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127 results for “wing venation”
FIGURE 1. Fore wing venation. A in Recircumscription of the genera Goniozus and Sierola (Hymenoptera: Bethylidae) based on morphological and molecular evidence
FIGURE 1. Fore wing venation. A) Goniozus sensu stricto: G. williamsi (reversed image of left wing). B) "Parasierola": G. emigratus. C) Typical Sierola: S. oahuensis. D) Australian Sierola with cell 2R1 open: undescribed, BOLD process ID AUSMA313-14.
FIGURES 16–19. Polyplectropus spp., wing venation. 16–17 in New species of the genus Polyplectropus Ulmer 1905 (Insecta: Trichoptera: Polycentropodidae) from Indian Himalaya
FIGURES 16–19. Polyplectropus spp., wing venation. 16–17, Pol. kailashchandrai sp. nov.: 16, right forewing, dorsal; 17, right hindwing, dorsal. 18–19, Pol. himachalica sp. nov.: 18, right forewing, dorsal, 19, right hindwing, dorsal. (abbreviations: Sc = subcostal vein; R1–R5 = radial veins 1–5; M1–M4 = medial veins 1–4; Cu = cubital vein; A = anal veins; I, II, III, IV, V = apical forks I–IV.
FIGURE 2 A–D. Robber fly wing venation and cells. A in Robber flies (Insecta: Diptera: Asilidae) of Wyoming, USA with keys to genera and species
FIGURE 2 A–D. Robber fly wing venation and cells. A. Leptogaster sp. (Leptogastrinae) (Hull 1962), B. Atomosia puella (Laphriinae) (Hull 1962), C. Pogonioefferia staminea (Asilinae) (Hine 1919), D. Backomyia limpidipennis (Stenopogoninae) (Hull 1962). Abbreviations: veins—C, costa; CuA, anterior branch of cubital (cubitus); CuP, posterior branch of cubital; R1, anterior branch of radius; R, radius branching into R2+3, R4, R5. Cross veins: m-cu, medio-cubital; r-m, radio-medial. Cells: cua, anterior cubital; cup, posterior cubital; d, discal; m, medial (m1, m2, m3, m4); r1, radial (marginal); r3, r4, r5 posterior (submarginal). Figures not to scale.
Fig. 8 in Evolutionary relationships of wing venation and wing size and shape in Aphidiinae (Hymenoptera: Braconidae)
Fig. 8 The distribution of the wing venation types relative to the species mean sizes (log centroid size). The phylogeny is superimposed according to the reconstructed ancestral values. The character states are colourcoded same as in the Fig. 5
Fig. 7 in Evolutionary relationships of wing venation and wing size and shape in Aphidiinae (Hymenoptera: Braconidae)
Fig. 7 Shape changes associated with the first three PCs are shown as extreme wing shapes (black shape) representing the shape of species with maximal positive and negative score of each axis comparing to the mean shape of the sample (grey shape)
Fig. 4 in Evolutionary relationships of wing venation and wing size and shape in Aphidiinae (Hymenoptera: Braconidae)
Fig. 4 Wing venation types in Aphidiinae and number of character state changes. Distribution of veins and cells in the medial and distal part of the wing were considered, as proximal part of the wing has the same structure in all Aphidiinae. a Four cells type. b Fork type. c Axe stigma type. d H letter type. e Horse head type. f Hook type. The changes in venation are highlighted in red and marked by smaller arrows
Fig. 1 in Evolutionary relationships of wing venation and wing size and shape in Aphidiinae (Hymenoptera: Braconidae)
Fig. 1 Diversity of wing types characterized by the presence/ absence of wing veins and cells. a Ephedrus plagiator. b Pseudephedrus sp.. c Praon barbatum. d Lysiphlebus fabarum. e Aphidius ervi. f Binodoxys angelicae. Detailed wing type definition is given in the text
Fig. 2 Yphthimoides gabriela. a Male wing venation. b Female wing venation. c Male palpus. d Male foreleg. e Male midleg. f in Uncovering the hidden diversity of the Neotropical butterfly genus Yphthimoides Forster (Nymphalidae: Satyrinae): description of three new species based on morphological and molecular data
Fig. 2 Yphthimoides gabriela. a Male wing venation. b Female wing venation. c Male palpus. d Male foreleg. e Male midleg. f Female foreleg
FIGURES 25−30. Wing venation and tergosternal sclerite. Figs 25–28. Wing venation. 25 in Descriptions of two new genera and six new species of ghost-moths (Lepidoptera Hepialoidea: Hepialidae) from south-eastern and southern Brazil
FIGURES 25−30. Wing venation and tergosternal sclerite. Figs 25–28. Wing venation. 25, Agripialus caparao sp. n., ♂. 26, A. itatiaia sp. n., ♀. 27–28, Mutipialus dilatus sp. n., ♂ (27), ♀ (28); arrow pointing to the connection between CuP and A veins in forewing. Figs 29–30. Tergosternal sclerite. 29, Agripialus variabilis sp. n., ♀; arrows pointing to the notch and the posterior portion. 30, Mutipialus dilatus sp. n., ♂.
