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12 results for “wing morphometry”
Figs 17–18 in Morphometry Of Fore Wing Venation For Identification Of Net-Winged Insects Of The Ukrainian Carpathians, With A Focus On Chrysopa (Neuroptera, Chrysopidae)
Figs 17–18. Fore wings of species of Chrysopidae: 17 — fore wing of Chrysopa formosa (Brauer, 1850); 18 — fore wing of Chrysopa perla (Linnaeus, 1758).
Fig. 3 in Morphometry Of Fore Wing Venation For Identification Of Net-Winged Insects Of The Ukrainian Carpathians, With A Focus On Chrysopa (Neuroptera, Chrysopidae)
Fig. 3. Fore wing venation: 3a — Myrmeleontidae (Distoleon Banks, 1810); 3b — Ascalaphidae (Libelloides Schaffer, 1763); 3c — Osmylidae (Osmylus Latreille, 1802); 3d — Chrysopidae (Chrysopa Leach, 1815); 3e — Sisyridae (Sisyra Burmeister, 1839); 3f — Mantispidae (Mantispа Illiger in Kugelann, 1798); 3g — Coniopterigidae (Conwentzia Enderlein 1905); 3h — Hemerobiidae (Hemerobius Linnaeus, 1758); R — radius, Rs — radial sector, Rt — radial triangular, dc — distal cell between R and Rs, Sc — subcostal vein; trz — tiny inserted veins. arranged between the terminal branches of longitudinal veins.
Figs 4–7 in Morphometry Of Fore Wing Venation For Identification Of Net-Winged Insects Of The Ukrainian Carpathians, With A Focus On Chrysopa (Neuroptera, Chrysopidae)
Figs 4–7. Fore wing venation of Chrysopidae: 4 — Chrysotropia Navás, 1911; 5 — base of fore wing: 5a — Italochrysa Principi. 1946, 5b — Nineta Navas, 1912, 5c — Chrysopa Leach in Brewster, 1815, 5d — Peyerimhoffina Lacroix, 1920; 6 — base of fore wing: 6a —Pseudomallada Tsukaguchi, 1995, 6b— Chrysoperla Steinmann, 1964, 6c — Cunctochrysa Hölzel, 1970; 7 — fragment of fore wing of Chrysopa Leach, 1815 with setae fringe; M — median vein, im — intramedian cell, m2 — 2nd median cell, m3 — 3rd median cell, r1 — 1st radial cell, r2 — 2nd radial cell, r-m — radial-median vein, Rs — radial sector.
Figs 15–16 in Morphometry Of Fore Wing Venation For Identification Of Net-Winged Insects Of The Ukrainian Carpathians, With A Focus On Chrysopa (Neuroptera, Chrysopidae)
Figs 15–16. Fore wings of species of Chrysopidae: 15 — fore wing of Chrysopa nigricostata (Brauer, 1850); 16 — fore wing of Chrysopa abbreviata (Curtis, 1834).
Figs 10–11 in Morphometry Of Fore Wing Venation For Identification Of Net-Winged Insects Of The Ukrainian Carpathians, With A Focus On Chrysopa (Neuroptera, Chrysopidae)
Figs 10–11. Fore wings of species of Chrysopidae: 10 — fore wing of Chrysopa dorsalis (Burmeister, 1839); 11 — fore wing of Chrysopa hummeli Tjeder, 1936.
Fig. 2 in Morphometry Of Fore Wing Venation For Identification Of Net-Winged Insects Of The Ukrainian Carpathians, With A Focus On Chrysopa (Neuroptera, Chrysopidae)
Fig. 2. Comparative diagram of the indices of the ratio of structures of the fore wing for the species of the genus Chrysopa from the Ukrainian Carpathians: Chrysopa from the Ukrainian Carpathians.
Figs 8–9 in Morphometry Of Fore Wing Venation For Identification Of Net-Winged Insects Of The Ukrainian Carpathians, With A Focus On Chrysopa (Neuroptera, Chrysopidae)
Figs 8–9. Fore wings of species of Chrysopidae: 8 — fore wing of Chrysopa walkeri (McLachlan, 1893); 9 — fore wing of Chrysopa pallens (Rambur, 1838).
Fig. 1 in Morphometry Of Fore Wing Venation For Identification Of Net-Winged Insects Of The Ukrainian Carpathians, With A Focus On Chrysopa (Neuroptera, Chrysopidae)
Fig. 1. General scheme for wing venation in Chrysopidae (legend on the FIgure): Psm — pseudomedian vein, Psc — pseudocubitus, ini — intramedian cell, G1 — gradiformes internal, GE — gradiformes exstemal, cv — cross veins of costal sector, pt — pterostigma.
Figs 12–14 in Morphometry Of Fore Wing Venation For Identification Of Net-Winged Insects Of The Ukrainian Carpathians, With A Focus On Chrysopa (Neuroptera, Chrysopidae)
Figs 12–14. Fore wings of species of Chrysopidae: 12 — fore wing of Chrysopa viridana (Schneider, 1845); 13— fore wing of Chrysopa hungarica Klapalek, 1899; 14 — fore wing of Chrysopa phyllochroma (Wesmael, 1841).
Figure 1 from: Talarico F, Brandmayr P, Giglio A, Massolo A, Zetto Brandmayr T (2011) Morphometry of eyes, antennae and wings in three species of Siagona (Coleoptera, Carabidae). ZooKeys 100: 203-214. https://doi.org/10.3897/zookeys.100.1528
Figure 1 - Measured traits between sexes in the three species: A weighted trochanter length (mm) in Siagona dejeani B head width (mm) in Siagona europaea C weighted trochanter length (mm) in Siagona jenissoni.
Figure 3 from: Talarico F, Brandmayr P, Giglio A, Massolo A, Zetto Brandmayr T (2011) Morphometry of eyes, antennae and wings in three species of Siagona (Coleoptera, Carabidae). ZooKeys 100: 203-214. https://doi.org/10.3897/zookeys.100.1528
Figure 3 - Ommatidial index versus body length in the three Bauer-Kredler groups of carabids and comparison with European species of Siagona (this study). Y-axis: mean number of ommatidia per body length in mm. In order of decreasing ommatidial index, Group 1: Cicindela campestris, Cicindela hybrida, Elaphrus cupreus, Elaphrus riparius, Elaphrus ullrichi, Elaphrus aureus, Notiophilus biguttatus, Asaphidion flavipes, Asaphidion pallipes, Asaphidion caraboides, Bembidion quadrimaculatum. Group 2: Carabus granulatus, Agonum sexpunctatum, Poecilus cupreus, Poecilus versicolor, Carabus auratus. Group 3: Carabus problematicus, Carabus lefebvrei, Carabus coriaceus, Leistus rufomarginatus, Nebria brevicollis, Pterostichus nigrita, Carabus preslii, Abax parallelepipedus, Patrobus atrorufus, Pterostichus burmeisteri, Trechus alpicola.
Figure 2 from: Talarico F, Brandmayr P, Giglio A, Massolo A, Zetto Brandmayr T (2011) Morphometry of eyes, antennae and wings in three species of Siagona (Coleoptera, Carabidae). ZooKeys 100: 203-214. https://doi.org/10.3897/zookeys.100.1528
Figure 2 - Measured traits: A ommatidia density (N/mm2) B weighted ommatidia number C weighted antenna length.
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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.
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DANDI Archive for NWB datasets
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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.