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269 results for “Aphelinidae”
Figure 15 in Noyesaphytis (Chalcidoidea: Aphelinidae) - an unusual new genus from Madagascar, and a reassessment of Aphelininae classification based on morphology
Figure 15. Phylogenetic relationships and inferred tribal classification of Aphelininae based on a maximum likelihood analysis of 50 morphological characters. The tree shown had the greatest log-likelihood score from 50 independent runs. Numbers above branches indicate support values from 1000 ultrafast bootstrap replicates. Eretmocerus hayati was designated as the outgroup. Taxa followed by an asterisk were described since Kim and Heraty (2012)
Figure 4 in Noyesaphytis (Chalcidoidea: Aphelinidae) - an unusual new genus from Madagascar, and a reassessment of Aphelininae classification based on morphology
Figure 4. Noyesaphytis lasallei holotype female; 4. Right antenna, internal aspect, detail of anelli.
Figure 10 in Noyesaphytis (Chalcidoidea: Aphelinidae) - an unusual new genus from Madagascar, and a reassessment of Aphelininae classification based on morphology
Figure 10. Noyesaphytis lasallei paratype male; 10. Scanning electron micrograph, dorsal head and mesosoma.
Figure 14 in Noyesaphytis (Chalcidoidea: Aphelinidae) - an unusual new genus from Madagascar, and a reassessment of Aphelininae classification based on morphology
Figure 14. One of eighteen most parsimonious trees generated using successive approximations weighting from a phylogenetic analysis of 50 morphological characters (Length: 252; CI: 0.32; RI: 0.72). Bootstrap values greater than 50 are shown above branches. Eretmocerus hayati was designated as the outgroup. Taxa followed by an asterisk were described since Kim and Heraty (2012)
Figure 1 in Noyesaphytis (Chalcidoidea: Aphelinidae) - an unusual new genus from Madagascar, and a reassessment of Aphelininae classification based on morphology
Figure 1. Noyesaphytis lasallei holotype female; 1. Dorsal habitus, critical-point-dried, card-mount.
Figures 1–6. Figures 1 and 2 in Revision of the genus Aphelinus Dalman (Hymenoptera: Chalcidoidea: Aphelinidae) in Norway with descriptions of 3 new species
Figures 1–6. Figures 1 and 2, Aphelinus elvestueni sp. nov.: 1, ♀ antenna; 2, ♀ forewing venation. Figures 3 and 4, Aphelinus odin sp. nov.: 3, ♀ antenna; 4, ♀ forewing venation. Figures 5 and 6, Aphelinus paluscolus sp. nov.: 5, ♀ antenna; 6, ♀ forewing venation.
Fig. 3 in Interspecific competition between two exotic parasitoids (Hymenoptera: Aphelinidae) of an invasive Bemisia tabaci species (Hemiptera: Aleyrodidae)
Fig. 3. Mean (± SE) number of progeny produced by Eretmocerus sp. nr. emiratus under all parasitoid release combinations and host plants. Treatment types are abbreviated as follows: Ee, Er. sp. nr. emiratus only; Eb/Ee, Encarsia bimaculata followed by Er. sp. nr. emiratus; Ee/Eb, Er. sp. nr. emiratus followed by En. bimaculata; Ee+Eb, Er. sp. nr. emiratus and En. bimaculata together. Columns with the same lower case letter within each host plant are not significantly different (difflsmeans, P> 0.05).
Fig. 1 in Interspecific competition between two exotic parasitoids (Hymenoptera: Aphelinidae) of an invasive Bemisia tabaci species (Hemiptera: Aleyrodidae)
Fig. 1. Mean rates of parasitism (% ± SE) under all parasitoid release combinations and host plants. Treatment types are abbreviated as follows: Eb, Encarsia bimaculata only; Eb/Ee, En. bimaculata followed by Eretmocerus sp. nr. emiratus; Ee, Er. sp. nr. emiratus only; Ee/Eb, Er. sp. nr. emiratus followed by En. bimaculata; Ee+Eb, Er. sp. nr. emiratus and En. bimaculata together. Columns with the same lower case letter within each host plant are not significantly different (difflsmeans, P> 0.05).
Fig. 2 in Interspecific competition between two exotic parasitoids (Hymenoptera: Aphelinidae) of an invasive Bemisia tabaci species (Hemiptera: Aleyrodidae)
Fig. 2. Mean (± SE) number of progeny produced by Encarsia bimaculata under all parasitoid release combinations and host plants. Treatment types are abbreviated as follows: Eb, En. bimaculata only; Eb/Ee, En. bimaculata followed by Eretmocerus sp. nr. emiratus; Ee/Eb, Er. sp. nr. emiratus followed by En. bimaculata; Ee+Eb, Er. sp. nr. emiratus and En. bimaculata together. Columns with the same lower case letter within each host plant are not significantly different (difflsmeans, P> 0.05).
