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493 results for “Flightless”
FIGURE 1. Amyttacta farrelli. A in New species of flightless katydids from South Africa (Orthoptera: Tettigoniidae: Meconematinae)
FIGURE 1. Amyttacta farrelli. A. male head and pronotum, lateral view; B. male subgenital plate; C. apex of male abdomen, dorsal view; D. ditto, lateral view; E. male right cercus, dorsal view; F. male left tegmen; G. stridulatory file; H. ovipositor; I. female subgenital plate; A. marakelensis. J. male right cercus, dorsal view; K. apex of male abdomen, dorsal view; L. ditto, lateral view; M. male left tegmen; N. stridulatory file; O. spines on hind tibia.
FIGURE 4 in New species of flightless katydids from South Africa (Orthoptera: Tettigoniidae: Meconematinae)
FIGURE 4. Oscillograms of male airborne calls. Amyttacta farrelli. A. 5 s fragment of an echeme; B. 0.5 s fragment showing syllables; Paracilacris periclitatus. C. 5 s fragment of echeme-sequence; D. 0.5 s fragment showing a single echeme.
FIGURE 3. Paracilacris mordax. A in New species of flightless katydids from South Africa (Orthoptera: Tettigoniidae: Meconematinae)
FIGURE 3. Paracilacris mordax. A. titillator, dorsal view; P. periclitatus. B. titillator, dorsal view; Amyttacta farrelli. C. male, lateral view; D. female devouring the spermatophylax; Paracilacris periclitatus. E. male, dorso-lateral view (green form); F. female, dorso-lateral view (brown form).
Fig. 2a and b in A Flightless New Species ofGraphopsLeconte, 1884 (Coleoptera: Chrysomelidae: Eumolpinae) from Utah, USA
Fig. 2a and b; aedeagal apex trilobed, with lateral lobes rounded, with median lobe truncate. Variation. Males measure 4.0 –5.5 mm in length and 2.3–3.2 mm in width; females are
Fig. 1. Graphops cavani. a in A Flightless New Species ofGraphopsLeconte, 1884 (Coleoptera: Chrysomelidae: Eumolpinae) from Utah, USA
Fig. 1. Graphops cavani. a) Dorsal habitus, b) Lateral habitus, c) Head, frontal view, d) Prothorax, lateral view
Figure 3 in The flightless marine midge Pontomyia (Diptera: Chironomidae): ecology, distribution, and molecular phylogeny
Figure 3. Maximum likelihood tree from four-gene analysis as performed in GARLI. The three values on each branch represent: (1) maximum likelihood bootstrap support; (2) Bayesian posterior probability (PP); and (3) maximum parsimony bootstrap support. Key: *bootstrap value> 98 or PP of 1; #maximum likelihood and maximum parsimony bootstrap values> 98 and PP of 1.
Figure 2 in The flightless marine midge Pontomyia (Diptera: Chironomidae): ecology, distribution, and molecular phylogeny
Figure 2. Photomicrographs showing the male hypogium of each Pontomyia species. A, Pontomyia natans from type series. B, Pontomyia pacifica P06 from Palau. C, Pontomyia cottoni from type series. D, Pontomyia oceana P25 from Taiwan. The scale bar at the bottom right applies to all panels.
Figure 4 in The flightless marine midge Pontomyia (Diptera: Chironomidae): ecology, distribution, and molecular phylogeny
Figure 4. Species tree obtained from BEST analysis of multilocus data. The value on each branch represents the Bayesian posterior probability.
Figure 1 in The flightless marine midge Pontomyia (Diptera: Chironomidae): ecology, distribution, and molecular phylogeny
Figure 1. Map showing the known collection sites of Pontomyia species:, Pontomyia natans; Δ, Pontomyia pacifica; Z, Pontomyia cottoni; O, Pontomyia oceana;, Atlantic Pontomyia sp. (filled symbols indicate type localities). Note that P. natans co-occur with P. pacifica at the type locality of the latter, whereas P. natans and P. oceana co-occur in southern Taiwan.
