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4,956 results for “Ichneumonidae”
Figure 1 in Phenology of Zagryphus zulaya Gauld (Hymenoptera: Ichneumonidae: Tryphoninae) in a montane forest in Guatemala and a new country record for Z. vegai Gauld
Figure 1. Traps used to collect Ichneumonidae in Guatemala. a) Light trap in Puerta Parada. b–c) Malaise traps in Puerta Parada. d–e) Light traps in Fraijanes, Guatemala. f) Zagryphus vegai.
Figure 3 in Phenology of Zagryphus zulaya Gauld (Hymenoptera: Ichneumonidae: Tryphoninae) in a montane forest in Guatemala and a new country record for Z. vegai Gauld
Figure 3. Phenology of Zagryphus zulaya in Puerta Parada using combined data from 2002 to 2014. Blue bars are males, orange bars are females.
Figure 2 in Phenology of Zagryphus zulaya Gauld (Hymenoptera: Ichneumonidae: Tryphoninae) in a montane forest in Guatemala and a new country record for Z. vegai Gauld
Figure 2. Morphology of Zagryphus. a) Zagryphus zulaya female. b) Male. c) Zagryphus vegai female with swollen black clypeus, d) Zagryphus zulaya female with swollen red clypeus. e) Zagryphus vegai antennae. f) Zagryphus vegai metatarsus.
Figures 19–22 in The species of four genera of Metopiinae (Hymenoptera: Ichneumonidae) in Britain, with new host records and descriptions of four new species
Figures 19–22. Synosis caesiellae. (19) ♀, Port Appin, dorsal view of head showing ocelli. (20) ♀, Port Appin, propodeum. (21) ♀, Berrie Dale, ex?Carpatolechia, propodeum. (22) ", Burghfield, ex Swammerdamia, propodeum.
Figures 13–15 in The species of four genera of Metopiinae (Hymenoptera: Ichneumonidae) in Britain, with new host records and descriptions of four new species
Figures 13–15. Synosis parenthesellae. (13) ♀, dorsal view of head showing ocelli. (14) ", dorsal view of head showing ocelli. (15) ♀, propodeum.
Figures 2–5 in The species of four genera of Metopiinae (Hymenoptera: Ichneumonidae) in Britain, with new host records and descriptions of four new species
Figures 2–5. Apolophus borealis ♀. (2) Head, lateral view, showing narrow mandible. (3) Head and fore leg, showing long malar space and foreshortened tarsal segments. (4) Metasomal apex, showing large hypopygium. (5) Whole insect, lateral view.
Figures 16–18 in The species of four genera of Metopiinae (Hymenoptera: Ichneumonidae) in Britain, with new host records and descriptions of four new species
Figures 16–18. Synosis fieldi. (16) ", face in lateral view (a), compared to " S. caesiellae (b). (17) ", dorsal view of head showing ocelli. (18) ", propodeum.
Figure 2 in The natural history of the parasitic wasp Trogus pennator (Hymenoptera: Ichneumonidae): Host-finding behaviour and a possible host countermeasure
Figure 2. The frequency of plants damaged by Eurytides marcellus in the population was estimated at 16.4%. In contrast, 36% of the plants visited by the wasps were damaged (P,0.001, chi-square test).
Figure 3 in The natural history of the parasitic wasp Trogus pennator (Hymenoptera: Ichneumonidae): Host-finding behaviour and a possible host countermeasure
Figure 3. For those wasps (n533) that landed on and searched both undamaged Asimina plants and plants that were damaged by Eurytides marcellus, average searching times were significantly longer on damaged plants (P50.0016, two-tailed paired t test).
Figure 4 in The natural history of the parasitic wasp Trogus pennator (Hymenoptera: Ichneumonidae): Host-finding behaviour and a possible host countermeasure
Figure 4. The average height of plants searched by Trogus pennator (n557 wasps, range58–145 cm) and selected for oviposition by Eurytides marcellus (n541 butterflies, range52–95 cm) was compared in spring 1997. The wasps searched plants significantly taller than those preferred by the female butterflies (P,0.0001, two-tailed t test).
Figure 1. A in The natural history of the parasitic wasp Trogus pennator (Hymenoptera: Ichneumonidae): Host-finding behaviour and a possible host countermeasure
Figure 1. A vegetation survey was conducted in spring 1997 to establish the frequency of Asimina among the broad-leaved plants in the understorey. The mean percentage Asimina was determined at 7.5% by counting stems in 5 m×5 m plots. Plants counted as ''other'' most commonly included Quercus incana, Q. laevis, Vitis rotundifolia Micheaux, V. aestivalis Micheaux, Mimosa, sp., Smilax spp., and several unidentified Compositae. In contrast, 93.3% of plants visited by the wasps were Asimina (P,0.001, chi-square test).
Figures 11–16 in The parasitic wasp genera Skiapus, Hellwigia, Nonnus, Chriodes, and Klutiana (Hymenoptera, Ichneumonidae): Recognition of the Nesomesochorinae stat. rev. and Nonninae stat. nov. and transfer of Skiapus and Hellwigia to the Ophioninae
Figures 11–16. Scanning electron micrographs showing features of Skiapus sp. (Ophioninae). (11) Front of head showing emarginate eyes and twisted mandibles. (12) Back of head showing medially strongly excavated occiput and deflected occipital carina. (13) Metanotum and propodeum showing two complete transverse carinae located close to anterior margin. (14) Tibia of mid-leg, oblique angle, showing strong spines. (15) Hind coxa showing tooth near base. (16) Claw showing pectination.
