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Fig. 6 in Illustrated identification guide to the Nordic aphids feeding on Conifers (Pinophyta) (Insecta, Hemiptera, Sternorhyncha, Aphidomorpha)
Fig. 6. Adelges (Dreyfusia) nordmannianae (Eckstein, 1890). A. Gall on Picea orientalis (orig.). B. First instar hibernating fundatrix, spinal plates on meso- and metathorax (left side), showing arangement of wax gland pits (after Eichhorn 1956). C. Gallicola (after Carter 1971, redrawn and slightly modified from Heie 2004).
Fig. 10 in Illustrated identification guide to the Nordic aphids feeding on Conifers (Pinophyta) (Insecta, Hemiptera, Sternorhyncha, Aphidomorpha)
Fig. 10. Adelges (Adelges) tardus (Dreyfus, 1888). Galls on Picea abies. A–B. Almost full-grown. C. Almost mature. D–E. Mature, first gallicolae have emerged. F–G. Fully opened galls. Scale bars: 10 mm.
Fig. 11 in Illustrated identification guide to the Nordic aphids feeding on Conifers (Pinophyta) (Insecta, Hemiptera, Sternorhyncha, Aphidomorpha)
Fig. 11. Adelges (Adelges) tardus (Dreyfus, 1888) on Picea abies. A. Mature, opened gall with alate gallicolae on surface. B–I. Gallicolae laying eggs on needles in vicinity of their mother gall. J–K. Gallicolae in vitro. Scale bars for E–K: 1 mm.
Fig. 2 in Illustrated identification guide to the Nordic aphids feeding on Conifers (Pinophyta) (Insecta, Hemiptera, Sternorhyncha, Aphidomorpha)
Fig. 2. Pineus (Pineus) cembrae (Cholodkovsky, 1888). A–B. Galls on Picea abies (A after Francke-Grosmann 1938, redrawn; B after Shaposnikov, modified from Heie 2004). C–D. Gallicola (C) and sexupara (D), abdomen showing wax gland plates (after Börner 1908, modified from Heie 2004).
Fig. 13. A–C in Illustrated identification guide to the Nordic aphids feeding on Conifers (Pinophyta) (Insecta, Hemiptera, Sternorhyncha, Aphidomorpha)
Fig. 13. A–C. Adelges (Adelges) tardus (Dreyfus, 1888). Wax-covered pseudofundatrices at bases of developing galls on Picea abies. D. As A–C, but with the wax wool brushed off to expose the pseudofundatrix and her eggs.
Fig. 9 in Illustrated identification guide to the Nordic aphids feeding on Conifers (Pinophyta) (Insecta, Hemiptera, Sternorhyncha, Aphidomorpha)
Fig. 9. Adelges (Adelges) laricis Vallot, 1836. A. Sexupara (after Carter 1971, modified and redrawn from Heie 2004). B. Antenna of gallicola (after Annand 1928, modified).
Fig. 1 in Illustrated identification guide to the Nordic aphids feeding on Conifers (Pinophyta) (Insecta, Hemiptera, Sternorhyncha, Aphidomorpha)
Fig. 1. Pineus (Pineus) pineoides (Cholodkovsky, 1907). Adult aptera (after Schneider-Orelli 1940, modified).
Fig. 8 in Illustrated identification guide to the Nordic aphids feeding on Conifers (Pinophyta) (Insecta, Hemiptera, Sternorhyncha, Aphidomorpha)
Fig. 8. Adelges (Adelges) laricis Vallot, 1836. Galls on Picea abies. A, D. Almost mature. B. Young. C. Half-grown. E. Abandoned gall (in winter).
Fig. 7 in Illustrated identification guide to the Nordic aphids feeding on Conifers (Pinophyta) (Insecta, Hemiptera, Sternorhyncha, Aphidomorpha)
Fig. 7. Adelges (Dreyfusia) merkeri (Eichhorn, 1957). First instar hibernating fundatrix, spinal plates on meso- and metathorax (left side), showing arangement of wax gland pits (after Eichhorn 1956, modified).
Fig. 4 in Illustrated identification guide to the Nordic aphids feeding on Conifers (Pinophyta) (Insecta, Hemiptera, Sternorhyncha, Aphidomorpha)
Fig. 4. Pineus (Pineus) orientalis (Dreyfus, 1889). A. Gall on Picea orientalis (after Carter 1976, redrawn). B. Antenna of gallicola (after Annand 1928, modified).
