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276 results for “calling song”
Supplementary material 1 from: ter Hofstede HM, Symes LB, Martinson SJ, Robillard T, Faure P, Madhusudhana S, Page RA (2020) Calling songs of Neotropical katydids (Orthoptera: Tettigoniidae) from Panama. Journal of Orthoptera Research 29(2): 137-201. https://doi.org/10.3897/jor.29.46371
Supplementary material 1 from: ter Hofstede HM, Symes LB, Martinson SJ, Robillard T, Faure P, Madhusudhana S, Page RA (2020) Calling songs of Neotropical katydids (Orthoptera: Tettigoniidae) from Panama. Journal of Orthoptera Research 29(2): 137-201. https://doi.org/10.3897/jor.29.46371
Supplementary material 2 from: ter Hofstede HM, Symes LB, Martinson SJ, Robillard T, Faure P, Madhusudhana S, Page RA (2020) Calling songs of Neotropical katydids (Orthoptera: Tettigoniidae) from Panama. Journal of Orthoptera Research 29(2): 137-201. https://doi.org/10.3897/jor.29.46371
Supplementary material 2 from: ter Hofstede HM, Symes LB, Martinson SJ, Robillard T, Faure P, Madhusudhana S, Page RA (2020) Calling songs of Neotropical katydids (Orthoptera: Tettigoniidae) from Panama. Journal of Orthoptera Research 29(2): 137-201. https://doi.org/10.3897/jor.29.46371
Data from: Divergence in calls but not songs in the orchard oriole complex: Icterus spurius and I. fuertesi
Birdsong has important functions in attracting and competing for mates, and song characteristics are thought to diverge rapidly during the process of speciation. In contrast, other avian vocalizations that may have non-reproductive functions, such as calls, are thought to be more evolutionarily conserved and may diverge more slowly among taxa. This study examines differences in both male song and an acoustically simpler vocalization, the 'jeet' call, between two closely related taxa, Icterus spurius and I. fuertesi. A previous study comparing song syllable type sharing within and between I. spurius and I. fuertesi indicated that their songs do not differ discernibly. Here we measured 18 acoustic characteristics of their songs and found strong evidence supporting this prior finding. In contrast, we measured 17 acoustic characteristics of jeet calls and found evidence of significant divergence between the two taxa in many of these characteristics. Calls in I. fuertesi have a longer duration, a larger frequency bandwidth, a lower minimum frequency, a lower beginning frequency, and greater levels of both frequency and amplitude modulation in comparison to the calls of I. spurius. In addition, I. fuertesi calls contain two distinct parts, while the calls of I. spurius have only one part. Thus, we find evidence of divergence in the calls of the two taxa but not their songs challenging the widespread assumption that complex bird song evolves more rapidly than other types of vocalizations. Understanding divergence in multiple vocalization types as well as other behavioral, morphological, and molecular traits is important to understanding the earliest stages of speciation.
FIGURE 4 in Isophya sicula sp. n. (Orthoptera: Tettigonioidea), a new, morphologically cryptic bush-cricket species from the Eastern Carpathians (Romania) recognized from its peculiar male calling song
FIGURE 4. SEM photos of the male stridulatory file of Isophya sicula sp. n. (A), Isophya posthumoidalis (B), Isophya camptoxypha (C) and stridulatory bristles on the dorsal surface of the inner quartile of right elytrum of an Isophya sicula sp. n. female. Scale is the same for A, B, C, but different in D.
FIGURE 3 in Isophya sicula sp. n. (Orthoptera: Tettigonioidea), a new, morphologically cryptic bush-cricket species from the Eastern Carpathians (Romania) recognized from its peculiar male calling song
FIGURE 3. Drawings illustrating the typical eidonomy of Isophya sicula sp. n. male and female. A, male head, pronotum and elytra from above, B, female head, pronotum and elytra from above, C, male pronotum and elytra in profile, D, male external genitalia, E, ovipositor, F, subgenital plate of female, G, cerci and epiproct of female
FIGURE 2 in Isophya sicula sp. n. (Orthoptera: Tettigonioidea), a new, morphologically cryptic bush-cricket species from the Eastern Carpathians (Romania) recognized from its peculiar male calling song
FIGURE 2. Power spectra of the male calling song of Isophya sicula sp. n. (‒), Isophya camptoxypha(−) and Isophya posthumoidalis(…). (FFT size 1024 points, window function Blackmann-Harris)
FIGURE 6. Male calling song. A in Taxonomy of Anterastes and related genera: a new synonym and a new species of Anterastes
FIGURE 6. Male calling song. A—Irregular echemes in A. burri, B—A group of syllables in A. burri, C—Regular echemes in A. babadaghi, D—A group of syllables in A. babadaghi.
FIGURES 31–36 in A new species of Oecanthus and Oecanthus lineolatus Saussure, 1897 from Southern Brazil: species description, including phallic sclerites, metanotal glands and calling song (Orthoptera: Gryllidae: Oecanthinae)
FIGURES 31–36. Calling songs of Oecanthus pallidus n. sp and Oecanthus lineolatus. 31—spectrogram of Oecanthus pallidus n. sp.; 32—spectrogram of Oecanthus lineolatus; 33—oscillograms of Oecanthus pallidus n. sp., a–chirp beginning with two isolated pulses (arrow), b–amplitude variation in the first pulse (arrow), c–broken chirp (arrow); 34—oscillograms of Oecanthus lineolatus, a–broken chirp (arrow), b–regular train of pulses, c–amplitude variation in the first pulses (arrow), A–chirp first pulse, B–chirp last pulse, C–chirp duration, D–chirp period; 35—regresson lines showing the effect of temperature on pulse rate for both species; 36—relationship between pulse rate and frequency in both species.
