very thick and short; E, seta 6-VI stout, long, with median length aciculae on basal 0.33 and shorter aciculae more distal, without strong basal branches.
FIGURE 1. Dorsal habitus photos Spanagonicus Berg species. A. male S in A review of the genus Spanagonicus Berg (Hemiptera: Miridae: Phylinae: Nasocorini) with the description of novel antennal characters, the description of a new species from Central America, and a key to currently known taxa
FIGURE 1. Dorsal habitus photos Spanagonicus Berg species. A. male S. albofasciatus (Reuter) B. female S. albofasciatus, macropterous C. female S. albofasciatus, brachypterous D. male S. argentinus E. female S. argentinus F. male S. aricanus G. female S. aricanus H. male S. schusterus I. female S. schusterus. J. female S. tiquensis (Image from the Museo de La Plata online holotype database). Images not to scale; see Table 2 for measurements.
FIGURE 9 in Male secondary sexual characters resolve taxonomic uncertainty: five new species and a review of the formerly monotypic rove beetle genus Mimosticus Sharp (Coleoptera: Staphylinidae: Staphylininae)
FIGURE 9. Abparameral view of median lobe of the aedeagus, showing internal sac in situ: Mimosticus viridipennis, Sharp (A), M. tenuiformis Brunke and Solodovnikov (B), M. aeneipennis Brunke and Solodovnikov (C), M. sharpi Brunke and Solodovnikov (D). Copulatory sclerite of internal sac of M. sharpi (E), M. pseudosharpi Brunke and Solodovnikov (F) and M. latens Brunke and Solodovnikov (G). Scale bars = 0.2 mm. a—ventral apex of paramere showing peg setae-like structures, b—copulatory sclerite, arrow—apical margin of copulatory sclerite.
FIGURE 5 in Male secondary sexual characters resolve taxonomic uncertainty: five new species and a review of the formerly monotypic rove beetle genus Mimosticus Sharp (Coleoptera: Staphylinidae: Staphylininae)
FIGURE 5. Male tergite VIII of M. latens Brunke and Solodovnikov (A). Female tergite X of M. sharpi Brunke and Solodovnikov (B). Scale bars = 1 mm.
FIGURE 6. Male sternite IX in Male secondary sexual characters resolve taxonomic uncertainty: five new species and a review of the formerly monotypic rove beetle genus Mimosticus Sharp (Coleoptera: Staphylinidae: Staphylininae)
FIGURE 6. Male sternite IX of Mimosticus viridipennis, Sharp (A), M. tenuiformis Brunke and Solodovnikov (B), M. aeneipennis Brunke and Solodovnikov (C), M. sharpi Brunke and Solodovnikov (D), M. pseudosharpi Brunke and Solodovnikov (E) and M. latens Brunke and Solodovnikov (F). Scale bars = 0.2 mm.
FIGURE 2. Antennomeres 4–11 in Male secondary sexual characters resolve taxonomic uncertainty: five new species and a review of the formerly monotypic rove beetle genus Mimosticus Sharp (Coleoptera: Staphylinidae: Staphylininae)
FIGURE 2. Antennomeres 4–11: Mimosticus viridipennis, Sharp (A), M. tenuiformis Brunke and Solodovnikov (B), M. aeneipennis Brunke and Solodovnikov (C) and M. sharpi Brunke and Solodovnikov (D). Ventral forebody of M. tenuiformis (E). Mesotrochanter and mesofemur of M. tenuiformis (F). Hindwing of M. aeneipennis, vein MP4 fused to CuA (G). Scale bars = 1 mm.
FIGURE 10 in Male secondary sexual characters resolve taxonomic uncertainty: five new species and a review of the formerly monotypic rove beetle genus Mimosticus Sharp (Coleoptera: Staphylinidae: Staphylininae)
FIGURE 10. Distribution of Mimosticus aeneipennis Brunke and Solodovnikov, M. latens Brunke and Solodovnikov, M pseudosharpi Brunke and Solodovnikov, and M. viridipennis Sharp (A); and M. tenuiformis Brunke and Solodovnikov, and M. sharpi (B).
FIGURE 1 in Male secondary sexual characters resolve taxonomic uncertainty: five new species and a review of the formerly monotypic rove beetle genus Mimosticus Sharp (Coleoptera: Staphylinidae: Staphylininae)
FIGURE 1. Dorsal habitus of Mimosticus viridipennis, Sharp (A), M. tenuiformis Brunke and Solodovnikov (B), M. aeneipennis Brunke and Solodovnikov (C) and M. sharpi Brunke and Solodovnikov (D). Scale bars = 2 mm.
