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39 results for “tegmina”

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FIGURES 26–27 in Revision of the Dysmorphoptilidae with emarginate tegmina (Hemiptera: Auchenorryncha: Cicadomorpha: Prosboloidea) of the Queensland Triassic

FIGURES 26–27. Tennentsia evansi sp. nov.: 26, holotype QM F57827 (mirrored); 27, composite of holotype and QM F57830; pr, protuberance.

opennotspecifiedDec 2015View details →
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FIGURE 3. New dictyopteran tegmina from the Benxi Formation, western Beijing. A, A nearly complete specimen NIGP180001. B in New dictyopteran fossils from the Pennsylvanian of West Beijing, China

FIGURE 3. New dictyopteran tegmina from the Benxi Formation, western Beijing. A, A nearly complete specimen NIGP180001. B, An incomplete specimen, part, NIGP180002a. C, Counterpart, NIGP180002b. D, An incomplete specimen (NIGP180003), probably same species of B and C. E, A fragment, part, NIGP180004a. F, Counterpart (NIGP180004b) of E. G, A fragment, NIGP180005. H, A fragment, NIGP180006. Scale bars = 5 mm in A–D, 2 mm in E–H.

opennotspecifiedApr 2022View details →
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FIGURE 5. Cratomelus armatus female. A. Tegmina. B. Hind wing. C. Terminalia axial view. D. Subgenital plate. E in Studies on chevron crickets: Morphological redescription of Chilean red cricket Cratomelus armatus Blanchard, 1851 (Orthoptera: Anostostomatidae)

FIGURE 5. Cratomelus armatus female. A. Tegmina. B. Hind wing. C. Terminalia axial view. D. Subgenital plate. E. Terminalia lateral view. (The white arrows in figures A and B, show the wing veins modification).

opennotspecifiedJul 2022View details →
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Figure 4 in Tegmina-size variation in a Neotropical cricket with implications on spectral song properties

Figure 4. Thin-plate spline using seven landmarks to depict harp shape variation in Lerneca inalata beripocone along each PC axis. Red landmarks explain most of the tegmen shape variation.

opennotspecifiedApr 2018View details →
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Figure 8 in Tegmina-size variation in a Neotropical cricket with implications on spectral song properties

Figure 8. Analysis of selected calling song syllables of Lerneca inalata beripocone from four Pantanal study sites. Top: oscillograms; middle: frequency analyses based on zero-crossing; bottom: power spectra of selected syllables. S1‒S4: Selected syllables of one echeme (first order assemblage of syllables). (a) SESC (flooded forest edge ‒ FFE); (b) Pouso Alegre (flooded forest 1 – FF1); (c) Pouso Alegre (flooded forest 2 – FF2); (d) Pouso Alegre (flooded forest 3 – FF3).

opennotspecifiedApr 2018View details →
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Figure 7 in Tegmina-size variation in a Neotropical cricket with implications on spectral song properties

Figure 7. Lerneca inalata beripocone: Examples of calling song patterns (oscillograms, frequency components in dB/seconds) from six Pantanal study sites. (a) SESC, flooded forest edge, FFE; (b) Pouso Alegre, flooded forest 1, PA FF1; (c) Pouso Alegre, flooded forest 2, PA FF2; (d) Pouso Alegre, flooded forest 3, PA FF3; (e) Pouso Alegre, non-flooded forest, PA NFF; (f) Pouso Alegre, forest edge, PA FE. BIINORGRLEIN codes refer to individual recordings.

opennotspecifiedApr 2018View details →
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Figure 1 in Tegmina-size variation in a Neotropical cricket with implications on spectral song properties

Figure 1. Lerneca inalata beripocone: Left tegmen, morphology (a) and landmarks (b) used for morphometric analyses. Vein abbreviations: Cu1 = cubit 1, M = media, Sc = subcostal, 1a = first anal, 2a = second anal, No = node, Di = diagonal, Cu2 = cubit 2.

opennotspecifiedApr 2018View details →
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Figure 3. Thin-plate spline using 16 in Tegmina-size variation in a Neotropical cricket with implications on spectral song properties

Figure 3. Thin-plate spline using 16 landmarks to depict left wing shape variation in Lerneca inalata beripocone along each PC axis. Red landmarks explain most of the tegmen shape variation.

opennotspecifiedApr 2018View details →
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Figure 2 in Tegmina-size variation in a Neotropical cricket with implications on spectral song properties

