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276 results for “Scutelleridae”
Figure 9 in Revision of the genus Chrysocoris Hahn (Hemiptera: Scutelleridae) from India
Figure 9: Spermatheca of Chrysocoris species; (9a) C. andamanensis (9b) C. fascialis (9c) C. marginellus (9d) C. patricius (9e) C. pulchellus (9f) C. purpureus (9g) C. stockerus and (9h) C. stollii
Figure 6 in Revision of the genus Chrysocoris Hahn (Hemiptera: Scutelleridae) from India
Figure 6: External male genital capsule of Chrysocoris species; (6a) C. andamanensis (6b) C. dilaticollis (6c) C. marginellus (6d) C. patricius (6e) C. pulchellus (6f) C. purpureus (6g) C. stockerus and (6h) C. stollii
Figure 5 in Revision of the genus Chrysocoris Hahn (Hemiptera: Scutelleridae) from India
Figure 5: External efferent system of metathoracic scent glands of Chrysocoris species; (5a) C. andamanensis (5b) C. dilaticollis; (5c) C. fascialis (5d) C. marginellus (5e) C. patricius (5f) C. pulchellus (5g) C. purpureus (5h) C. stockerus and (5i) C. stollii
FIGURES 1–6 in Description of immatures of Galeacius martini Schouteden (Hemiptera: Heteroptera: Scutelleridae)
FIGURES 1–6. Egg and first instar of Galeacius martini, in scanning electron microscopy: 1—lateral wall of chorion, 2— superior pole bearing aero-micropylar process (arrows), 3—lateral margin of abdominal segments III to X, 4—stridulitrum and rows of spinose projections on middle of urosternites, 5—urosternite V, 6—lateral margin of abdominal segments VII to X. Abbreviations: III–X–abdominal segments, sp—spiracle, st—stridulitrum, tr—trichobothrium.
FIGURES 20–24. Galeacius martini Schouteden, nymphs respectively 1 in Description of immatures of Galeacius martini Schouteden (Hemiptera: Heteroptera: Scutelleridae)
FIGURES 20–24. Galeacius martini Schouteden, nymphs respectively 1st to 5th instars, lateral, legs and antennae not shown. Scale bars = 1mm.
FIGURES 13–14 in Description of immatures of Galeacius martini Schouteden (Hemiptera: Heteroptera: Scutelleridae)
FIGURES 13–14. Fifth instar of Galeacius martini, in scanning electron microscopy: 13—abdomen bearing stridulitrum, 14— microsculpture of stridulitrum.
FIGURES 15–19. Galeacius martini Schouteden, nymphs respectively 1 in Description of immatures of Galeacius martini Schouteden (Hemiptera: Heteroptera: Scutelleridae)
FIGURES 15–19. Galeacius martini Schouteden, nymphs respectively 1st to 5th instars, dorsal. Scale bars = 1mm.
FIGURES 7–12 in Description of immatures of Galeacius martini Schouteden (Hemiptera: Heteroptera: Scutelleridae)
FIGURES 7–12. Fifth instar of Galeacius martini, in scanning electron microscopy: 7—tibiae bearing plectrum, 8—magnification of plectrum, 9—second median plate bearing ostiole, evaporatorium, auricular peritreme, and periostiolar depression, 10—third median plate bearing ostiole, evaporatorium, discal peritreme, and periostiolar depression, 11—mycoid surface of mesial portion of evaporatorium, bearing alveole, bridges interconnecting mushroom bodies and trabeculae on bottom of alveole, 12—mycoid surface of lateral portion of evaporatorium, bearing bridges interconnecting mushroom bodies and trabeculae on bottom of alveole. Abbreviations: al—alveole, ap—auricular peritreme, b—bridges interconnecting mushroom bodies,dp— discal peritreme, ev—evaporatorium, osII, osIII—respectively, 2nd and 3rd paired ostioles, pd—periostiolar depression, t— trabeculae on bottom of alveole.
FIGURES 6–10 in The wing-to-wing coupling mechanism of Scutelleridae (Hemiptera: Heteroptera)
FIGURES 6–10. Wing-to-wing coupling mechanism: 6—Irochrotus montandoni Schouteden; 7—Odontoscelis dorsalis (Fabricius); 8—Rhinolaetia overlaeti Schouteden; 9—Alphocoris larinoides Germar; 10—Urothyreus horvathianus Horváth.
FIGURES 16–19 in The wing-to-wing coupling mechanism of Scutelleridae (Hemiptera: Heteroptera)
FIGURES 16–19. Wing-to-wing coupling mechanism: 16—Procilia morgani (White); 17—Chiastosternum unicolor (Dallas); 18—Sphaerocoris annulus annulus (Fabricius); 19—Steganocerus multipunctatus (Thunberg).
FIGURES 1–5 in The wing-to-wing coupling mechanism of Scutelleridae (Hemiptera: Heteroptera)
FIGURES 1–5. Wing-to-wing coupling mechanism: 1—Elvisura irrorata Spinola; 2—Solenosthedium liligerum (Thunberg); 3—Xerobia sculpturata (Stål); 4—Deroplax nigropunctata (Stål); 5—Hotea acuta Stål.