Figure 4 in The parasitic wasp genera Skiapus, Hellwigia, Nonnus, Chriodes, and Klutiana (Hymenoptera, Ichneumonidae): Recognition of the Nesomesochorinae stat. rev. and Nonninae stat. nov. and transfer of Skiapus and Hellwigia to the Ophioninae
Figure 4. Partial alignments (arrangements) of four parts of the 28S D2 rDNA gene for representatives of the Campopleginae, Cremastinae, Ctenopelmatinae, and Ophioninae (aligned by eye) showing molecular synapomorphies for Campopleginae (1 and 2) and Ophioninae (3 and 4). Fragment 1 corresponds to bases 11– 24, fragment 2 to bases 47–62, fragment 3 to bases 203–225 (in box) and fragment 4 to bases 236 (in box) to 244 in the alignment shown in Belshaw et al. (1998, Figure 1).
Figure 1 in The parasitic wasp genera Skiapus, Hellwigia, Nonnus, Chriodes, and Klutiana (Hymenoptera, Ichneumonidae): Recognition of the Nesomesochorinae stat. rev. and Nonninae stat. nov. and transfer of Skiapus and Hellwigia to the Ophioninae
Figure 1. Strict consensus of: (a) MPTs with all characters unordered; (b) MPTs when selected characters treated as ordered; (c) after successive approximations weighting with selected characters treated as ordered.
Figure 3 in The parasitic wasp genera Skiapus, Hellwigia, Nonnus, Chriodes, and Klutiana (Hymenoptera, Ichneumonidae): Recognition of the Nesomesochorinae stat. rev. and Nonninae stat. nov. and transfer of Skiapus and Hellwigia to the Ophioninae
Figure 3. Strict consensus of trees obtained from simultaneous optimization alignment analyses of morphological and molecular data with gap:substitution ratio set at (a) 2:1, (b) 3:1, and (c) 4:1.
Figure 2 in The parasitic wasp genera Skiapus, Hellwigia, Nonnus, Chriodes, and Klutiana (Hymenoptera, Ichneumonidae): Recognition of the Nesomesochorinae stat. rev. and Nonninae stat. nov. and transfer of Skiapus and Hellwigia to the Ophioninae
Figure 2. Strict consensus of trees obtained from optimization alignment analysis of molecular data with gap:substitution ratio set at (a) 2:1, (b) 3:1, and (c) 4:1.
Figures 5–10 in The parasitic wasp genera Skiapus, Hellwigia, Nonnus, Chriodes, and Klutiana (Hymenoptera, Ichneumonidae): Recognition of the Nesomesochorinae stat. rev. and Nonninae stat. nov. and transfer of Skiapus and Hellwigia to the Ophioninae
Figures 5–10. Scanning electron micrographs showing features of Campopleginae sensu stricto and Nesomesochorinae stat. rev. (5) Echthronomas sp. (Campopleginae) hind tibia and basitarsus inner aspect showing unmodified tibial comb. (6–7, 9–10) Chriodes sp.: (6) hind tibia and basitarsus inner aspect showing modified tibial comb with medially reduced setae; (7) face; (9) claw showing pecten; (10) propodeum showing areolation. (8) Klutiana sp., face.
Figure 4 in Biology and immature stages of Panteles schnetzeanus (Hymenoptera: Ichneumonidae), a parasitoid of Lampronia fuscatella (Lepidoptera: Incurvariidae)
Figure 4. (A) Female Panteles prepupa showing very well-developed pupa with pigmented eyes still inside final larval instar skin; (B) final larval instar head capsule (unstained); (C) eggs of Panteles incorporated in Panteles silk cocoon.
Figure 3 in Biology and immature stages of Panteles schnetzeanus (Hymenoptera: Ichneumonidae), a parasitoid of Lampronia fuscatella (Lepidoptera: Incurvariidae)
Figure 3. (A) Dissected superparasitized Lampronia larva showing group of eggs (three out of five visible) with ''tails'' embedded in host tissue near the rectum, and with a mid-instar Panteles larva to left of host gut in midregion (arrow); (B) detail of the mid-instar Panteles larva from this caterpillar.
Figure 2 in Biology and immature stages of Panteles schnetzeanus (Hymenoptera: Ichneumonidae), a parasitoid of Lampronia fuscatella (Lepidoptera: Incurvariidae)
Figure 2. Host, Lampronia fuscatella, and parasitoid, Panteles schnetzeanus. (A–C) Mature, singly parasitized host larvae, the parasitoid egg case is visible as a dark mark at the posterior of the body (A, and detail B) and between the first and second abdominal segments (C); (D, F) hatched Panteles egg cases showing apparent white modification to tail associated with tissue embedding (D) and typical larval emergence cap (F); (E) head capsule of caste skin of first instar Panteles larva with arrow indicating level of mouthparts with small mandibles.
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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.