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1,186 results for “Scolytinae”
FIGURE 52. A in A taxonomic monograph of subfamily Scolytinae (Coleoptera: Curculionidae) in the Western Himalaya
FIGURE 52. A phylogenetic tree obtained from the NJ for the COX-1 genes of Himalayan Polygraphus (in blue) and related species. Numbers at the branches represent bootstrap values.
FIGURE 8 in A taxonomic monograph of subfamily Scolytinae (Coleoptera: Curculionidae) in the Western Himalaya
FIGURE 8. Cryphalus himalayensis sp. nov. Holotype female: dorsal view A, lateral view B, frons C; Allotype male: dorsal view D, ventral view E, frons F.
FIGURE 2 in A taxonomic monograph of subfamily Scolytinae (Coleoptera: Curculionidae) in the Western Himalaya
FIGURE 2. Morphological terminology illustrated on lateral habitus of Cryphalus himalayensis sp. nov.
FIGURE 4 in A taxonomic monograph of subfamily Scolytinae (Coleoptera: Curculionidae) in the Western Himalaya
FIGURE 4. Pityophthorus chilgoza. Holotype female: dorsal view A, lateral view B. (Courtesy: Dr. Sarah M. Smith).
FIGURE 2 in Another new exotic bark beetle in Florida: Ernoporus parvulus (Eggers, 1943) (Coleoptera: Curculionidae: Scolytinae), with additional taxonomic changes
FIGURE 2. Photographs of E. parvulus morphology. A: frons of female (UFFE:36956), B: frons of male (UFFE:36955), C: declivity of female (UFFE:36956), D: declivity of male (UFFE:36823), E: prolegs of female (UFFE:36956), F: prolegs of male with feather-like setae (UFFE:36956), G: proventriculus (UFFE:36823), H: aedeagus taken from three angles (one of the elongate parts of the basal sclerites is missing) (UFFE:36823). Photographs of host material and galleries, I: Talipariti tiliaceum (L.) Fryxell, with snapped twig in lower right where E. parvulus were collected, J: small twig with abundant, small, circular exit holes, K: pair of E. parvulus in transverse gallery, with longitudinal larval galleries exposed, L: teneral adults under peeled bark.
FIGURE 1 in Another new exotic bark beetle in Florida: Ernoporus parvulus (Eggers, 1943) (Coleoptera: Curculionidae: Scolytinae), with additional taxonomic changes
FIGURE 1. Ernoporus parvulus (Eggers, 1943). A: female, dorsal, lateral, and ventral photographs (UFFE:36956); B: male, dorsal, lateral, and ventral photographs (UFFE:36955).
FIGURE 6 in New records and taxonomic notes on Cryphalus Erichson, 1836 in Hawaiʻi (Coleoptera: Curculionidae: Scolytinae)
FIGURE 6. Cryphalus trypanoides (Beeson, 1935). A: dorsal, lateral, and ventral photograph of female (UFFE:36066); B: dorsal, lateral, and ventral photograph of male (UFFE:36071); C: frons of female (UFFE:36066); D: frons of male (UFFE:36071).
FIGURE 4. Cryphalus negrosensis Browne, 1979. A in New records and taxonomic notes on Cryphalus Erichson, 1836 in Hawaiʻi (Coleoptera: Curculionidae: Scolytinae)
FIGURE 4. Cryphalus negrosensis Browne, 1979. A: dorsal, lateral, and ventral photograph of female (UFFE:35202); B: dorsal, lateral, and ventral photograph of male (UFFE:35203); C: frons of female (UFFE:35202); D: frons of male (UFFE:35203); E: dorsal view of base of pronotum and elytra of male (UFFE:35203).
FIGURE 5 in New records and taxonomic notes on Cryphalus Erichson, 1836 in Hawaiʻi (Coleoptera: Curculionidae: Scolytinae)
FIGURE 5. Cryphalus sylvicola (Perkins, 1900). A: dorsal, lateral, and ventral photograph of female (UFFE:36060); B: dorsal, lateral, and ventral photograph of male (UFFE:36061); C: frons of female (UFFE:36060); D: frons of male (UFFE:36061).
FIGURE 2. Cryphalus brasiliensis Schedl, 1976. A in New records and taxonomic notes on Cryphalus Erichson, 1836 in Hawaiʻi (Coleoptera: Curculionidae: Scolytinae)
FIGURE 2. Cryphalus brasiliensis Schedl, 1976. A: dorsal, lateral, and ventral photograph of female (UFFE:35211); B: dorsal, lateral, and ventral photograph of male (UFFE:35212); C: declivity of female (UFFE:35211); D: frons of female (UFFE:35211); E: frons of male (UFFE:35212).
