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173 results for “parasitoid biology”
FIGURE 6 in Systematics, distribution and biology of the Australian ' micro-flea' wasps, Baeus spp. (Hymenoptera: Scelionidae): parasitoids of spider eggs
FIGURE 6. Baeus spp.: A & B, B.arthuri: A, female antenna; B, male antenna. C, female B. vulcanus hind femoral spine (arrowed). D, female B. leai reduced hind femoral spine (arrowed). Scale lines, A= 20 μm; B = 100 μm; C = 20 μm; D = 10 μm. cv = clava; F1 - 4, 9 & 10 = funicle segments 1–4, 9 & 10 respectively; p = pedicel; s = scape.
FIGURE 17 in Systematics, distribution and biology of the Australian ' micro-flea' wasps, Baeus spp. (Hymenoptera: Scelionidae): parasitoids of spider eggs
FIGURE 17. Distribution maps: A B. spirolimbus, B. tropaeumusbrevis; B B. tropaeumusdensus, B. vulcanus.
FIGURE 9 in Systematics, distribution and biology of the Australian ' micro-flea' wasps, Baeus spp. (Hymenoptera: Scelionidae): parasitoids of spider eggs
FIGURE 9. Female Baeus spp.: A & B, B. iqbali: A, lateral habitus; B, dorsal habitus. C & D, B. jenningsi: C, lateral habitus; D, dorsal habitus. E & F, B. leai: E, lateral habitus, cresent shaped carina arrowed; F, dorsal habitus; IOD = inter-ocular distance, the minimum distance between the eyes; POL = posterior ocelli line, minimum distance between inner margins of lateral ocelli. Scale lines, A & B = 100 μm; C – F = 200 μm.
FIGURE 3 in Systematics, distribution and biology of the Australian ' micro-flea' wasps, Baeus spp. (Hymenoptera: Scelionidae): parasitoids of spider eggs
FIGURE 3. Ventral view of female metasoma showing laterotergites and the condition of the ventral margins (arrowed): A, excised (free) (B. leai). B, incised (sutured) (Mirobaeoides sp.). lt = laterotergite; S1 = sternite 1; T1 = tergite 1.
FIGURE 18 in Taxonomy, biology, and efficacy of two Australian parasitoids of the eucalyptus gall wasp, Leptocybe invasa Fisher & La Salle (Hymenoptera: Eulophidae: Tetrastichinae)
FIGURE 18. Survival patterns of females (the upper graph) and males Selitrichodes kryceri at 25°C, as related to feed alternatives. Each treatment of each wasp sex involved 20 wasps. In parentheses are the values of Log-Rank statistics: values with the same letter are not statistically different (P = 0.05) according to a close test procedure.
FIGURES 1–3. Habitus. 1 in Taxonomy, biology, and efficacy of two Australian parasitoids of the eucalyptus gall wasp, Leptocybe invasa Fisher & La Salle (Hymenoptera: Eulophidae: Tetrastichinae)
FIGURES 1–3. Habitus. 1. Quadrastichus mendeli Ψ; 2. Selitrichodes kryceri "dark" specimen Ψ; 3. Selitrichodes kryceri "light" specimen Ψ
FIGURES 4–9 in Taxonomy, biology, and efficacy of two Australian parasitoids of the eucalyptus gall wasp, Leptocybe invasa Fisher & La Salle (Hymenoptera: Eulophidae: Tetrastichinae)
FIGURES 4–9. Quadrastichus mendeli Ψ. 4. Base of fore wing; 5. Antenna; 6. Head, frontal view; 7. Malar sulcus; 8. Mesosoma; 9. Gaster.
FIGURE 19 in Taxonomy, biology, and efficacy of two Australian parasitoids of the eucalyptus gall wasp, Leptocybe invasa Fisher & La Salle (Hymenoptera: Eulophidae: Tetrastichinae)
FIGURE 19. Survival patterns of females Quadrastichus mendeli at 25°C, as related to feed alternatives. Each treatment involved 20 wasps. In parentheses are the values of Log-Rank statistics: values with the same letter are not statistically different (P = 0.05) according to a close test procedure.
FIGURES 10–17. Selitrichodes kryceri. 10 in Taxonomy, biology, and efficacy of two Australian parasitoids of the eucalyptus gall wasp, Leptocybe invasa Fisher & La Salle (Hymenoptera: Eulophidae: Tetrastichinae)
FIGURES 10–17. Selitrichodes kryceri. 10. Antenna Ψ; 11. Antenna ♂; 12. Head Ψ, frontal view; 13. Malar sulcus Ψ; 14. Head Ψ, dorsal view; 15. Base of fore wing, Ψ; 16. Mesosoma Ψ; 17. Gaster Ψ.
FIGURE 6. A in Larval morphology and biology of three European species of Megastigmus (Hymenoptera, Torymidae, Megastigminae) parasitoids of gall wasps, including a comparison with the larvae of two seed-infesting species
FIGURE 6. A. Cross section of a gall of Andricus kollari showing a larva of M. dorsalis in a secondary cell of the inquiline Synergus umbraculus, and the central cell occupied by the larva of M. stigmatizans. B. Larva of M. dorsalis in a peripheral cell of a gall of A. kollari. C. Larva of M. dorsalis in a gall of Andricus grossulariae (sexual gen.). D. Crosssection of a gall of Plagiotrochus kiefferianus with larvae of M. dumicola E. Larva of M. stigmatizans. F. Detail of head of the larva of M. stigmatizans. G. Cross section of a gall of A. kollari showing the central cell with a larva of M. stigmatizans. H. A seed inside a hip of Rosa sp., attacked by a larva of M. aculeatus.