FIGURE 8 in Male secondary sexual characters resolve taxonomic uncertainty: five new species and a review of the formerly monotypic rove beetle genus Mimosticus Sharp (Coleoptera: Staphylinidae: Staphylininae)
FIGURE 8. Aedeagus of Mimosticus viridipennis Sharp (A–D), M. tenuiformis Brunke and Solodovnikov (E) and M. sharpi Brunke and Solodovnikov (F). Parameral view (A–B, E–F), lateral view (C–D). Internal sac not everted (A, C, E, F), internal sac everted (B, D). Scale bars = 0.5 mm.
FIGURE 4 in Male secondary sexual characters resolve taxonomic uncertainty: five new species and a review of the formerly monotypic rove beetle genus Mimosticus Sharp (Coleoptera: Staphylinidae: Staphylininae)
FIGURE 4. Male sternite VIII of Mimosticus viridipennis, Sharp (A), M. tenuiformis Brunke and Solodovnikov (B), M. aeneipennis Brunke and Solodovnikov (C), M. sharpi Brunke and Solodovnikov (D), M. pseudosharpi Brunke and Solodovnikov (E) and M. latens Brunke and Solodovnikov (F). Scale bars = 0.5 mm.
FIGURE 3 in Male secondary sexual characters resolve taxonomic uncertainty: five new species and a review of the formerly monotypic rove beetle genus Mimosticus Sharp (Coleoptera: Staphylinidae: Staphylininae)
FIGURE 3. Forebody of Mimosticus viridipennis, Sharp (A), M. tenuiformis Brunke and Solodovnikov (B), M. aeneipennis Brunke and Solodovnikov (C) and M. sharpi Brunke and Solodovnikov (D). Scale bars = 1 mm. a—anterior frontal puncture, b—oculomarginal puncture, c—posterior frontal puncture, d—vertical puncture.
FIGURE 7. Male tergite X in Male secondary sexual characters resolve taxonomic uncertainty: five new species and a review of the formerly monotypic rove beetle genus Mimosticus Sharp (Coleoptera: Staphylinidae: Staphylininae)
FIGURE 7. Male tergite X of Mimosticus viridipennis, Sharp (A), M. tenuiformis Brunke and Solodovnikov (B), M. aeneipennis Brunke and Solodovnikov (C), M. sharpi Brunke and Solodovnikov (D), M. pseudosharpi Brunke and Solodovnikov (E) and M. latens Brunke and Solodovnikov (F). Scale bars = 0.5 mm.
FIGURES 1–24. Lanta borgesae. 1. Head, ventral view. 2. Pronotum, dorsal view. 3. Tegmen. 4. Wing. 5. Subgenital plate, ventral view. 6 in Contribution to the knowledge of Lanta Hebard, 1921, with remarks on some male genital characters (Blattaria, Ectobiidae)
FIGURES 1–24. Lanta borgesae. 1. Head, ventral view. 2. Pronotum, dorsal view. 3. Tegmen. 4. Wing. 5. Subgenital plate, ventral view. 6. Supra-anal plate, dorsal view. 7. Paraprocts and supra-anal plate, ventral view. 8. Diagram of the genital sclerite disposition, dorsal view. 9. Fore leg femur spines, anterior view. 10–11. Supra-anal plate, dorsal view. 12–13. Sclerite R6 of right phallomere. 14. Subgenital plate, dorsal view. 15. Styli, dorsal view. 16–17. L3, sclerite of left complex, ventral view. 18. L2+via, sclerites of the left complex, ventral view. 19–20. Apex of L2+via, ventral view. 21–23. Right phallomere, ventral view. 24. R4, scheme. Abbreviations A= anal veins; cwe= R1S with R2 is joined in a bulge-like cuticle; Cu a= cubital anterior vein; dp= dorsal process; L2+via and L3= sclerite of the left complex; M= medial veins; P= paraprocts; R= radial veins; Rs= radial sector; R1P, R1S, R2, R3, R4, R6= right phallomere sclerites; S IX= sternite IX; Sc= subcostal vein; st= styli; T X= tergite X; vp= ventral process. Scales. Figs 1–9: 1 mm and Figs 10–24: 0.1 mm.
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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)
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DANDI Archive for NWB datasets
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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.