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162 results for “wing morphology”
Data, scripts, and R Notebook for Carneiro et al 2023. Flight performance and wing morphology in the bat Carollia perspicillata: biophysical models and energetics. Integrative Zoology DOI:10.1111/1749-4877.12707
<p>Files provided as supporting information for the paper by Carneiro et al. 2023. Flight performance and wing morphology in the bat <em>Carollia perspicillata</em>: biophysical models and energetics. Integrative Zoology. DOI:10.1111/1749-4877.12707</p> <p>File descriptions</p> <p>ArmTA.txt - Temperature and surface areas for arms of <em>C. perspicillata</em> after flight experiment<br> BodyTA.txt - Temperature and surface areas for body of <em>C. perspicillata</em> after flight experiment<br> HeadTA.txt - Temperature and surface areas for head of <em>C. perspicillata</em> after flight experiment<br> WingTA.txt - Temperature and surface areas for wings (patagium) of <em>C. perspicillata</em> after flight experiment<br> WingMorph.txt - Morphological variables measured in the body and wings of <em>C. perspicillata</em><br> HeatLoss.R - Function to estimate heat loss (Qt)<br> PowFlight.R - Function to estimate minimum power required to fly<br> Script-HeatLoss-FlightPerformance.R - R script with set of analyses performed<br> SupportingInformationFile.docx - R notebook with set of analyses performed, word format<br> SupportingInformationFile.nb.html - R notebook with set of analyses performed, html format<br> SupportingInformationFile.Rmd - R notebook with set of analyses performed (R markdown)</p> <p>For the R scripts (Script-HeatLoss-FlightPerformance.R) and notebook (<br> SupportingInformationFile.Rmd) to work and be compiled, all files need to be copied to the same folder.</p>
Figures 815-826. Hind wings. 815 in Morphology of Baridinae and related groups (Coleoptera, Curculionidae)
Figures 815-826. Hind wings. 815, Embates chaetopus, showing 1A and 1A defined near wing margin 1 2 and developed 3A merging with A; 816, Diorymerus lancifer, showing R3 forming a thin, sclerotized vein; 817, Cyrionyx camelus, showing reduced mst; 818, Solaria curtula, indicating absence of rm and showing developed mst; 819, Palmelampius heinrichi, showing reduced 3A; 820, Pycnotheantis sp., showing developed rm; 821, Telemus sp., showing R3 forming a thin, sclerotized vein, developed 3A merging with A, and 1A and 1A defined near wing margin; 822, Megabaris quadriguttata, showing R3 forming a thin, 1 2 sclerotized vein; 823, Zygobaris sp.; 824, Trachymeropsis palmipes, showing reduced 3A; 825, Cyrtepistomus castaneus, showing reduced pst, reduced mst, and developed 3A merging with A; 826, Cryptorhynchus lapathi, showing developed 3A.
Figures 827-840. Hind wings. 827 in Morphology of Baridinae and related groups (Coleoptera, Curculionidae)
Figures 827-840. Hind wings. 827, Dryophthorus americanus; 828, Bagous transversus; 829, Cholus rana; 830, Cossonus impressifrons; 831, Curculio pardalis; 832, Hylurgops planirostris; 833, Testalthea sp.; 834, Pacomes distortus; 835, Trichodocerus sp.; 836, Coeliodes flavicaudis; 837, Mononychus vulpeculus; 838, Hypurus bertrandi; 839, Trigonocolus curvipes; 840, Mecopus trilineatus.
Figures 841-845. Hind wings. 841 in Morphology of Baridinae and related groups (Coleoptera, Curculionidae)
Figures 841-845. Hind wings. 841, Cylindrocopturus adspersus; 842, Telephae oculata; 843, Balanogastris kolae; 844, Metialma signifera; 845, Cyllophorus fausciatus.
Figures 803-814. Hind wings. 803 in Morphology of Baridinae and related groups (Coleoptera, Curculionidae)
Figures 803-814. Hind wings. 803, Centrinus curvirostris; 804, Optatus palmaris, showing 1A and 1A 1 2 defined near wing margin, developed mst, and R3 forming a white line due to loss of sclerotization; 805, Eutoxus sp., showing developed 3A; 806, Parasaldius sp., showing developed rm and 1A and 1A defined 1 2 near wing margin; 807, Buchananius sulcatus; 808, Haplostethops ellipsoidea, showing reduced mst; 809, Linogeraeus viduatus, showing reduced 3A; 810, Plocamus echidna, showing reduced pst; 811, Plocamus clavisetis; 812, Odontocorynus scutellumalbum; 813, Lipancylus brevirostris, showing 1A extending dorsally 2 and merging with A through a -a, developed rm, and developed 3A; 814, Orchidophilus aterrimus, indi1 2 cating absence of rm.