Figure 1 in New records of Centrodora Forster (Hymenoptera: Aphelinidae) from the Caucasus
Figure 1. Centrodora amoena, body – A. C. dorsati, body – B, antennae – E, forewing – F, ovipositor – K. C. ochrura, body – C, antennae – G, forewing – H, ovipositor – L. C. salicis, body – D, antennae – I, forewing – J, ovipositor – M.
Figure 1 in New species and new records of Aphelinus Dalman (Hymenoptera: Chalcidoidea: Aphelinidae) from Lagodekhi Reserve (Sakartvelo - Georgia), with diversity and distribution along an elevational gradient
Figure 1. Aphelinus lagodekhiensis sp. nov.: a, ♀ head and antenna; b, ♀ body; c, ♀ thorax; d, ♀ forewing.
Figure 4 in New species and new records of Aphelinus Dalman (Hymenoptera: Chalcidoidea: Aphelinidae) from Lagodekhi Reserve (Sakartvelo - Georgia), with diversity and distribution along an elevational gradient
Figure 4. Species abundance (black circles) and richness of Aphelinus along a temporal scale. Trend lines represent secondorder OLS regressions (abundance R2 = 0.83, P <0.01; richness R2 = 0.61, P <0.01).
Fig. 2 in Analyzing the mass-rearing system of the California red scale parasitoid Aphytis melinus (Hymenoptera: Aphelinidae)
Fig. 2. Production of Aphytis melinus over the period in which the pilot system was working, from 18 March 2010 to 20 Jun 2011: (a) Total production per day, when different cages were in production at the same time and collection was every 2 to 3 days; (b) Total production per cage. Each bar in (b) represents the production of an individual cage, and is displayed as the date when parasitoid emergence began.
Fig. 1 in Analyzing the mass-rearing system of the California red scale parasitoid Aphytis melinus (Hymenoptera: Aphelinidae)
Fig. 1. Parasitoid (Aphytis melinus) production (as percentage of the total production given as mean ± SE) in the production cages: (a) daily emergence; (b) cumulative emergence.
Figures 235–237. Encarsia prolata n in The Australian species of Encarsia Förster (Hymenoptera, Chalcidoidea: Aphelinidae), parasitoids of whiteflies (Hemiptera, Sternorrhyncha, Aleyrodidae) and armoured scale insects (Hemiptera, Coccoidea: Diaspididae)
Figures 235–237. Encarsia prolata n. sp., female. (235) Mesosoma and gaster. (236) Antenna. (237) Fore wing.
Figures 292–294 in The Australian species of Encarsia Förster (Hymenoptera, Chalcidoidea: Aphelinidae), parasitoids of whiteflies (Hemiptera, Sternorrhyncha, Aleyrodidae) and armoured scale insects (Hemiptera, Coccoidea: Diaspididae)
Figures 292–294. Encarsia unfasciata (Girault), holotype female. (292) Type specimen. (293) Mesosoma. (294) Antenna.
Figures 283–285 in The Australian species of Encarsia Förster (Hymenoptera, Chalcidoidea: Aphelinidae), parasitoids of whiteflies (Hemiptera, Sternorrhyncha, Aleyrodidae) and armoured scale insects (Hemiptera, Coccoidea: Diaspididae)
Figures 283–285. Encarsia thoreauini (Girault), female. (283) Mesosoma and gaster. (284) Antenna. (285) Fore wing.
Figures 298–300 in The Australian species of Encarsia Förster (Hymenoptera, Chalcidoidea: Aphelinidae), parasitoids of whiteflies (Hemiptera, Sternorrhyncha, Aleyrodidae) and armoured scale insects (Hemiptera, Coccoidea: Diaspididae)
Figures 298–300. Encarsia whittieri Girault, female. (298) Mesosoma and gaster. (299) Antenna. (300) Fore wing.
Figures 276, 277 in The Australian species of Encarsia Förster (Hymenoptera, Chalcidoidea: Aphelinidae), parasitoids of whiteflies (Hemiptera, Sternorrhyncha, Aleyrodidae) and armoured scale insects (Hemiptera, Coccoidea: Diaspididae)
Figures 276, 277. Encarsia swifti (Girault), syntype female. (276) Overall view of type specimen. (277) Head.
Figures 273–275. Encarsia subhyalina n in The Australian species of Encarsia Förster (Hymenoptera, Chalcidoidea: Aphelinidae), parasitoids of whiteflies (Hemiptera, Sternorrhyncha, Aleyrodidae) and armoured scale insects (Hemiptera, Coccoidea: Diaspididae)
Figures 273–275. Encarsia subhyalina n. sp., female. (273) Mesosoma and gaster. (274) Antenna. (275) Fore wing.
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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
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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.