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323 results for “Venator”
Figures 63-69 from: Gess F (2011) The genus Quartinia Ed. André, 1884 (Hymenoptera, Vespidae, Masarinae) in Southern Africa. Part IV. New and little known species with complete venation. Journal of Hymenoptera Research 21: 1-39. https://doi.org/10.3897/jhr.21.870
Figures 63-69 - Quartinia setaria 63 ♀, lateral view (× 14) 64 ♂, lateral view (× 13) 65 ♀, dorsal view (× 13) 66 ♂, dorsal view (× 13) 67 ♀, head, front view (× 20) 68 ♂, head, front view (× 22) 69 ♂, tergum VII, dorsal view (× 26).
Figures 19-24 from: Gess F (2011) The genus Quartinia Ed. André, 1884 (Hymenoptera, Vespidae, Masarinae) in Southern Africa. Part IV. New and little known species with complete venation. Journal of Hymenoptera Research 21: 1-39. https://doi.org/10.3897/jhr.21.870
Figures 19-24 - Quartinia frontalis 19 ♀, lateral view (× 10) 20 ♂, lateral view (× 12) 21 ♀, dorsal view (× 10) 22 ♂, dorsal view (× 12) 23 ♀, head, front view (× 15) 24 ♂, head, front view (× 17).
Figures 1-7 from: Gess F (2011) The genus Quartinia Ed. André, 1884 (Hymenoptera, Vespidae, Masarinae) in Southern Africa. Part IV. New and little known species with complete venation. Journal of Hymenoptera Research 21: 1-39. https://doi.org/10.3897/jhr.21.870
Figures 1-7 - Quartinia arenaria 1 ♀, lateral view (× 11) 2 ♂, lateral view (× 13) 3 ♀, dorsal view (× 12) 4 ♂, dorsal view (× 11) 5 ♀, head, front view (× 17) 6 ♂, head, front view (× 20) 7 ♂, tergum VII, dorsal view (× 18).
Fig. 50. Stalobrachys gen. nov. A. Right posterior wing, venation. B in Revision of the Eurybrachidae XIV. The Australian genera Olonia Stål, 1862 and Stalobrachys gen. nov. (Hemiptera: Fulgoromorpha)
Fig. 50. Stalobrachys gen. nov. A. Right posterior wing, venation. B. Right posterior leg, distal portion, ventral view. Abbreviations: A1 = first anal vein; A2 = second anal vein; CA = costa anterior; CuA = cubitus anterior; CuP = cubitus posterior; MP = media posterior; MtT1 = first metatarsomere; MtT2 = second metatarsomere; MtT3 = third metatarsomere; PCu = postcubitus; PMs = pad of microsetae; PT = posterior tibia; ScP + R = subcosta posterior + radius; Sp = spines.
FIGURE 5. a. Forewing venation, b. Hindwing venation, drawing T in Eumasia venefica sp. nov. a new species of the subfamily Eumasiinae (Lepidoptera Psychidae) from India with atypical larval ecology
FIGURE 5. a. Forewing venation, b. Hindwing venation, drawing T. Sobczyk.
Data from: Reading the leaves: a comparison of leaf rank and automated areole measurement for quantifying aspects of leaf venation
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Data from: Repeated origin of three-dimensional leaf venation releases constraints on the evolution of succulence in plants
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Figure 107 from: van Nieukerken EJ, Eiseman CS (2020) Splitting the leafmining shield-bearer moth genus Antispila Hübner (Lepidoptera, Heliozelidae): North American species with reduced venation placed in Aspilanta new genus, with a review of heliozelid morphology. ZooKeys 957: 105-161. https://doi.org/10.3897/zookeys.957.53908
Figure 107 Heliozela eugeniella, Holotype with labels. Photograph USNM.
Data from: The wing venation of the Protomyrmeleontidae (Insecta: Odonatoptera) reconsidered thanks to a new specimen from Molteno (Triassic; South Africa)
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FIGURE 5 in A new species of Succinoraphidia Aspöck & Aspöck, 2004 (Raphidioptera: Raphidiidae) from the late Eocene Rovno amber, with venation characteristics of the genus
FIGURE 5. Succinoraphidia baltica (Carpenter, 1957), holotype MCZ 5122. A, ventral view; B, dorsal view. Scale bars = 2 mm.
