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Fig. 5 in Identification guide to Nordic aphids associated with mosses, horsetails and ferns (Bryophyta, Equisetophyta, Polypodiophyta) (Insecta, Hemiptera, Aphidoidea)
Fig. 5. Dioecious two-year holocycle in Adelgidae, e.g., Adelges laricis (shoot galls on spruce, Picea; needles of larch, Larix). All females oviparous. The fundatrix (hatched from a fertilized egg) overwinters as a larva, and induces the formation of a pineapple-like gall on the primary host. All her offspring are alate (gallicolae) and migrate to the secondary host, where they lay eggs on the needles. The aphids hatching move to the twigs where they hibernate as young larvae (the 'neosistens' stage). In spring they move back to the needles and become adults (sistentes). Their offspring are either alate sexuparae and migrate to spruce, or apterous 'progredientes'. In autumn the sexuparae fly to spruce and lay eggs which become sexual females and males, which mate. The females then lay eggs out of which new fundatrices hatch.
Fig. 3 in Identification guide to Nordic aphids associated with mosses, horsetails and ferns (Bryophyta, Equisetophyta, Polypodiophyta) (Insecta, Hemiptera, Aphidoidea)
Fig. 3. Dioecious one-year holocycle (Rhopalosiphum padi). The inner zone represents the primary host (bird cherry, Prunus padus and allies), the outer zone the secondary (usually graminoids). The fundatrix gives birth to apterae, which in turn give birth to alatae, most of which migrate to the secondary hosts. In autumn males and gynoparae (viviparae giving birth to oviparae) migrate to the primary host, where mating and egg-laying take place. A small fraction of the viviparae may remain on the primary host
Fig. 2 in Identification guide to Nordic aphids associated with mosses, horsetails and ferns (Bryophyta, Equisetophyta, Polypodiophyta) (Insecta, Hemiptera, Aphidoidea)
Fig. 2. Monoecious one-year life cycles. In the outer zone an ordinary monoecious holocycle in Aphididae. The fertilized egg overwinters and in spring the first viviparous parhenogenetic generation, the fundatrix (stem-mother) hatches. Upon the fundatrix follows a variable number of viviparous females (viviparae), apterous and/or alate. In autumn (sometimes earlier) sexuparae are born and in turn give birth to oviparous (sexual) females (ovipara) and males, which mate, and the oviparae lay eggs. The inner zone shows an anholocycle, with only parthenogenetic females (viviparous in Aphididae, oviparous in Adelgidae).
Fig. 4 in Two new species of the bamboo-feeding planthopper genus Neobelocera Ding & Yang, 1986 from China (Hemiptera, Fulgoroidea, Delphacidae)
Fig. 4. Neobelocera russa sp. nov., holotype (GUGC-FS-TN-20100801). A. Head and thorax, dorsal view. B. Face. C. Forewing. D. Male genitalia, posterior view. E. Same, lateral view. F. Aedeagus, posterior view. G. Same, lateral view. H. Genital style, posterior view. I. Same, lateral view. Scale bars: A–B, D–I = 0.2 mm; C = 0.5 mm.
Fig. 3 in Two new species of the bamboo-feeding planthopper genus Neobelocera Ding & Yang, 1986 from China (Hemiptera, Fulgoroidea, Delphacidae)
Fig. 3. Neobelocera russa sp. nov., holotype (GUGC-FS-TN-20100801). A. Male habitus, dorsal view. B. Same, lateral view. C. Head and thorax, dorsal view. D. Same, lateral view. E. Face. F. Forewing.
Fig. 2 in Two new species of the bamboo-feeding planthopper genus Neobelocera Ding & Yang, 1986 from China (Hemiptera, Fulgoroidea, Delphacidae)
Fig. 2. Neobelocera biprocessa sp. nov., holotype (GUGC-FS-TN-20090401). A. Head and thorax, dorsal view. B. Face. C. Forewing. D. Male genitalia, posterior view. E. Same, lateral view. F. Pygofer, posterior view. G. Anal segment and aedeagus, lateral view. H. Genital style, posterior view. I. Same, lateral view. Scale bars: A–B, D–I = 0.2 mm; C = 0.5 mm.
Fig. 1 in Two new species of the bamboo-feeding planthopper genus Neobelocera Ding & Yang, 1986 from China (Hemiptera, Fulgoroidea, Delphacidae)
Fig. 1. Neobelocera biprocessa sp. nov., holotype (GUGC-FS-TN-20090401) A. Male habitus, dorsal view. B. Same, lateral view. C. Head and thorax, dorsal view. D. Same, lateral view. E. Face. F. Forewing.
Figs. 1–11. Banasa chaca Thomas, 1–9 male, 10–11 female. 1 in Contributions to the knowledge of Banasa Stål (Hemiptera, Heteroptera, Pentatomidae): Banasa chaca Thomas
Figs. 1–11. Banasa chaca Thomas, 1–9 male, 10–11 female. 1, dorsal view; 2–4, pygophore, respectively dorsal, ventral, and posterior; 5–6, left paramere, lateral and mesial; 7–9, phallus, respectively dorsal, ventral, and lateral; 10, receptaculum seminis and ausenwand, ventral; 11, capsula seminalis and ductus receptaculis. aaf: anterior annular flange; ch: chitinellipsen; cj: conjunctiva; cs: capsula seminalis; di: diverticula; dr: dorsal rim; dre: ductus receptaculi; dsd: ductus seminis distalis; g9: gonapophyses 9; gc9: gonocoxites 9; la9: laterotergites 9; p: proctiger; paf: posterior annular flange; par: paramere; pi: pars intermedialis; tg9: thickening of gonapophyses 9; tvi: thickening of vaginal intima; v: vesica; vr: ventral rim; X: tenth segment. Scales: 1 = 1 mm; 2–9 = 0.5 mm; figures 5, 6 and 11 in the same scale.
