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4,956 results for “Ichneumonidae”
Figure 3 in Diurnal flight activity of Ichneumonidae (Insecta: Hymenoptera) in Cabañeros National Park (Spain)
Figure 3. Number of individuals and number of species trapped per sampling hour. Discontinuous lines separate the three sampling days.
Figure 12 in A thousand and one wasps: a 28S rDNA and morphological phylogeny of the Ichneumonidae (Insecta: Hymenoptera) with an investigation into alignment parameter space and elision
Figure 12. Chitinous venom gland and reservoir intimas. (A) Ateleute sp.; (B) Ichneumon sp.; (C) Alomya sp. (Alomyinae); (D) Osprynchotus sp. (Cryptinae); (E) Colpognathus sp. (Ichneumoninae); (F) Hoplismenus sp. (Ichneumoninae); (G) Eusterinx sp. (Orthocentrinae).
Figure 9 in A thousand and one wasps: a 28S rDNA and morphological phylogeny of the Ichneumonidae (Insecta: Hymenoptera) with an investigation into alignment parameter space and elision
Figure 9. Chitinous venom gland and reservoir intimas. (A) Ganodes sp. (Poemeniinae); (B) Labena sp. (Labeninae); (C) Phaenolobus sp. (Acaenitinae); (D) Coleocentrus sp. (Acaenitinae); (E) Euceros sp. (Eucerotinae); (F) Euceros frigidus Cresson.
Figure 2 in Diurnal flight activity of Ichneumonidae (Insecta: Hymenoptera) in Cabañeros National Park (Spain)
Figure 2. Hourly totals of trapped Ichneumonidae related to air temperature, relative humidity and illuminance over three sampling days.
Figure 7 in A thousand and one wasps: a 28S rDNA and morphological phylogeny of the Ichneumonidae (Insecta: Hymenoptera) with an investigation into alignment parameter space and elision
Figure 7. Drawings of transverse sections through mid-part of ovipositor valves. (A) Brachycyrtus, dorsal valve only; (B) Grotea sp. (Labeninae); (C) Pseudorhyssa sternat Merrill (Poemeniinae incertae sedis) [NB. virtually identical to Ganodes sp. (Poemeniinae), not illustrated]; (D) Podoschistus sp. (Poemeniinae); (E) Coelichneumon sp. (Ichneumoninae); (F) Peucobius sp. (Phrudinae); (G) Xenoschesis sp. (Ctenopelmatinae).
Figure 15 in A thousand and one wasps: a 28S rDNA and morphological phylogeny of the Ichneumonidae (Insecta: Hymenoptera) with an investigation into alignment parameter space and elision
Figure 15. Strict consensus of most parsimonious trees from analysis of morphological data alone (length 1291; RI 0.507; CI 0.166).
Figure 3 in A thousand and one wasps: a 28S rDNA and morphological phylogeny of the Ichneumonidae (Insecta: Hymenoptera) with an investigation into alignment parameter space and elision
Figure 3. Light photomicrographs of base of ovipositor sheath following maceration in KOH (aq.) and light staining with chlorazol black. (A) Odontocolon (Xoridinae); (B) Phaenolobus (Acaenitinae); (C) Nonnus (Nonninae); (D) Hymenoepimecis (Pimplinae); (E) Coleocentrus (Acaenitinae).
Figure 1 in A thousand and one wasps: a 28S rDNA and morphological phylogeny of the Ichneumonidae (Insecta: Hymenoptera) with an investigation into alignment parameter space and elision
Figure 1. Plot of log10 number of genera sequenced versus number of currently recognized genera in each subfamily (number of recognized extant genera from Yu and Horstmann 1997; Yu et al. 2005). The point at the origin represents 15 monotypic subfamilies.
Figure 5 in Diurnal flight activity of Ichneumonidae (Insecta: Hymenoptera) in Cabañeros National Park (Spain)
Figure 5. Diurnal flight activity for both sexes in the three sampling days, against air temperature.
Figure 19 in A thousand and one wasps: a 28S rDNA and morphological phylogeny of the Ichneumonidae (Insecta: Hymenoptera) with an investigation into alignment parameter space and elision
Figure 19. Summary of recovery of selected ophioniformes clades as monophyletic in most parsimonious trees from analysis of combined morphological and CLUSTAL-aligned molecular data showing effects of different gap-opening and gap-extension values and treatment of gaps as informative or uninformative. Groups are coloured if they were recovered in any of the most parsimonious trees obtained from a particular combination of parameters.
