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14 results for “Uropygi”
Data from: Species-specific and microbial variability in the antimicrobial efficacy of uropygial secretions in wild passerines
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Figure 6 in The largest Palaeozoic whip scorpion and the smallest (Arachnida: Uropygi: Thelyphonida); a new species and a new ichnospecies from the Carboniferous of New England, USA
Figure 6. Palaeogeographic map of Carboniferous (c. 310 Mya) showing thelyphonid sites. Red star indicates new locality and new species described in this paper. A, Mazon creek, Illinois, USA; Geralinura carbonaria. B, North Attleboro, Massachusetts, USA; Parilisthelyphonus bryantae, Inmontibusichnus charleshenryturneri. C, Dudley, Staffordshire, England, UK; Proschizomus petrunkevitchi. D, Derbyshire, Lancashire, Staffordshire, England, UK; Geralinura brittanica. E, Domaniale Mine, Limburg, the Netherlands; Parageralinura neerlandica. F, HagenVorhalle, Nordrhein-Westphalia, Germany; Parageralinura naufraga. G, RakovnÍk, Okres RakovnÍk, Czech Republic; Prothelyphonus bohemicus. H, Carnic Alps, Friuli, Italy; Parageralinura marsiglioi. Brown shading = land; blue shading = marine flooding of continents; white shading = ocean basin. Map modified after Kocsis and Scotese (2021).
Figure 5 in The largest Palaeozoic whip scorpion and the smallest (Arachnida: Uropygi: Thelyphonida); a new species and a new ichnospecies from the Carboniferous of New England, USA
Figure 5. Carapace to opisthosoma ratios (C: O) of all eight Carboniferous thelyphonid species [body fossils; does not include full-body impression (trace fossil) Inmontibusichnus charleshenryturneri, see text]. Green boxes represent the opisthosoma (including pygidium but excluding telson) and purple boxes represent the carapace, relative to each other. Measurements only included complete specimens. Averages were taken when data for multiple specimens of a single species were available.
Figure 3 in The largest Palaeozoic whip scorpion and the smallest (Arachnida: Uropygi: Thelyphonida); a new species and a new ichnospecies from the Carboniferous of New England, USA
Figure 3. Map indicating extent of Late Carboniferous sedimentary deposits in the region of interest (grey) with major cities indicated and comprising portions of south-eastern Massachusetts and eastern Rhode Island. Star at approximate location of recovered fossils thelyphonids. Basemap provided by ESRI; geological units merged from USGS state geologic map compilation.
Figure 8 in The largest Palaeozoic whip scorpion and the smallest (Arachnida: Uropygi: Thelyphonida); a new species and a new ichnospecies from the Carboniferous of New England, USA
Figure 8. Tracks associated with the body impression. Left: photo of slab whitened and greyscale inverted to accentuate tracks. Inset is magnified view of best series of wedge-like tracks, some with bifid extensions. Right: same field of view as left photograph with all tracks likely associated with body impression highlighted in red. Inset is sketch after Gallant and Hochberg (2017) SEM image of a thelyphonid tarsus (sans setae) highlighting two major claws and one minor claw (black scale bar in inset = 200 μm).
Figure 4 in The largest Palaeozoic whip scorpion and the smallest (Arachnida: Uropygi: Thelyphonida); a new species and a new ichnospecies from the Carboniferous of New England, USA
Figure 4. The holotype of Parilisthelyphonus bryantae gen. nov., sp. nov.. Part (A; MCZ:IP:198710a) and counterpart (B; MCZ:IP:198710b) representing the dorsal and ventral views respectively and their corresponding line drawings (A1,B1). Image in Figure 4B, 4B1 has been flipped horizontally to match the same image orientation seen in Figure 4A, 4A1. Keys to the anatomical abbreviations used can be found under the Material and methods section.
Figure 2 in The largest Palaeozoic whip scorpion and the smallest (Arachnida: Uropygi: Thelyphonida); a new species and a new ichnospecies from the Carboniferous of New England, USA
Figure 2. Age and relative sizes of all known Palaeozoic thelyphonids (body and trace fossils). A, Parageralinura naufraga. B, Parageralinura neerlandica. C, Inmontibusichnus charleshenryturneri. D, Proschizomus petrunkevitchi. E, Geralinura Britannica. F, Prothelyphonus bohemicus. G, Parilisthelyphonus bryantae. H, Geralinura carbonaria. I, Parageralinura marsiglioi. Age ranges of (G) and (I) represent the complete stratigraphic age range of their respective formations since the exact stratigraphic horizon of the specimens is unknown. Figured specimens are modified from (Tetlie and Dunlop 2008: Fig. 6).
Figure 7 in The largest Palaeozoic whip scorpion and the smallest (Arachnida: Uropygi: Thelyphonida); a new species and a new ichnospecies from the Carboniferous of New England, USA
Figure 7. The holotype of Inmontibusichnus charleshenryturneri igen. nov., isp. nov. (MCZ:IP:198045a,b). A thelyphonid full-body impression preserved as the mould (Fig. 7A; concave epirelief) and cast (Fig. 7B; convex hyporelief) of an epichnial depression representing the ventral views of the tracemaker and their corresponding line drawings (Fig. 7A1,Fig. 7B1). Image in Figure 7B, 7B1 has been flipped horizontally to match the same image orientation seen in Figure 7A,7A1. Keys to the anatomical abbreviations used can be found under the Material and Methods section.
Data from: Uropygial gland volume and malaria infection are related to survival in migratory house martins
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Data from: Preservation of uropygial gland lipids in a 48-million-year-old bird
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Data from: Experimental old nest material predicts hoopoe (Upupa epops) eggshell and uropygial gland microbiota
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Figure 1 in The largest Palaeozoic whip scorpion and the smallest (Arachnida: Uropygi: Thelyphonida); a new species and a new ichnospecies from the Carboniferous of New England, USA
Figure 1. Image of an extant thelyphonid, Mastigoproctus giganteus giganteus Lucas, 1835.
Data from: Uropygial gland size and composition varies according to experimentally modified microbiome in Great tits
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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