FIGURES 11–15 in The wing-to-wing coupling mechanism of Scutelleridae (Hemiptera: Heteroptera)
FIGURES 11–15. Wing-to-wing coupling mechanism: 11—Anoplogonius nigricollis (Signoret); 12—Calidea dregii Germar; 13—Cryptacrus comes (Fabricius); 14—Gonaulax grandis (Distant); 15—Graptocoris aulicus (Germar).
Figure 9 from: Syromyatnikov MY, Golub VB, Kokina AV, Soboleva VA, Popov VN (2017) DNA barcoding and morphological analysis for rapid identification of most economically important crop-infesting Sunn pests belonging to Eurygaster Laporte, 1833 (Hemiptera, Scutelleridae). ZooKeys 706: 51-71. https://doi.org/10.3897/zookeys.706.13888
Figure 9 - Restriction fragments of COI PCR products (restriction enzyme, species): 1 AhlI, E. maura or E. testudinaria 2 AhlI, E. integriceps 3 PsiI, E. maura or E. testudinaria 4 PsiI, E. integriceps 5 Bst2UI, E. maura or E. testudinaria 6 Bst2UI, E. integriceps; M, 100 bp DNA ladder.
Figure 8 from: Syromyatnikov MY, Golub VB, Kokina AV, Soboleva VA, Popov VN (2017) DNA barcoding and morphological analysis for rapid identification of most economically important crop-infesting Sunn pests belonging to Eurygaster Laporte, 1833 (Hemiptera, Scutelleridae). ZooKeys 706: 51-71. https://doi.org/10.3897/zookeys.706.13888
Figure 8 - Neighbor joining analysis of COI gene sequences from Eurygaster species. * - sequences obtained in this work.
Figure 5 from: Syromyatnikov MY, Golub VB, Kokina AV, Soboleva VA, Popov VN (2017) DNA barcoding and morphological analysis for rapid identification of most economically important crop-infesting Sunn pests belonging to Eurygaster Laporte, 1833 (Hemiptera, Scutelleridae). ZooKeys 706: 51-71. https://doi.org/10.3897/zookeys.706.13888
Figure 5 - Species of the genus Eurygaster Laporte, general view: A E. integriceps (Puton) B E. maura L. C E. testudinaria (Geoffroy) D E. dilaticollis Dohrn. Specimens A–C were collected in the Voronezh Region; specimen D was from the Teberda Nature Reserve, Caucasus.
Figure 2 from: Syromyatnikov MY, Golub VB, Kokina AV, Soboleva VA, Popov VN (2017) DNA barcoding and morphological analysis for rapid identification of most economically important crop-infesting Sunn pests belonging to Eurygaster Laporte, 1833 (Hemiptera, Scutelleridae). ZooKeys 706: 51-71. https://doi.org/10.3897/zookeys.706.13888
Figure 2 - Range of Eurygaster maura (Linnaeus, 1758) (after Göllner-Scheiding 2006 and Vinokurov et al. 2010).
Figure 7 from: Syromyatnikov MY, Golub VB, Kokina AV, Soboleva VA, Popov VN (2017) DNA barcoding and morphological analysis for rapid identification of most economically important crop-infesting Sunn pests belonging to Eurygaster Laporte, 1833 (Hemiptera, Scutelleridae). ZooKeys 706: 51-71. https://doi.org/10.3897/zookeys.706.13888
Figure 7 - Structural details of Eurygaster Laporte species (a, clypeus; b, jugal plate): A E. austriaca (Schrank), head, dorsal view B E. integriceps (Puton), dorsal view C E. integriceps, aedeagus D E. maura L., aedeagus E E. testudinaria (Geoffroy), aedeagus (after Golub, 1980, with changes).
Figure 6 from: Syromyatnikov MY, Golub VB, Kokina AV, Soboleva VA, Popov VN (2017) DNA barcoding and morphological analysis for rapid identification of most economically important crop-infesting Sunn pests belonging to Eurygaster Laporte, 1833 (Hemiptera, Scutelleridae). ZooKeys 706: 51-71. https://doi.org/10.3897/zookeys.706.13888
Figure 6 - Head, anterior view (A, B) and female median genital plates (C, D) of E. maura L. (A, C) and E. testudinaria (Geoffroy) (B, D).
Figure 3 from: Syromyatnikov MY, Golub VB, Kokina AV, Soboleva VA, Popov VN (2017) DNA barcoding and morphological analysis for rapid identification of most economically important crop-infesting Sunn pests belonging to Eurygaster Laporte, 1833 (Hemiptera, Scutelleridae). ZooKeys 706: 51-71. https://doi.org/10.3897/zookeys.706.13888
Figure 3 - Range of Eurygaster testudinaria (Geoffray, 1758) (after Göllner-Scheiding 2006 and Vinokurov et al. 2010).
Figure 4 from: Syromyatnikov MY, Golub VB, Kokina AV, Soboleva VA, Popov VN (2017) DNA barcoding and morphological analysis for rapid identification of most economically important crop-infesting Sunn pests belonging to Eurygaster Laporte, 1833 (Hemiptera, Scutelleridae). ZooKeys 706: 51-71. https://doi.org/10.3897/zookeys.706.13888
Figure 4 - Range of Eurygaster dilaticollis Dohrn, 1860 (after Göllner-Scheiding 2006 and Vinokurov et al. 2010).
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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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.