FIGURE 1 in New records and taxonomic notes on Cryphalus Erichson, 1836 in Hawaiʻi (Coleoptera: Curculionidae: Scolytinae)
FIGURE 1. Photographs of Cryphalus spp. galleries. A–C: Cryphalus brasiliensis galleries under the bark of Ficus microcarpa with larvae, pupae and mature adults; D: Cryphalus negrosensis adult male and cluster of eggs in Artocarpus altilis fruits. All photos by DH.
FIGURE 3. Cryphalus mangiferae Stebbing, 1914. A in New records and taxonomic notes on Cryphalus Erichson, 1836 in Hawaiʻi (Coleoptera: Curculionidae: Scolytinae)
FIGURE 3. Cryphalus mangiferae Stebbing, 1914. A: dorsal, lateral, and ventral photograph of female (UFFE:35199); B: dorsal, lateral, and ventral photograph of male (UFFE:35200); C: declivity of female (UFFE:35199); D: frons of female (UFFE:35199); E: frons of male (UFFE:35200).
PLATE 1 in A Synopsis of the Scolytine Ambrosia Beetles of Thailand (Coleoptera: Curculionidae: Scolytinae)
PLATE 1. Dorsal and lateral views of ambrosia beetles. Figures 3–4. Gnatharus tibetensis Wood & Yin. Figures 5–6. Hyorrhynchus birmanus Eggers. Figures 7–8. Sueus obesus (Browne). Figures 9–10. Scolytoplatypus brahma Blandford.
PLATE 3 in A Synopsis of the Scolytine Ambrosia Beetles of Thailand (Coleoptera: Curculionidae: Scolytinae)
PLATE 3. Dorsal and lateral views of ambrosia beetles. Figures 19–20. Cryptoxyleborus stenographus (Schedl). Figures 21–22. Cryptoxyleborus simplex Browne. Figures 23–24. Microperus nudibrevis (Schedl). Figures 25–26. Microperus nugax (Schedl).
PLATE 2 in A Synopsis of the Scolytine Ambrosia Beetles of Thailand (Coleoptera: Curculionidae: Scolytinae)
PLATE 2. Dorsal and lateral views of ambrosia beetles. Figures 11–12. Ambrosiodmus conspectus (Schedl). Figures 13–14. Ambrosiophilus cristatulus (Schedl). Figures 15–16. Ambrosiophilus latisulcatus (Eggers). Figures 17–18. Arixyleborus suturalis (Eggers).
FIGURE 1. A in Molecular and morphological diagnostic markers for the Himalayan Ips DeGeer species (Coleoptera: Curculionidae: Scolytinae)
FIGURE 1. A joint phylogenetic tree obtained from the NJ and Bayesian inference for the COI genes of Ips and outgroups. Numbers above the nodes represent bootstrap values and the numbers in parentheses below the nodes indicate Bayesian posterior probabilities.
FIGURE 3. A in Occurrence of Xyleborus bispinatus (Coleoptera: Curculionidae: Scolytinae) Eichhoff in southern Florida
FIGURE 3. A. Average number (mean ± standard error) of adult beetles that emerged from wood samples from 14 swampbay trees held in emergence chambers for 4 months. B. Average number of adult beetles captured per week on sticky traps placed on the tree trunks of sentinel plants.
FIGURE 1. Xyleborus bispinatus female. A. Dorsal habitus. B Lateral habitus. Xyleborus ferrugineus female. C. Dorsal habitus. D in Occurrence of Xyleborus bispinatus (Coleoptera: Curculionidae: Scolytinae) Eichhoff in southern Florida
FIGURE 1. Xyleborus bispinatus female. A. Dorsal habitus. B Lateral habitus. Xyleborus ferrugineus female. C. Dorsal habitus. D Lateral habitus. Arrows indicate location of major declivital spine on interstriae 3 and pronotal summit.
FIGURE 2. Declivities. Xyleborus bispinatus female. A in Occurrence of Xyleborus bispinatus (Coleoptera: Curculionidae: Scolytinae) Eichhoff in southern Florida
FIGURE 2. Declivities. Xyleborus bispinatus female. A. dorsal aspect; B. angled view; C. lateral profile. Xyleborus ferrugineus female. D. dorsal aspect; E. angled view; F. lateral profile. Xyleborus impressus female. G. dorsal aspect; H. angled view; I. lateral profile. Arrows indicate location of major declivital spines and pronotal summit.
FIGURE 6 in The red-listed species Thamnurgus rossicus in East Europe is a synonym of the rare Central European species, T. petzi (Curculionidae: Scolytinae)
FIGURE 6. Phylogenetic trees resulting from three separate parsimony analyses of COI, EF1α and CAD nucleotides. Bootstrap support values are given on the nodes. Branch lengths are drawn to scale for each data set.
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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.