FIGURE 16 in A review of the flightless genus Nanotermitodius Howden, 2003 (Coleoptera Scarabaeidae: Aphodiinae: Rhyparini)
FIGURE 16. Map of collecting sites for Nanotermitodius andersoni (white circles), estimated locality of misidentified N. andersoni (gray circles) and N. peckorum (black circles).
FIGURES 7–15 in A review of the flightless genus Nanotermitodius Howden, 2003 (Coleoptera Scarabaeidae: Aphodiinae: Rhyparini)
FIGURES 7–15. Body parts of Nanotermitodius andersoni (unless noted otherwise). 7, Allotype female, showing dimorphic tibial apices and ventrolateral thorax and abdomen. 8, Disarticulated male paratype, showing dimorphic tibial apices and vestigial wing bud (arrow). 9, Head, lateral view, showing reduced eye. 10, Rhyparus costaricensis Cartwright & Woodruff, 1969, head showing a normally developed eye. 11, Holotype head, anterior view. 12, Holotype elytra, in caudal view. 13, Epipharynx, paratype. 14–15, Paratype male genitalia, caudal and lateral view. Scale line for Figures 14–15 = 0.5 mm.
FIGURES 1–6. Nanotermitodius species, habitus images. 1–3 in A review of the flightless genus Nanotermitodius Howden, 2003 (Coleoptera Scarabaeidae: Aphodiinae: Rhyparini)
FIGURES 1–6. Nanotermitodius species, habitus images. 1–3, Nanotermitodius andersoni, holotype male (CMNC). 4–6, Nanotermitodius peckorum, male, from "22 mi. S. of Valle Nacional" (FSCA), habitus images. 1, 4, Dorsal. 2, 5, Ventral. 3, 6, Lateral. Scale line = 1.0 mm.
FIGURES 6–9 in A new flightless species of Phoberus Macleay, 1819 (Coleoptera: Trogidae) from the Eastern Cape Province in South Africa
FIGURES 6–9. Phoberus aculeatus (Harold, 1872) (TMSA). 6, habitus, dorsal view; 7, labels. Phoberus horridus (Fabricius, 1775) (TMSA). 8, habitus, dorsal view; 9, labels.
FIGURES 1–5 in A new flightless species of Phoberus Macleay, 1819 (Coleoptera: Trogidae) from the Eastern Cape Province in South Africa
FIGURES 1–5. Holotype of Phoberus villeti Strümpher, new species (ALBM). 1, habitus, dorsal view; 2, habitus, lateral view; 3, habitus, ventral view; 4, labels; 5, occurrence of Phoberus villeti Strümpher, new species, Eastern Cape Province, South Africa.
FIGURES 8–15 in A new flightless genus of Thaumastodinae from Australia (Coleoptera: Limnichidae)
FIGURES 8–15. Austramastodus apterus sp. nov. 8. Aedeagus, ventral view. 9. Aedeagus, lateral view. 10. Ninth male genital segment, ventral view. 11. Male sternite VIII. 12. Gonocoxites and gonocoxal struts, ventral view. 13. Spiculum ventral. 14. gonocoxites 15. Spiculum ventral, distal plaque.
FIGURE 16 in A new flightless genus of Thaumastodinae from Australia (Coleoptera: Limnichidae)
FIGURE 16. Habitat in the area surrounding the entrance to Cave C-63. The person in the photograph is Dr. William (Bill) Humphreys. (Photograph by R. D. (Darren) Brooks).
FIGURES 1–7 in A new flightless genus of Thaumastodinae from Australia (Coleoptera: Limnichidae)
FIGURES 1–7. Austramastodus apterus sp. nov. 1. Male habitus, dorsal view. 2. Male habitus, ventral view. 3. Male habitus, lateral view. 4. Head and pronotum, fronto-dorsal view. 5. Head, fronto-lateral view and male fore tarsi. 6. Male last abdominal sternite. 7. Female last abdominal sternite. The arrow points to the only two large lateral spiniform setae on the female.
Big, flightless, insular, and dead: characterizing the extinct birds of the Quaternary
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Data from: Phylogenetic relationships of the Early Miocene diving and flightless duck Cayaoa bruneti (Aves, Anatidae) from Patagonia: homology or convergence?
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Data from: High flight costs, but low dive costs, in auks support the biomechanical hypothesis for flightlessness in penguins
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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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.