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Figure 1 in Parallelism in secondary loss of sex from a heterogonic life cycle on different host plants in the Andricus mukaigawae complex (Hymenoptera: Cynipidae), with taxonomic notes

Figure 1. Andricus targionii (s. lat.) populations on Quercus dentata used for the present chromosome study. 1, Kitami; 2, Minami-chitose; 3, Aomori; 4, Mt Haruna; 5, Lake Yamanaka; 6, Lake Shirakaba.

opencc-by-4.0Mar 2007View details →
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Figs 35–41. Doubledaya sinuata Zia, 1934 in Morphology of adult and immature stages, and host plant use of Doubledaya sinuata (Coleoptera: Erotylidae: Languriinae)

Figs 35–41. Doubledaya sinuata Zia, 1934, adult male and female (35), adult female (36–37) and oviposition hole (38–39) on recently dead Sinobambusa sat bamboo culm and larva inside S. sat internode cavity (40–41). 35 – mating; 36 – making an oviposition hole; 37 – inserting the ovipositor into an oviposition hole; 38 – outer opening; 39 – inner opening; 40 – young instar larva; 41 – mature larva. Arrows indicate pith tissue. Scale bars = 1.0 mm (38–39), 5.0 mm (40–41).

opencc-by-4.0Dec 2014View details →
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Figs 1–18. Doubledaya sinuata Zia, 1934 in Morphology of adult and immature stages, and host plant use of Doubledaya sinuata (Coleoptera: Erotylidae: Languriinae)

Figs 1–18. Doubledaya sinuata Zia, 1934, adult female (1–12) and male (13–18). 2, 14 – head, dorsal view; 3 – right antenna, dorsal view; 4, 15 – pronotum; 5 – prosternal process; 6 – anterior part of elytron with scutellum; 7 – apices of elytron; 8 – abdominal segment VII, ventral view; 9 – abdominal segment VIII, dorsal view; 10 – apex of ovipositor, left lateral view; 11 – apex of ovipositor, ventral view; 12 – spermatheca; 16 – tegmen, ventral view; 17–18 – median lobe, dorsal (17) and ventral (18) views. An arrow indicates gonostylus. Scale bars = 2.0 mm (1, 13), 1.0 mm (2–7, 14–18) 0.5 mm (8–11), 0.1 mm (12).

opencc-by-4.0Dec 2014View details →
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Figs 19–34. Doubledaya sinuata Zia, 1934 in Morphology of adult and immature stages, and host plant use of Doubledaya sinuata (Coleoptera: Erotylidae: Languriinae)

Figs 19–34. Doubledaya sinuata Zia, 1934, larva (19–28) and pupa (29–34). 19–20 – larva, dorsal (19) and left lateral (20) views; 21 – head; 22 – right antenna, dorsal view; 23 – left mandible, ventral view; 24–25 – left maxilla, dorsal (24) and ventral (25) views; 26 – labium, ventral view; 27 – right front leg, anterior view; 28 – spiracle of abdominal segment I; 29–31 – pupa, ventral (29), left lateral (30) and dorsal (31) views; 32 – spines on abdominal tergite VII, posterior view; 33 – spines on abdominal sternite VII, posterior view; 34 – urogomphi, dorsal view. Scale bars = 5.0 mm (19–20, 29–31), 0.5 mm (21, 27), 0.2 mm (22–26, 32–34), 0.1 mm (28).

opencc-by-4.0Dec 2014View details →
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Figs. 11−18 in Species inventory, preys and host plants of Anthocoridae sensu lato (Hemiptera: Heteroptera) in Shiraz and its environs (Iran, Fars province)

Figs. 11−18. Parameres of Anthocoridae. 11 − Temnostethus reduvinus parilis (Horváth, 1891), 12 − Anthocoris minki pistaciae Wagner, 1957, 13 − Orius albidipennis (Reuter, 1884), 14 − O. niger (Wolff, 1811), 15 − O. laevigatus laevigatus (Fieber, 1860), 16 − O. laticollis discolor (Reuter, 1884), 17 − O. horvathi (Reuter, 1884), 18 − O. vicinus (Ribaut, 1923). Abbreviations: cn − cone, dt − denticule, fg − flagellum. Scale bars = 0.05 mm.