Figure 2. Lerneca inalata beripocone: Oscillogram of a calling song echeme (top, vertical axis shows frequency components in dB, horizontal axis time in seconds) and spectrogram (below, vertical axis indicates frequencies in kHz, horizontal axis time in seconds) of a representative male from Pouso Alegre (site flooded forest 1, FF1). Example: framed syllables (S1–S4) selected for further frequency analyses.

opennotspecifiedApr 2018View details →
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Figure 6 in Tegmina-size variation in a Neotropical cricket with implications on spectral song properties

Figure 6. UPGMA dendrogram based on wing shape with 10,000 bootstrap replicates (left), of the subpopulation of Lerneca inalata beripocone; mean amplitude (MA, right) of frequency of calling song (right) from two locations in the Pantanal of Poconé, MT, Brazil. SESC (FFE = flooded forest edge), PA (FF1, FF2, FF3 = flooded forest; NFF = non-flooded forest; FE1, FE2 = forest edge).

opennotspecifiedApr 2018View details →
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Figure 5 in Tegmina-size variation in a Neotropical cricket with implications on spectral song properties

Figure 5. Thin-plate spline using seven landmarks to depict mirror shape variation in Lerneca inalata beripocone along each PC axis. Red landmarks explain most of the tegmen shape variation.

opennotspecifiedApr 2018View details →
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FIGURES 18–20. Type specimen tegmina. 18 in Revision of the malagassy endemic genus Amberana Distant (Hemiptera, Cercopidae) with description of one new genus

FIGURES 18–20. Type specimen tegmina. 18. "Literna tripunctata Lallemand, 1920". 19. "Amberana tripunctata var completa Lallemand, 1949". 20. "Literna bergevini Lallemand, 1920"

opennotspecifiedDec 2012View details →
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FIGURE 6. Tegmina M in Myrmeleotettix Bolivar (Orthoptera, Gomphocerinae) in Anatolia on the basis of morphological and behavioural characters: data suggest a new species from southern end of the Anatolian refugium

FIGURE 6. Tegmina M. ethicus sp. n. (A—male and B—female) and M. maculatus (C—male and D—female).

opennotspecifiedDec 2011View details →
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FIGURES 9–10. Triassocixius australicus Tillyard, holotype GSQ 267a in Revision of the Dysmorphoptilidae with emarginate tegmina (Hemiptera: Auchenorryncha: Cicadomorpha: Prosboloidea) of the Queensland Triassic

FIGURES 9–10. Triassocixius australicus Tillyard, holotype GSQ 267a (mirrored).

opennotspecifiedDec 2015View details →
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FIGURES 23–25 in Revision of the Dysmorphoptilidae with emarginate tegmina (Hemiptera: Auchenorryncha: Cicadomorpha: Prosboloidea) of the Queensland Triassic

FIGURES 23–25. Tennentsia princeps sp. nov.: 23–24, holotype QM F57824; 25, QM F57825 (mirrored).

opennotspecifiedDec 2015View details →
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FIGURES 13–14 in Revision of the Dysmorphoptilidae with emarginate tegmina (Hemiptera: Auchenorryncha: Cicadomorpha: Prosboloidea) of the Queensland Triassic

FIGURES 13–14. Dysmorphoptiloides elongata Evans, QM F57811; str, area of strigil.

opennotspecifiedDec 2015View details →
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FIGURE 28 in Revision of the Dysmorphoptilidae with emarginate tegmina (Hemiptera: Auchenorryncha: Cicadomorpha: Prosboloidea) of the Queensland Triassic

FIGURE 28. Tennentsia evansi sp. nov., QM F57828 (mirrored), protuberances arrowed.

opennotspecifiedDec 2015View details →
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FIGURES 18–19 in Revision of the Dysmorphoptilidae with emarginate tegmina (Hemiptera: Auchenorryncha: Cicadomorpha: Prosboloidea) of the Queensland Triassic

FIGURES 18–19. Dysmorphoptiloides ellisi sp. nov., holotype QM F57823 (mirrored).

opennotspecifiedDec 2015View details →
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Figure 9 in Tegmina-size variation in a Neotropical cricket with implications on spectral song properties

Figure 9. Lerneca inalata beripocone: Examples of dominant frequency (DF) (left) and syllable duration (right), based on individual calling song data shown in Figure 8. Study sites: (a) SESC, flooded forest edge (FFE); (b) Pouso Alegre, flooded forest 1 (FF1); (c) Pouso Alegre, flooded forest 2 (FF2); (d) Pouso Alegre, flooded forest 3 (FF3).

opennotspecifiedApr 2018View details →

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