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17 results for “Tinamou”
Figure 3 in Testing capturing methods for the Yellow-legged Tinamou Crypturellus noctivagus (Wied, 1820) (Aves, Tinamidae) in southern Brazil
Figure 3. Illustrative scheme of the capturing procedures. (A) Linear arrangement of the bell-traps. (B) Triangular arrangement of the bell-traps. Arrangement of the tinamous replica and pyramid fall-traps.
Figure 2 in Testing capturing methods for the Yellow-legged Tinamou Crypturellus noctivagus (Wied, 1820) (Aves, Tinamidae) in southern Brazil
Figure 2. Bell-trap: (A) Plastic hose keeping the trap open. (B) Pyramid fall-trap with automatic trigger and cereal baits. (C) Tinamou ceramic replica. (D) Wooden stakes fixed on the ground, holding the nylon line which lifts the bell-trap.
Data and video from: The mating ritual of a rainforest tinamou, Tinamus major
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Data from: Whole-genomes illuminate the drivers of gene tree discordance and the tempo of tinamou diversification (Aves: Tinamidae)
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FIGURE 13 in A new species and five new records of chewing lice (Insecta: Phthiraptera: Ischnocera) from an isolated population of the solitary tinamou Tinamus solitarius (Aves: Tinamiformes)
FIGURE 13. Map of South America with geographical distributions of the species of Heptagoniodes, and those of their hosts (The dotted line indicates the separation of Tinamus tao subspecies).
FIGURES 9–12 in A new species and five new records of chewing lice (Insecta: Phthiraptera: Ischnocera) from an isolated population of the solitary tinamou Tinamus solitarius (Aves: Tinamiformes)
FIGURES 9–12. Male genitalia (dissected): 9, Kelloggia brevipes Carriker, 1903. 10, Heptagoniodes agonus. 11, Heptagoniodes clayae Guimarães & Lane, 1937. 12, Heptagoniodes guimaraesi. Scale bars = 0.05 mm.
FIGURES 3–8. 3 in A new species and five new records of chewing lice (Insecta: Phthiraptera: Ischnocera) from an isolated population of the solitary tinamou Tinamus solitarius (Aves: Tinamiformes)
FIGURES 3–8. 3, Heptagoniodes clayae dorso-lateral view of male head. 4, Heptagoniodes guimaraesi dorsal view of male head. 5, H. guimaraesi dorsal view of female head. 6, Kelloggia brevipes Carriker, 1903, dorsal view of male head. 7, Heptagoniodes guimaraesi dorso-lateral angle of female pterothorax. 8, Kelloggia brevipes dorso-lateral angle of female pterothorax. Abbreviations: ads, anterior dorsal seta; mts, marginal temporal seta; os, ocular seta; pas, preantennal seta; pos, preocular seta; pms, marginal pronotal setae; pns, postnodal seta; ppss, postspiracular pronotal seta; pts, post-temporal seta; vsms, ventral submarginal seta; s, head sensilla (1–6) (Arrows in Figs 3–4 indicate anterior margin of temples. Arrows in Figs 6 and 8 indicate serration of postero-lateral margin of pterothorax).
FIGURES 1–2 in A new species and five new records of chewing lice (Insecta: Phthiraptera: Ischnocera) from an isolated population of the solitary tinamou Tinamus solitarius (Aves: Tinamiformes)
FIGURES 1–2. Heptagoniodes guimaraesi: 1, male holotype. 2, female paratype (Some thoracic and abdominal setae missing in the original specimens were added on the left side only).
FIGURE 37. Ixodes tinamou n in Description of eight new species of Ixodes Latreille, 1795 (Acari: Ixodidae) and redescription of I. auritulus Neumann, 1904, parasites of birds in the Australasian, Nearctic and Neotropical Regions
FIGURE 37. Ixodes tinamou n. sp., scanning electron micrographs of female (Tinki, Ocongate, Cuzco, Peru, USNMENT 00987216, paratype). A, Spiracular plate (arrows show orientation of spiracular plate: a, anterior; d, dorsal); B, Gnathosoma, dorsal view; C, Gnathosoma, ventral view; D, Gnathosoma, anteroventral view; E, Palpal segment I, lateral view; F, Coxae and trochanters. Scale-bars: A–D, 0.1 mm; E, 0.05 mm; F, 0.2 mm. SEMs by D.A. Apanaskevich.