Figure 11 in Diurnal flight activity of Ichneumonidae (Insecta: Hymenoptera) in Cabañeros National Park (Spain)
Figure 11. Mean values for richness (left) and Margalef index (right) with 95% confidence interval for each period. Significant differences between periods (as indicated by Tukey tests) in italics.
FIGURE 5 in A new species, key and further redefinition of Nesolinoceras Ashmead (Hymenoptera, Ichneumonidae, Cryptinae)
FIGURE 5. Distributions for species of Nesolinoceras Ashmead. Circles, N. ornatipennis (Cresson). Triangles, N. laluzbrillante Santos. Diamond, N. bajari sp. nov. Star, Species Inquirenda.
FIGURE 3 in A new species, key and further redefinition of Nesolinoceras Ashmead (Hymenoptera, Ichneumonidae, Cryptinae)
FIGURE 3. Nesolinoceras bajari sp. nov. Holotype female. A, Body in dorsal view, except appendages. B, Mesoscutum, dorsal. C, Propodeum, dorsal. D, Metapleuron and propodeum, left.
FIGURE 2 in A new species, key and further redefinition of Nesolinoceras Ashmead (Hymenoptera, Ichneumonidae, Cryptinae)
FIGURE 2. Nesolinoceras bajari sp. nov. Holotype female. A, Head, frontal view. B, Clypeus, vertical view. C, Occipital carina meeting hypostomal carina, right. D, Head, pronotum and mesopleuron in dorsal and dorso-lateral view. E, Tip of ovipositor, left. F, Fore wing, left, ventral view.
FIGURE 4 in A new species, key and further redefinition of Nesolinoceras Ashmead (Hymenoptera, Ichneumonidae, Cryptinae)
FIGURE 4. Nesolinoceras laluzbrillante photographed in situ in the Dominican Republic. Photo by Martin Reith, licensed un- der the Creative Commons Attribution-Share Alike 4.0 International license. The species was still undescribed when the photo was taken.
FIGURE 6 in A new species, key and further redefinition of Nesolinoceras Ashmead (Hymenoptera, Ichneumonidae, Cryptinae)
FIGURE 6. Summary of collecting records for Nesolinoceras spp., with data from literature and original, plotted against altitude. Circles are collecting events; smallest circles = 1 specimen each, largest circles = 5 or more specimens. (A) Specimens with information on collecting date; range records plotted as two values, i.e., both starting (in red) and ending dates. (B) Specimens with information about the collecting site; light circles are approximate locations, with estimated altitudes.
FIGURES 47–50 in Tersilochinae (Hymenoptera: Ichneumonidae) of Papua New Guinea: genus Diaparsis Förster, part 2. Species with notaulus
FIGURES 47–50. Diaparsis theta sp. nov., holotype, female: female: 47—habitus, lateral; 48—head, front; 49—antenna, lateral; 50—head, mesosoma and base of metasoma, lateral.
FIGURES 33–38 in Tersilochinae (Hymenoptera: Ichneumonidae) of Papua New Guinea: genus Diaparsis Förster, part 2. Species with notaulus
FIGURES 33–38. Diaparsis gamma sp. nov., holotype, female: 33—habitus, lateral; 34—head with antennae, lateral; 35— head, front; 36—head and mesosoma, lateral; 37—propodeum, dorsal; 38—distal part of ovipositor, lateral.
FIGURES 9–16 in Tersilochinae (Hymenoptera: Ichneumonidae) of Papua New Guinea: genus Diaparsis Förster, part 2. Species with notaulus
FIGURES 9–16. Diaparsis beta sp. nov., holotype (9) and paratype (10), females: 9—head, mesosoma and base of metasoma, lateral; 10—ovipositor, lateral. Diaparsis delta sp. nov., holotype, female: 11—habitus (without wing apices), lateral; 12—head, front; 13—antenna, postero-lateral; 14—head and mesoscutum, dorsal; 15—propodeum, dorsal; 16—apex of tergite 1 and tergite 2, dorsal.
FIGURES 60–62 in Tersilochinae (Hymenoptera: Ichneumonidae) of Papua New Guinea: genus Diaparsis Förster, part 2. Species with notaulus
FIGURES 60–62. Diaparsis beta sp. nov., holotype, female: 60—first tergite, dorsal. Diaparsis epsilon sp. nov., holotype, female: 61—head, front. Diaparsis eta sp. nov., holotype, female: 62—veins of fore wing.
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
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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OpenNeuro
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