Figure 1. Wing areas and wing venation defined for the morphological analyses. A in Phylogenetic relationships in the tribe Oxyptilini (Lepidoptera, Pterophoridae, Pterophorinae) based on morphological data of adults
Figure 1. Wing areas and wing venation defined for the morphological analyses. A, fore and hind wings. B, fore wing. C, hind wing in Geina didactyla.
FIGURE 4. Wing venation. A in Geometridae (Lepidoptera) of the Baikal region: identification keys and annotated catalogue with notes to DNA barcoding. Part 2. Archiearinae, Geometrinae, Sterrhinae
FIGURE 4. Wing venation. A—Jodis putata; B—Geometra papilionaria; C—Hemithea aestivaria; D—Chlorissa viridata; E—Holarctias rufinaria; F—Rhodostrophia vibicaria; G—Scopula ornata; H—Timandra rectistrigaria; I—Cyclophora albipunctata. A–D—hindwings; E, F—forewings; G–I—right pair of wings. R veins marked in red, M veins marked in blue, Cu veins marked in green, areole marked in teal.
Data from: Evolution of wing shape in hornets: why is the wing venation efficient for species identification?
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FIGURE 29 in Brasineura Silva-Neto & García Aldrete (Psocodea, 'Psocoptera', Ptiloneuridae) new species, new records and variation in the wing venations
FIGURE 29. Distribution of the Brasineura species.
FIGURE 3. Wing venation for Teremys hanniae n in A new species of the enigmatic genus Te re m ys Mason, T. hanniae, from Costa Rica (Hymenoptera: Braconidae)
FIGURE 3. Wing venation for Teremys hanniae n. sp. (A) and T. masneri (B).
FIGURES 13–14. Trichoptera wing venation, generalized. 13 in Order Trichoptera Kirby, 1813 (Insecta), Caddisflies *
FIGURES 13–14. Trichoptera wing venation, generalized. 13–forewing; 14–hind wing.
FIGURES 25–26. Wing venation. 25. Cataclysme riguata, 26 in Revision of the genus Paraplaneta Warren, 1895 (Lepidoptera: Geometridae, Larentiinae) from Southeast Asia
FIGURES 25–26. Wing venation. 25. Cataclysme riguata, 26. Paraplaneta conturbata.
FIGURES 15–16. Wing venation. 15 in New taxa of southern African Sesiini (Lepidoptera: Sesiidae)
FIGURES 15–16. Wing venation. 15. Microsesia nana, new sp. 16. Coccophila pythes (Druce, 1899).
FIGURE 2. Fore wing venation. A in Revision of the Oriental genus Holophris Mocsáry, 1890 and description of the genus Leptopareia Rosa & Xu, gen. nov. (Hymenoptera, Chrysididae)
FIGURE 2. Fore wing venation. A. Leptopareia borneana (Cameron); B. Holophris thailandica sp. nov.
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.
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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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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