FIGURE 5 in Larval morphology and biology of three European species of Megastigmus (Hymenoptera, Torymidae, Megastigminae) parasitoids of gall wasps, including a comparison with the larvae of two seed-infesting species
FIGURE 5. Mandibles of the final-instar larvae of Megastigmus. A. M. dorsalis, left mandible anterior view. B. M. dorsalis left mandible, posterior view. C. M. pistaciae, right mandible, posterior view D. M. dumicola, left mandible, anterior view E. M. dumicola, right mandible, anterior view. F. M. aculeatus, right mandible, posterior view G. M. stigmatizans, left mandible, anterior view. H. M. stigmatizans, right mandible, anterior view.
FIGURE 1 in Larval morphology and biology of three European species of Megastigmus (Hymenoptera, Torymidae, Megastigminae) parasitoids of gall wasps, including a comparison with the larvae of two seed-infesting species
FIGURE 1. Ventral view of final-instar larvae of Megastigmus. A. M. dorsalis ex Andricus kollari (asexual). B. M. dorsalis ex Andricus grossulariae (sexual). C. M. dumicola ex Plagiotrochus kiefferianus (asexual). D. M. stigmatizans ex Andricus kollari (asexual). E. M. pistaciae ex seeds of Pistacia lentiscus F. M. aculeatus ex seeds of Rosa sp.
FIGURE 2 in Larval morphology and biology of three European species of Megastigmus (Hymenoptera, Torymidae, Megastigminae) parasitoids of gall wasps, including a comparison with the larvae of two seed-infesting species
FIGURE 2. Lateral view of final-instar larvae of Megastigmus. A. M. dorsalis ex Andricus kollari (asexual). B. M. dumicola ex Plagiotrochus kiefferianus (asexual). C. M. stigmatizans ex Andricus kollari (asexual). D. M. aculeatus ex seeds of Rosa sp.
FIGURE 4 in Larval morphology and biology of three European species of Megastigmus (Hymenoptera, Torymidae, Megastigminae) parasitoids of gall wasps, including a comparison with the larvae of two seed-infesting species
FIGURE 4. Anterior view of mouthparts of final-instar larvae of Megastigmus. A. M. dorsalis ex Andricus kollari (asexual). B. M. dorsalis ex Andricus grossulariae (sexual). C. M. dumicola ex Plagiotrochus kiefferianus (asexual). D. M. stigmatizans ex Andricus kollari (asexual). E. M. pistaciae ex seeds of Pistacia lentiscus F. M. aculeatus ex seeds of Rosa sp.
FIGURE 3 in Larval morphology and biology of three European species of Megastigmus (Hymenoptera, Torymidae, Megastigminae) parasitoids of gall wasps, including a comparison with the larvae of two seed-infesting species
FIGURE 3. Anterior view of the head of the final-instar larvae of Megastigmus. A. M. dorsalis ex Andricus kollari (asexual). B. M. dorsalis ex Andricus grossulariae (sexual). C. M. dumicola ex Plagiotrochus kiefferianus (asexual). D. M. stigmatizans ex Andricus kollari (asexual). E. M. pistaciae ex seeds of Pistacia lentiscus F. M. aculeatus ex seeds of Rosa sp. Arrows point at antennal setae and anterior margin of clypeus.
FIGURE 51 in Re-description and biology of Parastethynium maxwelli (Hymenoptera: Mymaridae), an egg parasitoid of Zophiuma lobulata (Hemiptera: Lophopidae), and description of a new species of Parastethynium from Indonesia
FIGURE 51. Longevity (in days) of P. maxwelli females and males when provided with Honey + Water (35 females, 13 males), Water alone (40 females, 8 males) and Nil (39 females, 9 males). Error bars are standard errors of the means.
FIGURES 19–24. Parastethynium maxwelli female, micrographs. 19 in Re-description and biology of Parastethynium maxwelli (Hymenoptera: Mymaridae), an egg parasitoid of Zophiuma lobulata (Hemiptera: Lophopidae), and description of a new species of Parastethynium from Indonesia
FIGURES 19–24. Parastethynium maxwelli female, micrographs. 19, head anterior; 20, head posterior; 21, head dorsal; 22, head laterodorsal; 23, mouthparts anterior; 24, mouthparts, posterior.
FIGURES 6–14 in Re-description and biology of Parastethynium maxwelli (Hymenoptera: Mymaridae), an egg parasitoid of Zophiuma lobulata (Hemiptera: Lophopidae), and description of a new species of Parastethynium from Indonesia
FIGURES 6–14. Parastethynium maxwelli (Girault), cleared, slide mounts. 6, female lateral; 7, female head dorsal; 8, female mesosoma + metasoma dorsal; 9, male body dorsal;10, male antennae lateral; 11, male metasoma ventral; 12, male gastral apex + genitalia lateral; 13, male gastral apex ventral; 14, male genitalia ventral.
FIGURES 1–5. Stethynium maxwelli Girault, holotype. 1 in Re-description and biology of Parastethynium maxwelli (Hymenoptera: Mymaridae), an egg parasitoid of Zophiuma lobulata (Hemiptera: Lophopidae), and description of a new species of Parastethynium from Indonesia
FIGURES 1–5. Stethynium maxwelli Girault, holotype. 1, body dorsal; 2, head posterior and dorsal; 3, head, anterior and ventral; 4, mandibles; 5, holotype slide.
FIGURES 47–50. Parastethynium maxwelli legs posterior, micrographs. 47 in Re-description and biology of Parastethynium maxwelli (Hymenoptera: Mymaridae), an egg parasitoid of Zophiuma lobulata (Hemiptera: Lophopidae), and description of a new species of Parastethynium from Indonesia
FIGURES 47–50. Parastethynium maxwelli legs posterior, micrographs. 47, fore leg; 48, fore leg calcar; 49, middle leg; 50, hind leg.
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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)
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.