Fig. 2 in Comparative Aspects Of The Morphogenesis And Morphology Of The Wing Membranes Of Bats (Сhiroptera) And Flying Lemurs (Dermoptera)
Fig. 2. Hand and wing membrane of embryo Cynocephalus variegatus, stage 20. Longitudinal sections. The right forearm. А, D, E, F — x400; B, C — x1000: А — longitudinal (below) and cross-section (from above) of the propatagium skin; B, C — the muscle tubes in the plagiopatagium skin; D — the two row of muscle tubes in the plagiopatagium skin; E, F — the chiropatagium skin. Epidermis (ЕPD), undifferentiated mesenchyme (М), blood vessel and blood capillaries (V and CAP), muscle tubes (MT), muscles (MUS), rudiments of digits I (I) and II (II); IV (IV) and V (V).Stained with Mallory's trichrome.
Fig. 1 in Comparative Aspects Of The Morphogenesis And Morphology Of The Wing Membranes Of Bats (Сhiroptera) And Flying Lemurs (Dermoptera)
Fig. 1. Hand and wing membrane of bats embryos. А, B, C — x400; D — x1000: А — embryo Myotis blythii stage 18. Longitudinal section. The left forelimb bud with metacarpals rudiments: mesenchymal condensations of metacarpal rudiments (Mc), undifferentiated mesenchime (M), epidermis (EPD). Stained with Ehrlich's hematoxylin and eosin; В — embryo Rhinolophus hipposideros stage 20. Cross-section. The wing membrain (uropatagium). The centre of hemopoiesis (G), epidermis (ЕPD), undifferentiated mesenchyme (М), blood vessels (V). Stained with Mallory's trichrome; C — embryo Myotis blythii stage 19. Longitudinal section. The right forearm. Metacarpal rudiments (Mc), digits rudiments (II III, IV, V), epidermis (ЕPD), undifferentiated mesenchyme (М), blood vessels (V). Stained with Ehrlich's hematoxylin and eosin; D — embryo Myotis blythii stage 22. Cross-section of the plagiopatagium skin. The centre of hemopoiesis (G), mesenchyme (М), epidermis (ЕPD). Stained with Ehrlich's hematoxylin and eosin.
Fig. 2 in Phylogenomics and deep convergence in cockroach hind-wing morphology
Fig. 2 Oulopteryx illuminata sp. nov. is demonstrative of a typical species with an apical folded membrane, but having a rare method of concealment at rest (i.e., coiling, a feature shared among Oulopterygidae, Theganopteryx, Prosoplecta, and possibly a few others). Forewing (a, b) and hind-wing (c) morphology to scale with full body (f, g). Folding occurs alone dashed lines. Method of rolling the hind-wing apical field at rest shown (h). Genital morphology (d, e) of male holotype from posterior dorsal views (d) and dorsal view (e). Labels identify genital sclerites using the nomenclature of Klass (1997). See supplementary figures for more details. Wing venation (b, c) nomenclature based on Li et al. (2018) with modification. *Pcu not identified. See Schubnel et al. (2019) for a discussion of Pcu's identity among Blattodea.
Fig. 2 in Paoliida, a Putative Stem-Group of Winged Insects: Morphology of New Taxa from the Upper Carboniferous of Poland
Fig. 2. Line drawings of paoliid insect Zdenekia silesiensis sp. nov., Załęże beds, Mudstone series (Langsettian, Upper Carboniferous), SosnowiecKlimontów, Upper Silesian Coal Basin, Poland (after Kukalová−Peck 1991). A. Fore wing holotype specimen MP ISEA I−F/MP/1488/2ab/08. B. Fore wing paratype specimen MP ISEA I−F/MP/1540/25/09. C. Hind wing specimen MP ISEA I−F/MP/1488/3/08.Vein symbols are abbreviated as follows: ScP, Subcosta posterior; RA/RP, Radius anterior/posterior; MP, Media posterior; CuA/CuP, Cubitus anterior/posterior; AA/AP, Analis anterior/posterior.
Fig. 1. A in Paoliida, a Putative Stem-Group of Winged Insects: Morphology of New Taxa from the Upper Carboniferous of Poland
Fig. 1. A. Geographical situation and geological map of the Upper Silesian Coal Basin with position of insect localities: Horní Suchá (Czech Republic) and Sosnowiec (Poland) indicated by white asterisks (modified after Jureczka et al. 1995). B. Lithostratigraphic division of Pennsylvanian strata of Czech and Polish parts of the Upper Silesian Coal Basin after Dopita et al. (1997) with corresponding stratigraphical levels of both localities indicated by white asterisks. Abbreviations: Bolsov., Bolsovian; Duckman., Duckmantian.
Linked collectors and determiners for: Morphological convergences in Ameles Burmeister and Pseudoyersinia Kirby: Taxonomic implications of wing reduction and flight predisposition in some West-Mediterranean Amelini (Insecta: Mantodea).
Natural history specimen data linked to collectors and determiners held within, "Morphological convergences in Ameles Burmeister and Pseudoyersinia Kirby: Taxonomic implications of wing reduction and flight predisposition in some West-Mediterranean Amelini (Insecta: Mantodea)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/611050b9-15f9-4400-8074-778f071d446d">https://bionomia.net/dataset/611050b9-15f9-4400-8074-778f071d446d</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/611050b9-15f9-4400-8074-778f071d446d">https://gbif.org/dataset/611050b9-15f9-4400-8074-778f071d446d</a>. Formatted as a Frictionless Data package.