FIGURE 1 in A new species of Succinoraphidia Aspöck & Aspöck, 2004 (Raphidioptera: Raphidiidae) from the late Eocene Rovno amber, with venation characteristics of the genus
FIGURE 1. Succinoraphidia radioni sp. nov., holotype SIZK L-105 as preserved. A, left view; B, dorsal view. Scale bars = 2 mm.
FIGURE 3 in A new species of Succinoraphidia Aspöck & Aspöck, 2004 (Raphidioptera: Raphidiidae) from the late Eocene Rovno amber, with venation characteristics of the genus
FIGURE 3. Succinoraphidia radioni sp. nov., holotype SIZK L-105, apex of ovipositor. A, ventral view; B, latero-caudal view. gs9, gonistyli of 9th segment; gx9, gonocoxites of 9th segment. Scale bars = 0.1 mm.
Figs. 24–30. Asturodes wing venation and androconial organs. 24 in Asturodes Amsel (Lepidoptera: Crambidae: Spilomelinae): Three New Species From The Western Hemisphere And Food Plant Records From Area De Conservación Guanacaste, Costa Rica
Figs. 24–30. Asturodes wing venation and androconial organs. 24, Male venation, USNM wing slide #115728. 25, Genitalic slide preparation with petaloid scales (ps), filiform scales (fs), and parateguminal sclerite (pts). 26, Magnified androconial organ, parateguminal sclerite (pts). 27, Dorsal view of androconial organs, uncus base (ub). 28, Anal view of genitalia and androconial organs, uncus head (uh), valva (v). 29, Ventral view of androconial organs. 30, Lateral view of androconial organs.
FIGURES 66–75 in Intraspecific wing venation and phallosome taxonomy updates in species of Loneura Navás (Psocodea, Ptiloneuridae), with one new species from cave and key to Loneura species from Brazil
FIGURES 66–75. Loneura maracaensis García Aldrete Variations in the forewing veins of males and females. Scales in mm.
Fig. 5 in Evolutionary relationships of wing venation and wing size and shape in Aphidiinae (Hymenoptera: Braconidae)
Fig. 5 Phylogenetic hypothesis for the subfamily Aphidiinae based on the mtCOI gene and character states of wing venation allocated based on Parsimony ancestral state reconstruction method: left – unordered; right –
Fig. 2 in Evolutionary relationships of wing venation and wing size and shape in Aphidiinae (Hymenoptera: Braconidae)
Fig. 2 Nomenclature of Aphidiinae wing venation following Wharton et al. (1997). CU cubitus, M media, R radius, RS radial sector, m-cu transverse medio-cubital vein, r transverse radial vein, r + m transverse radio-medial vein; cells: I marginal, II 1st submarginal, III 2nd submarginal, IV 3rd submarginal, V basal, VI 1st discal, VII 2nd discal, VIII subbasal, IX 1st subdiscal, X 2nd subdiscal, XI anal
Fig. 6 in Evolutionary relationships of wing venation and wing size and shape in Aphidiinae (Hymenoptera: Braconidae)
Fig. 6 Distribution of species in the morphospace defined by three PC axes. Phylogeny is mapped over graph. a Mapped distribution of the species means in phylomorphospace. Ellipses of the symbols represent
Fig. 3 in Evolutionary relationships of wing venation and wing size and shape in Aphidiinae (Hymenoptera: Braconidae)
Fig. 3 Set of landmarks positioned on the forewing of a Ephedrus plagiator, species with fully developed venation, and forewing of b Binodoxys angelicae, species with a reduced wing venation. First five landmarks (landmarks 1 to 5) describe the proximal part of the wing; landmarks 5, 6 and 7 describe the stigma, 7 and 8 mark the length of metacarpus, 6 and 9 mark the radial vein and together from 6 to 11 represent the distal area of the wing
FIGURE 2. Venations. a–b. Punctulata spp. a, P in Taxonomic study of the genus Punctulata Wang (Lepidoptera: Autostichidae) from China, with descriptions of two new species
FIGURE 2. Venations. a–b. Punctulata spp. a, P. fusciptera; b, P. palliptera; c–d. Autosticha spp. c, A. sinica; d, A. sichuanica.
Figures 83–86. 83, generalized baridine hind wing venation. 84–86, hind wings. 84 in Delimiting baridine weevil evolution (Coleoptera: Curculionidae: Baridinae)
Figures 83–86. 83, generalized baridine hind wing venation. 84–86, hind wings. 84, Cryptorhynchus lapathi (Cryptorhynchinae); 85, Cholus rana (Molytinae); 86, Cylindrocopturus adspersus (Conoderinae).
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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)
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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.