Fig. 56. Vartini. A–C. Vartalapa robusta Viraktamath, 2004. D–K. Varta rubrofasciata Distant, 1908. A–I in A review of the tribes of Deltocephalinae (Hemiptera: Auchenorrhyncha: Cicadellidae)
Fig. 56. Vartini. A–C. Vartalapa robusta Viraktamath, 2004. D–K. Varta rubrofasciata Distant, 1908. A–I. Standard views (see Material & Methods). J. Ventral view of base of ♂ abdomen showing long apodemes of sternite II (sternite I obscure). K. Ventral view of ♂ pygofer.
Fig. 54. Stenometopiini. A–B, D–J in A review of the tribes of Deltocephalinae (Hemiptera: Auchenorrhyncha: Cicadellidae)
Fig. 54. Stenometopiini. A–B, D–J. Doratulina dmitrievi sp. nov. C. Stirellus bicolor (Van Duzee, 1892), A1 ♂, A2 ♀. A–I. Standard views (see Material & Methods). J. ♀ sternite VII.
Fig. 55. Tetartostylini. A–B, D–J in A review of the tribes of Deltocephalinae (Hemiptera: Auchenorrhyncha: Cicadellidae)
Fig. 55. Tetartostylini. A–B, D–J. Tetartostylus acutus Heller & Linnavuori, 1968. C. Tetartostylus sp. A–I. Standard views (see Material & Methods). G. Connective and style shown with processes of connective or "pseudostyles". J. ♀ sternite VII.
Fig. 52 in A review of the tribes of Deltocephalinae (Hemiptera: Auchenorrhyncha: Cicadellidae)
Fig. 52. Selenocephalini (Selenocephalina). A–B, D–K. Gannia viraktamathi sp. nov. C. Selenocephalus planus (Turton, 1802). A–I. Standard views (see Material & Methods). G. Connective and style shown with aedeagus and processes of aedeagus. H–I. Aedeagus shown with processes of aedeagus. J. Broad view of style. K. ♀ sternite VII.
Fig. 53 in A review of the tribes of Deltocephalinae (Hemiptera: Auchenorrhyncha: Cicadellidae)
Fig. 53. Stegelytrini. Stegelytra putoni Mulsant & Rey, 1875. A–I. Standard views (see Material & Methods).
Fig. 51 in A review of the tribes of Deltocephalinae (Hemiptera: Auchenorrhyncha: Cicadellidae)
Fig. 51. Selenocephalini (Ianeirina). Abimwa knighti sp. nov. A–D, F, H–I. Standard views (see Material & Methods). D. Pygofer shown with subgenital plates and valve. J. Ventral view of style. K. Ventral view of connective and aedeagus fused to connective. L. Dorsal view of ♂ segments X, XI, and anus. M. ♀ sternite VII.
Fig. 50 in A review of the tribes of Deltocephalinae (Hemiptera: Auchenorrhyncha: Cicadellidae)
Fig. 50. Selenocephalini (Dwightlina). A–B, D–F, H–K. Dwightla delongi sp.nov. C. D. acutipennis Linnavuori & Al-Ne'amy, 1983. A–F, H–I. Standard views (see Material & Methods). J. Ventral view of connective. K. Ventral view of style.
Fig. 49 in A review of the tribes of Deltocephalinae (Hemiptera: Auchenorrhyncha: Cicadellidae)
Fig. 49. Selenocephalini (Adamina). A–B, D–H. Adama (Paracostemma) amalthusia Linnavuori & Al-Ne'amy, 1983. C. A. (Paracostemma) sp. A–H. Standard views (see Material & Methods). G. Connective and style shown with connective processes or "pseudostyles".
Fig. 47 in A review of the tribes of Deltocephalinae (Hemiptera: Auchenorrhyncha: Cicadellidae)
Fig. 47. Scaphoideini. Scaphoideus omani sp. nov. A–F, H–I. Standard views (see Material & Methods). J. Lateral view of connective and connective processes. K. ♀ sternite VII. L. Style, ventrally. M. Ventral view of connective and connective processes.
Fig. 48 in A review of the tribes of Deltocephalinae (Hemiptera: Auchenorrhyncha: Cicadellidae)
Fig. 48. Scaphytopiini. Scaphytopius acutus (Say, 1830). A–I. Standard views (see Material & Methods). G. Connective and style shown with connective processes. J. Lateral view of connective, style and connective processes.
Fig. 46 in A review of the tribes of Deltocephalinae (Hemiptera: Auchenorrhyncha: Cicadellidae)
Fig. 46. Phlepsiini. Phlepsius intricatus (Herrich-Schäffer, 1838). A–F, H–I. Standard views (see Material & Methods). J. Connective, ventral view. K. Style, ventral view.
Fig. 44 in A review of the tribes of Deltocephalinae (Hemiptera: Auchenorrhyncha: Cicadellidae)
Fig. 44. Pendarini. Pendarus magnus (Osborn & Ball, 1897). A–I. Standard views (see Material & Methods).
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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
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.