Figs. 26-31 in A review of the genus Satonius (Coleoptera: Myxophaga: Torridincolidae): taxonomic revision, larval morphology, notes on wing polymorphism, and phylogenetic implications
Figs. 26-31. Larvae of Satonius Endrödy-Younga, 1997. 26, 28, 30 – S. stysi sp. nov., penultimate instar; 27, 29, 31 – S. kurosawai (Satô, 1982), ultimate instar. 26-27 – abdominal segments VII-X, setae of urogomphi omitted; 28-29 – shape of setae of lateral lobes of abdominal segments I-VIII; 30-31 – right urogomphus, ventral view.
Figs. 20-25 in A review of the genus Satonius (Coleoptera: Myxophaga: Torridincolidae): taxonomic revision, larval morphology, notes on wing polymorphism, and phylogenetic implications
Figs. 20-25. Larva of Satonius stysi sp. nov., penultimate instar. 20 – left mandible, dorsal view; 21 – left mandible, ventral view; 22 – labium, ventral view; 23 – left metathoracic leg, anterior view; 24 – palmate tibiotarsal seta of prothoracic leg; 25 – left metathoracic leg, posterior view.
Figs. 11-19 in A review of the genus Satonius (Coleoptera: Myxophaga: Torridincolidae): taxonomic revision, larval morphology, notes on wing polymorphism, and phylogenetic implications
Figs. 11-19. Larvae of Satonius Endrödy-Younga, 1997. 11-17 – S. stysi sp. nov., penultimate instar; 18-19 – S. kurosawai (Satô, 1982), ultimate instar. 11 – right antenna, dorsal view; 12 – head, dorsal view; 13 – labrum, dorsal view; 14 – labrum, ventral view (epipharynx); 15 – maxilla, ventral view; 16 – maxilla, dorsal view; 17-18 – apical portion of mala; 19 – detail of maxillary palpus and basolateral portion of mala, ventral view.
Fig. 5 in A review of the genus Satonius (Coleoptera: Myxophaga: Torridincolidae): taxonomic revision, larval morphology, notes on wing polymorphism, and phylogenetic implications
Fig. 5. Metathoracic wing of Satonius stysi sp. nov.Abbreviations:AA – anterior anal vein; AP – posterior anal vein; C – costa; Cu – cubitus; CuA – anterior cubitus; MP – posterior media; PC – precosta; r – cross-vein connecting branches of radius; RA – anterior radius; RP – posterior radius; rp-mp – radio-median cross-vein; ScA – anterior subcosta; ScP – posterior subcosta. Subscript numbers refer to the branches of the respective vein. Dashed lines: wing folds.
Figs. 1-2 in A review of the genus Satonius (Coleoptera: Myxophaga: Torridincolidae): taxonomic revision, larval morphology, notes on wing polymorphism, and phylogenetic implications
Figs. 1-2. Satonius stysi sp. nov., general habitus. 1 – imago (length: 2.2 mm); 2 – larva of penultimate instar (length: 1.7 mm).
Fig. 3 in A review of the genus Satonius (Coleoptera: Myxophaga: Torridincolidae): taxonomic revision, larval morphology, notes on wing polymorphism, and phylogenetic implications
Fig. 3. Jade Dragon waterfall (China, Yunnan province), type locality of Satonius stysi sp. nov. Arrows indicate the places at which the specimens were collected.
Fig. 1. Morphological terms and measurement characters for wings. a in A review of the genus Enicospilus Stephens (Ichneumonidae: Ophioninae) from Vietnam, with descriptions of ten new species
Fig. 1. Morphological terms and measurement characters for wings. a. Fore wing (BC = basal cell; DS = discosubmarginal cell; FS = first subdiscal cell; MC = marginal cell; SD = second discal cell). b. Hind wing. c. Central part of fore wing (AI = cd / ab; CI = gf / fh; DI = k / fe; ICI = ab / cb; SDI = fe / ig; SI = l / j; SRI = ce / fe).
FIG. 9. — Nototriadophlebia pritykinae n. gen., n in New light shed on Triadophlebiomorpha wing morphology and systematics (Insecta: Odonata)
FIG. 9. — Nototriadophlebia pritykinae n. gen., n. sp., paratype specimen, BP/2/20986b, left wing (large red arrows indicating the CuP+AA stem): A, B, overview; A, drawing of venation; B, photograph (light-mirrored); C, D, detail of cubito-anal area, location as indicated on B (large red arrows, CuP+AA stem); C, drawing of venation; D, photograph (light-mirrored). Scale bars: A, B, 10 mm; C, D, 2 mm.
FIG. 7. — Nototriadophlebia pritykinae n. gen., n in New light shed on Triadophlebiomorpha wing morphology and systematics (Insecta: Odonata)
FIG. 7. — Nototriadophlebia pritykinae n. gen., n. sp., holotype, specimen BP/2/20950a (preserving the right forewing, isolated, in ventral aspect, and other wings, overlapping, in dorsal aspect), photograph (dry).Scale bar: 10 mm.
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