opencc-by-4.0Jun 2009View details →
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Figure 3 in Annotated World Bibliography of Host Plants of the Melon Fly, Bactrocera cucurbitae (Coquillett) (Diptera: Tephritidae)

Figure 3. Geographic range of Bactrocera. Countries highlighted in yellow and bordered in red are countries within which field infestation of fruits by B. cucurbitae has been reported and is summarized in this publication. Countries highlighted in light blue and bordered in dark blue are additional countries where B. cucurbitae has been reported to be present as summarized in the online Invasive Species Compendium (CABI 2016). Regions highlighted in light green and bordered in dark green are provinces of China where B. cucurbitae is present. This publication does provide some field infestation summaries from China, but such reports are few, and recent population documentation by Xia et al. (2015) provides a better estimation of the current extent of B. cucurbitae populations in China. Because of space limitations, some country names were abbreviated, as follows: B - Brunei, C - Cambodia, S - Singapore, and UAE - United Arab Emirates.

opencc-by-4.0Feb 2017View details →
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Figure 2 in Annotated World Bibliography of Host Plants of the Melon Fly, Bactrocera cucurbitae (Coquillett) (Diptera: Tephritidae)

Figure 2. Adult female Bactrocera cucurbitae on watermelon fruit, Citrullus lanatus (Thunb.) Matsum. & Nakai. Photograph provided by S. Bauer (USDA-ARS).

opencc-by-4.0Feb 2017View details →
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Figure 1 in Annotated World Bibliography of Host Plants of the Melon Fly, Bactrocera cucurbitae (Coquillett) (Diptera: Tephritidae)

Figure 1. Adult male Bactrocera cucurbitae on a corn (Zea mays L.) tassel, showing identifying features of black spot on the wing tip and a black band on the wing. Photograph provided by G. T. McQuate (USDA-ARS).

opencc-by-4.0Feb 2017View details →
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Figure 3 in Development, reproduction and life table parameters of Tetranychus turkestani (Acari: Tetranychidae) on three different host plants

Figure 3 Age-stage-specific life expectancy (exj) of Tetranychus turkestani on: a. cowpea, b. white bean, c. red bean.

opencc-by-4.0Sep 2020View details →
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Figure 2 in Development, reproduction and life table parameters of Tetranychus turkestani (Acari: Tetranychidae) on three different host plants

Figure 2 Age-specific survival rate (lx), fecundity (mx) and maternity l (x mx) of Tetranychus turkestani on: a. cowpea, b. white bean, c. red bean.

opencc-by-4.0Sep 2020View details →
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Figure 1 in Development, reproduction and life table parameters of Tetranychus turkestani (Acari: Tetranychidae) on three different host plants

Figure 1 Age-stage-specific survival rate (Sxj) of Tetranychus turkestani on: a. cowpea, b. white bean, c. red bean.

opencc-by-4.0Sep 2020View details →
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Figure 4 in Development, reproduction and life table parameters of Tetranychus turkestani (Acari: Tetranychidae) on three different host plants

Figure 4 Age-stage-specific life expectancy (vxj) of Tetranychus turkestani on: a. cowpea, b. white bean, c. red bean.

opencc-by-4.0Sep 2020View details →
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Figure 6 in Phylogenetic analysis of Zygaenoidea small-subunit rRNA structural variation implies initial oligophagy on cyanogenic host plants in larvae of the moth genus Zygaena (Insecta: Lepidoptera)

Figure 6. Secondary structure models of the highly variable proximal part of helix 43 (S6, Fig. 1) in Zygaeninae. All structures are based on thermodynamic folding by minimizing the free energy and have been calculated considering the entire nucleotide sequence of helix 43. The change in the Gibb's free energy (dG) refers to the S6 structure only. Applied ambiguity code: G/A = R, C/U = Y.

opencc-by-4.0Jul 2006View details →
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Figure 3 in Phylogenetic analysis of Zygaenoidea small-subunit rRNA structural variation implies initial oligophagy on cyanogenic host plants in larvae of the moth genus Zygaena (Insecta: Lepidoptera)

Figure 3. Consensus structure and base pair probability matrix of helix E23-5 (S3, Fig. 1) in Lepidoptera. Nucleotides in circles indicate consistent and/or compensatory substitutions. The size of squares in the grid is proportional to the probability of a base pairing. Note that the species Z. centaureae, Z. laeta and Z. huguenini have been omitted from this analysis because of their deviating secondary structure (compare with Fig. 4).