FIGURE 36. Ixodes tinamou n in Description of eight new species of Ixodes Latreille, 1795 (Acari: Ixodidae) and redescription of I. auritulus Neumann, 1904, parasites of birds in the Australasian, Nearctic and Neotropical Regions
FIGURE 36. Ixodes tinamou n. sp., scanning electron micrographs of female (Tinki, Ocongate, Cuzco, Peru, USNMENT 00987216, paratype). A, Idiosoma, dorsal view; B, Scutum, dorsal view; C, Scutum, dorsolateral view; D, Alloscutal setae in central area of alloscutum; E, Alloscutal setae in area of alloscutum medial to marginal grooves; F, Idiosoma, ventral view. Scale-bars: A, F, 0.5 mm; B, C, 0.2 mm; D, E, 0.05 mm. SEMs by D.A. Apanaskevich
FIGURE 39. Ixodes tinamou n in Description of eight new species of Ixodes Latreille, 1795 (Acari: Ixodidae) and redescription of I. auritulus Neumann, 1904, parasites of birds in the Australasian, Nearctic and Neotropical Regions
FIGURE 39. Ixodes tinamou n. sp., scanning electron micrographs of nymph (Tinki, Ocongate, Cuzco, Peru, USNMENT 00987216, paratype). A, Gnathosoma, dorsal view; B, Gnathosoma, ventral view; C, Coxae and trochanters. Scale-bars: 0.1 mm. SEMs by D.A. Apanaskevich.
FIGURE 38. Ixodes tinamou n in Description of eight new species of Ixodes Latreille, 1795 (Acari: Ixodidae) and redescription of I. auritulus Neumann, 1904, parasites of birds in the Australasian, Nearctic and Neotropical Regions
FIGURE 38. Ixodes tinamou n. sp., scanning electron micrographs of nymph (Tinki, Ocongate, Cuzco, Peru, USNMENT 00987216, paratype). A, Scutum; B, Alloscutum; C, Idiosoma, ventral view; D, Spiracular plate (arrows show orientation of spiracular plate: a, anterior; d, dorsal). Scale-bars: A, 0.1 mm; B, C, 0.2 mm; D, 0.05 mm. SEMs by D.A. Apanaskevich.
Figure 1 in Testing capturing methods for the Yellow-legged Tinamou Crypturellus noctivagus (Wied, 1820) (Aves, Tinamidae) in southern Brazil
Figure 1. Study area, located between São Sepé e Formigueiro, Rio Grande do Sul state, Brazil.
Data from: Vocal behavior of the Undulated Tinamou (Crypturellus undulatus) over an annual cycle in the Brazilian Pantanal: new ecological information
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Data from: Genomic support for a moa-tinamou clade and adaptive morphological convergence in flightless ratites
One of the most startling discoveries in avian molecular phylogenetics is that the volant tinamous are embedded in the flightless ratites, but this topology remains controversial because recent morphological phylogenies place tinamous as the closest relative of a monophyletic ratite clade. Here, we integrate new phylogenomic sequences from 1,448 nuclear DNA loci totalling almost one million base pairs from the extinct little bush moa, Chilean tinamou and emu with available sequences from ostrich, elegant crested tinamou, four neognaths and the green anole. Phylogenetic analysis using standard homogeneous models and heterogeneous models robust to common topological artefacts recovered compelling support for ratite paraphyly with the little bush moa closest to tinamous within ratites. Ratite paraphyly was further corroborated by eight independent CR1 retroposon insertions. Analysis of morphological characters reinterpreted on a 27-gene paleognath topology indicates that many characters are convergent in the ratites, probably as the result of adaptation to a cursorial life style.
Data from: Genomic support for a moa-tinamou clade and adaptive morphological convergence in flightless ratites
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Figure 2. Osteological characters supporting tinamou relationships. A in Phylogenetic interrelationships of living and extinct Tinamidae, volant palaeognathous birds from the New World
Figure 2. Osteological characters supporting tinamou relationships. A, pelvis, relative length of cranial and caudal portions of ilium (character 92), extension of caudal end (character 97), and development of the tuberculum praeacetabulare (character 99); B, tarsometatarsus, opening of hypotarsal sulcus/canal for m. flexor digitorum longus (character 111); C, coracoid, development of processus lateralis (character 76); D, quadratum, projection of prominentia submeatica (character 47); E, shape of cotylae mandibulares (characters 42–44). The numbers denote characters and character states as described in in Appendix 2. Figures not drawn to scale.
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