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323 results for “venation”
FIGURE 6 in A new genus of Hemerobiidae (Neuroptera) from Baltic amber, with a critical review of the Cenozoic Megalomus - like taxa and remarks on the wing venation variability of the family
FIGURE 6. Proneuronema minor gen. et sp. nov., apex of abdomen of the male specimen SMF Be 2535 (lateral view). A, photograph. B, line drawing. cc, callus cerci; ect, ectoproct; S7, S8, S9, 7th to 9th sternites; T8, T9, 8th and 9th tergites. Scale bar = 0.3 mm.
FIGURE 13 in A new genus of Hemerobiidae (Neuroptera) from Baltic amber, with a critical review of the Cenozoic Megalomus - like taxa and remarks on the wing venation variability of the family
FIGURE 13. Wing venation of extant Megalomus setosulus (Walker, 1860) (India: Himachal Pradesh) (A, B), and Neuronema kuwayamai Nakahara, 1960 (Japan: Hokkaido) (C, D). A, C, forewings. B, D, hind wings. Venational anomalies are shown by stouter arrows. Scale bars = 1 mm (A, B and C, D to scale).
FIGURE 7 in A new genus of Hemerobiidae (Neuroptera) from Baltic amber, with a critical review of the Cenozoic Megalomus - like taxa and remarks on the wing venation variability of the family
FIGURE 7. Proneuronema gradatum gen. et sp. nov., holotype SMF Be 2534 as preserved (dorsal view). Scale bar = 1 mm.
FIGURE 9 in A new genus of Hemerobiidae (Neuroptera) from Baltic amber, with a critical review of the Cenozoic Megalomus - like taxa and remarks on the wing venation variability of the family
FIGURE 9. Proneuronema gradatum gen. et sp. nov., paratype SMF Be 376a as preserved. A, right forewing, fragment of antenna. B, fragment of right hind wing. Scale bars = 1 mm.
FIGURE 12 in A new genus of Hemerobiidae (Neuroptera) from Baltic amber, with a critical review of the Cenozoic Megalomus - like taxa and remarks on the wing venation variability of the family
FIGURE 12. Proneuronema gradatum gen. et sp. nov., wing venation of the specimen No. 1545 (Hoffeins' collection). A, left forewing, slightly distorted. B, left hind wing (both converted to standard right dorsal view). Scale bar = 1 mm (both to scale).
FIGURE 10 in A new genus of Hemerobiidae (Neuroptera) from Baltic amber, with a critical review of the Cenozoic Megalomus - like taxa and remarks on the wing venation variability of the family
FIGURE 10. Proneuronema gradatum gen. et sp. nov., wing venation of the paratype SMF Be 376a. A, right forewing. B, right hind wing. Scale bar = 1 mm (both to scale).
FIGURE 12 in Synonymy of the reduviid (Hemiptera: Heteroptera) genus Torrealbaia (Triatominae) with Amphibolus (Harpactorinae), with notes on Amphibolus venator (Klug, 1830)
FIGURE 12. Amphibolus venator, Coimbatore, Madras State, India, male genitalia. ac, pygophore in a, dorsal, b, ventral and c, lateral view, d, photograph of the aedeagus in ventral view, the insets show sclerotized ornamentations of the endosoma.
FIGURES 1–9 in Synonymy of the reduviid (Hemiptera: Heteroptera) genus Torrealbaia (Triatominae) with Amphibolus (Harpactorinae), with notes on Amphibolus venator (Klug, 1830)
FIGURES 1–9. Amphibolus venator (Harpactorinae), female holotype. 1, head in lateral and 2, dorsal view, 3, 4, antenna, the arrow points to the membrane separating the prescapoid from the scapus, 3, antenna comprising scapus, pedicellus, basiflagellomere, and distiflagellomere, 4, basal portion of the antennal scapus (segment 1) showing the prescapoid, 5, pronotum and scutellum, dorsal view, 6, left fore leg, posterior view, 7, tarsus, fore leg, 8, pretarsus showing the small ventral teeth on the claws, fore leg, 9, hemelytra.
FIGURE 10 in Venation pattern and revision of Orthoptera sensu nov. and sister groups. Phylogeny of Palaeozoic and Mesozoic Orthoptera sensu nov.
FIGURE 10. Narkeminidae sp. indet., specimen MNHNLPR.R55237ab (forewing; print and counterpart): reconstruction (print and counterpart) and photograph (counterpart; under alcohol). (scale bar represents 1 cm).