opencc-by-4.0Jul 2006View details →
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Figure 2 in Phylogenetic analysis of Zygaenoidea small-subunit rRNA structural variation implies initial oligophagy on cyanogenic host plants in larvae of the moth genus Zygaena (Insecta: Lepidoptera)

Figure 2. Distribution of pairwise tree edit distances between highly variable SSU rRNA secondary structure areas (S1–S6, Fig. 1) of Zygaenoidea excluding taxa of the subgenus Mesembrynus (top) and of Zygaena species belonging to the subgenus Mesembrynus only (bottom). The extreme values in the Zygaenoidea tree edit distance distribution on the right all involve Z. excelsa, a species showing a highly derived secondary structure in the area S6 (compare with Fig. 6).

opencc-by-4.0Jul 2006View details →
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Figure 1 in Phylogenetic analysis of Zygaenoidea small-subunit rRNA structural variation implies initial oligophagy on cyanogenic host plants in larvae of the moth genus Zygaena (Insecta: Lepidoptera)

Figure 1. Secondary structure model of the SSU (18S) rRNA gene sequence of Zygaena (Mesembrynus) sarpedon lusitanica Reiss, 1936 (Lepidoptera: Zygaenidae; accession no. AJ830858) and structure variation in the helices E10-1 and E23-12 among species of the subfamily Zygaeninae. Nucleotides in the model are continuously numbered beginning at the 5′-end of the molecule; tick marks identify every tenth base. Light shading indicate helices numbered according to Wuyts et al. (2002). S1–S6 (dark shades) denote areas with variable secondary structure in the subfamily Zygaeninae. Roman numerals specify the domains I, II, III and IV. The following ambiguity code has been applied: A/C = M, C/U = Y, G/A = R.

opencc-by-4.0Jul 2006View details →
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Figure 7 in Phylogenetic analysis of Zygaenoidea small-subunit rRNA structural variation implies initial oligophagy on cyanogenic host plants in larvae of the moth genus Zygaena (Insecta: Lepidoptera)

Figure 7. Neighbour-joining tree based on structural differences in the variable areas S1–S6 (compare with Fig. 1) of the small-subunit (18S) rRNA in taxa of the genus Zygaena. The topology is rooted with Reissita simonyi and Epizygaenella caschmirensis as outgroup. Taxa of the subgenus Mesembrynus are indicated by shading. Numbers in parentheses specify the number of species in a particular group.

opencc-by-4.0Jul 2006View details →
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Figure 5 in Phylogenetic analysis of Zygaenoidea small-subunit rRNA structural variation implies initial oligophagy on cyanogenic host plants in larvae of the moth genus Zygaena (Insecta: Lepidoptera)

Figure 5. Consensus structure and base pair probability matrix of the proximal part of helix 43 (S6, Fig. 1) in Lepidoptera. Nucleotides in circles indicate consistent and/or compensatory substitutions. The size of squares in the grid is proportional to the probability of a base pairing. Note that the unpaired nucleotides C and G in the helix will most likely bind in individual structures having this specific nucleotide combination, but non-Watson–Crick pairings are too frequent in the alignment for assuming a generally nucleotide interaction at this position in the consensus structure.

opencc-by-4.0Jul 2006View details →
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Figures 83–87 in Revision of the Australian species of Pleistodontes (Hymenoptera: Agaonidae) fig-pollinating wasps and their host-plant associations

Figures 83–87. (83) P. greenwoodi head; (84) P. greenwoodi mandibles; (85) P. xanthocephalus sp. nov. head. Scale bar = 100 Mm; (86) P. greenwoodi clypeus; (87) P. xanthocephalus sp. nov. clypeus. Scale bar = 50 Mm.

opencc-by-4.0Dec 2002View details →
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Figure 94 in Revision of the Australian species of Pleistodontes (Hymenoptera: Agaonidae) fig-pollinating wasps and their host-plant associations

Figure 94. Comparison of head shape between P. athysanus sp. nov. (Fig. 60) and P. proximus Wiebes (Fig. 62).

opencc-by-4.0Dec 2002View details →

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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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record