Fig. 5 in Illustrated identification guide to the Nordic aphids feeding on Conifers (Pinophyta) (Insecta, Hemiptera, Sternorhyncha, Aphidomorpha)
Fig. 5. Adelges (Aphrastasia) pectinatae (Cholodkovsky, 1888). Gall on Picea abies (after Cholodkovsky, redrawn and modified from Shaposhnikov 1964).
Fig. 12 in Illustrated identification guide to the Nordic aphids feeding on Conifers (Pinophyta) (Insecta, Hemiptera, Sternorhyncha, Aphidomorpha)
Fig. 12. Adelges (Adelges) tardus (Dreyfus, 1888). A–F. Hibernating pseudofundatrix nymphs on buds of Picea abies. Note the sparse, long, more or less straight wax filaments (most of them worn off, except in D–E). Often together with nymphs of A. (Sacciphantes) abietis (Linnaeus, 1758), whose wax filaments are dense, flattened and strongly curled (the specimen to the right in B). The nymphs usually hibernate on the surface of the bud, whereas those of A. abietis prefer bud bases and axils. G. Hibernating nymphs, which are easiest to find in the vicinity of the previous summer's galls.
Fig. 10 in A revision of the genus Rhinotorus Förster, 1869 (Hymenoptera, Ichneumonidae, Ctenopelmatinae), with descriptions of three new species and an illustrated identification key
Fig. 10. Rhinotorus nasutus (Gravenhorst, 1829). A. Face. B. Head dorsally. C. Propodeum. D. First metasomal tergite dorsally. E. Habitus.
Fig. 13 in A revision of the genus Rhinotorus Förster, 1869 (Hymenoptera, Ichneumonidae, Ctenopelmatinae), with descriptions of three new species and an illustrated identification key
Fig. 13. Rhinotorus tarsilatus sp. nov., holotype, ♀. A. Face. B. Head dorsally. C. Metasoma. D. Habitus.
Fig. 8 in A revision of the genus Rhinotorus Förster, 1869 (Hymenoptera, Ichneumonidae, Ctenopelmatinae), with descriptions of three new species and an illustrated identification key
Fig. 8. Rhinotorus longicornis (Schmiedeknecht, 1914). A. Mesoscutellum. B. Metasoma dorsally. C. Face. D. Head dorsally. E. Habitus.
Fig. 7 in A revision of the genus Rhinotorus Förster, 1869 (Hymenoptera, Ichneumonidae, Ctenopelmatinae), with descriptions of three new species and an illustrated identification key
Fig. 7. Rhinotorus leucostomus (Gravenhorst, 1829). A. First metasomal tergite dorsally with projections at spiracles (arrows). B. Mesoscutellum. C. Propodeum. D. Face. E. Habitus.
Fig. 2. Mesoleius roepkei Teunissen, 1945 in A revision of the genus Rhinotorus Förster, 1869 (Hymenoptera, Ichneumonidae, Ctenopelmatinae), with descriptions of three new species and an illustrated identification key
Fig. 2. Mesoleius roepkei Teunissen, 1945, holotype, ♀. A. Face. B. First metasomal tergite with shallow subapical transverse impressions (arrow). C. Habitus.
Fig. 3 in A revision of the genus Rhinotorus Förster, 1869 (Hymenoptera, Ichneumonidae, Ctenopelmatinae), with descriptions of three new species and an illustrated identification key
Fig. 3. Rhinotorus alpinus (Roman, 1909), lectotype, ♀. A. Face. B. Mesopleuron. C. Propodeum. D. Head dorsally. E. Habitus.
Fig. 15 in A revision of the genus Rhinotorus Förster, 1869 (Hymenoptera, Ichneumonidae, Ctenopelmatinae), with descriptions of three new species and an illustrated identification key
Fig. 15. Rhinotorus umbrarum (Holmgren, 1857). A. ♀, face. B. ♂, face. C. Metasoma dorsally. D. Propodeum.
Fig. 1. A–D in A revision of the genus Rhinotorus Förster, 1869 (Hymenoptera, Ichneumonidae, Ctenopelmatinae), with descriptions of three new species and an illustrated identification key
Fig. 1. A–D. Saotis brachycerus (Kasoparyan & Kopelke, 2009) comb. nov. A. Face. B. Propodeum. C. Habitus paratype, ♂ S. brachycerus (Kasoparyan & Kopelke, 2009). D. Habitus holotype, ♀ S.brachycerus (Kasoparyan & Kopelke, 2009). E–F. Saotis granulator Kasparyan & Kopelke, 2010. E. Habitus ♂ S. granulator Kasparyan & Kopelke, 2010. F. Habitus ♀ S. granulator Kasparyan & Kopelke, 2010.
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.