FIGURE 12 in Venation pattern and revision of Orthoptera sensu nov. and sister groups. Phylogeny of Palaeozoic and Mesozoic Orthoptera sensu nov.
FIGURE 12. Osnogerarus trecwithiensis, cast of the holotype specimen MS G 1080 (counterpart), Museum am Schölerberg (Osnabrück, Germany): photograph of the wing base (light from bottom of the picture, vein relief appears reversed in the photograph orientation). (scale bar represents 2 mm).
FIGURE 4 in Venation pattern and revision of Orthoptera sensu nov. and sister groups. Phylogeny of Palaeozoic and Mesozoic Orthoptera sensu nov.
FIGURE 4. Blattinopsis sp. specimen MNHNLPR.55236 (forewing; print): photograph of the mediocubital area (detail of the 'strut' between M and CuA) (scale bars represents 1 mm).
FIGURE 3 in Venation pattern and revision of Orthoptera sensu nov. and sister groups. Phylogeny of Palaeozoic and Mesozoic Orthoptera sensu nov.
FIGURE 3. Blattinopsis sp., specimen MNHNLPR.55236 (forewing; print): reconstruction and photograph (scale bar represents 1 cm).
FIGURE 9 in Venation pattern and revision of Orthoptera sensu nov. and sister groups. Phylogeny of Palaeozoic and Mesozoic Orthoptera sensu nov.
FIGURE 9.New interpretation of the forewing base of Euthygramma parallelum (drawing and vein concavities after Martynov 1938).
FIGURE 7 in Venation pattern and revision of Orthoptera sensu nov. and sister groups. Phylogeny of Palaeozoic and Mesozoic Orthoptera sensu nov.
FIGURE 7. Stenoneura fayoli, holotype specimen MNHNLPR.51207 (print): photograph (under alcohol) (scale bar represents 1 cm).
FIGURE 17 in Venation pattern and revision of Orthoptera sensu nov. and sister groups. Phylogeny of Palaeozoic and Mesozoic Orthoptera sensu nov.
FIGURE 17.Strict consensus tree of 48 minimal equally parsimonious trees obtained after cladistic analysis. Clades in grey are considered weakly supported by the analysis, after characters state consistency indices.
FIGURE 14 in Venation pattern and revision of Orthoptera sensu nov. and sister groups. Phylogeny of Palaeozoic and Mesozoic Orthoptera sensu nov.
FIGURE 14. Gerarus bruesi, holotype specimen MNHNLPR.51164 (counterpart): photograph of the mediocubital area (detail of common stem M+CuA, distal free part of CuA, and fusion of CuA and CuPa). (scale bar represents 3 mm).
FIGURES 10–13 Fig. 10 in A new Leioproctus with unique wing venation in males (Hymenoptera: Colletidae: Paracolletinae) with comments on unusual wing modifications in bees
FIGURES 10–13 Fig. 10. Inner hind tibial spur of female. Fig. 11. Hemitergite 7 of female. Fig. 12. Hemitergite 8 of female. Fig. 13. Sting shaft and second valvifer of female, the second valvifer is foreshortened from the perspective of this drawing.
FIGURES 4–6 L. idiotropoptera, Fig. 4 in A new Leioproctus with unique wing venation in males (Hymenoptera: Colletidae: Paracolletinae) with comments on unusual wing modifications in bees
FIGURES 4–6 L. idiotropoptera, Fig. 4. Male mandible, outer and dorsal views. Fig. 5. Male foreleg from trochanter to basitarsus, outer view with inner view of tibia and basal view of femoral process. Fig. 6. Male midleg from trochanter to basitarsus, outer view.
FIGURES 1–3 L. idiotropoptera, Fig. 1 in A new Leioproctus with unique wing venation in males (Hymenoptera: Colletidae: Paracolletinae) with comments on unusual wing modifications in bees
FIGURES 1–3 L. idiotropoptera, Fig. 1. Face of male, frontal view. Fig. 2. Face of female, frontal view. Fig. 3. Forewing of male.
FIGURES 7–9 L. idiotropoptera, Fig. 7. S7 in A new Leioproctus with unique wing venation in males (Hymenoptera: Colletidae: Paracolletinae) with comments on unusual wing modifications in bees
FIGURES 7–9 L. idiotropoptera, Fig. 7. S7 of male, dorsal view on left, ventral view on right. Fig. 8. S8 of male, dorsal view on left, ventral view on right. Fig. 9. Genital capsule of male, dorsal view on left, ventral view on right.
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