FIGURES 21–25. Oecanthus lineolatus genitalia. 21 in A new species of Oecanthus and Oecanthus lineolatus Saussure, 1897 from Southern Brazil: species description, including phallic sclerites, metanotal glands and calling song (Orthoptera: Gryllidae: Oecanthinae)
FIGURES 21–25. Oecanthus lineolatus genitalia. 21—genitalia, diagonal, 22—lateral; 23—phallic sclerites, dorsal; 24—ventral, 25—lateral. Conventions: M-End.Sc—Median endophallic sclerite; L-End.Sc—lateral endophallic sclerite; End.Sc.p—endophallic sclerite posterior lobes; Ect.Sc—ectophallic sclerite; Ect.F—ectophallic fold; Dc—dorsal cavity; MLPs—main lobe of pseudepiphallus; R—rami; ss—spermatophore sac; amp—spermatophore ampulla; st—spermatophore
FIGURES 17–20 in A new species of Oecanthus and Oecanthus lineolatus Saussure, 1897 from Southern Brazil: species description, including phallic sclerites, metanotal glands and calling song (Orthoptera: Gryllidae: Oecanthinae)
FIGURES 17–20. Male subgenital and supra-anal plates. 17—Oecanthus lineolatus supra-anal plate, 19—subgential plate; 18—Oecanthus pallidus n. sp. supra-anal plate, 20—subgential plate.
FIGURES 15–16. Metanotal glands. 15—Oecanthus pallidus n in A new species of Oecanthus and Oecanthus lineolatus Saussure, 1897 from Southern Brazil: species description, including phallic sclerites, metanotal glands and calling song (Orthoptera: Gryllidae: Oecanthinae)
FIGURES 15–16. Metanotal glands. 15—Oecanthus pallidus n. sp.; 16—Oecanthus lineolatus. Conventions: Sc—scutum; St—scutellum; ss—scutoscutellar suture; tb—tuft of bristles; pml—posterior median lobe.
FIGURES 9–14. Legs and tegmina. 9t in A new species of Oecanthus and Oecanthus lineolatus Saussure, 1897 from Southern Brazil: species description, including phallic sclerites, metanotal glands and calling song (Orthoptera: Gryllidae: Oecanthinae)
FIGURES 9–14. Legs and tegmina. 9t—Oecanthus lineolatus tympanum, 10—hind femur, 11a, b, c—outer apical spurs, 12d, e, f, g—inner apical spurs; 13—Oecanthus pallidus n. sp. right tegmen, dorsal; 14—Oecanthus lineolatus right tegmen, dorsal.
FIGURES 5–8. Male head, dorsal. 5, 7—Oecanthus pallidus n in A new species of Oecanthus and Oecanthus lineolatus Saussure, 1897 from Southern Brazil: species description, including phallic sclerites, metanotal glands and calling song (Orthoptera: Gryllidae: Oecanthinae)
FIGURES 5–8. Male head, dorsal. 5, 7—Oecanthus pallidus n. sp.; 6, 8—Oecanthus lineolatus. Arrow: maxillary palpi fifth joint depression.
FIGURES 1–2. Oecanthus pallidus n in A new species of Oecanthus and Oecanthus lineolatus Saussure, 1897 from Southern Brazil: species description, including phallic sclerites, metanotal glands and calling song (Orthoptera: Gryllidae: Oecanthinae)
FIGURES 1–2. Oecanthus pallidus n. sp. 1—holotype male, habitus, dorsal view; 2—female, habitus, dorsal view
FIGURES 43–46 in A new species of Oecanthus and Oecanthus lineolatus Saussure, 1897 from Southern Brazil: species description, including phallic sclerites, metanotal glands and calling song (Orthoptera: Gryllidae: Oecanthinae)
FIGURES 43–46. Habitat of O. pallidus n. sp. and Oecanthus lineolatus. 43—native trees and shrubs bordering tobacco plantation; 44—Tobacco's flowers, arrows indicate hole in the corolla; 45—Oecanthus lineolatus stridulating in the tobacco leaf border, 46—Oecanthus lineolatus stridulating in a chewed oval-shaped hole in the center of the leaf.
FIGURES 26–30. Oecanthus phallic sclerites. 26—Oecanthus pallidus n in A new species of Oecanthus and Oecanthus lineolatus Saussure, 1897 from Southern Brazil: species description, including phallic sclerites, metanotal glands and calling song (Orthoptera: Gryllidae: Oecanthinae)
FIGURES 26–30. Oecanthus phallic sclerites. 26—Oecanthus pallidus n. sp. pseudepiphallus, dorsal; 27—Oecanthus lineolatus pseudepiphallus, dorsal, 28—posterior lobes of the endophallic sclerite, diagonal, 29—endophallic sclerite, dorsal, 30—ectophallic sclerite, dorsal. Conventions: End.Sc.p—posterior lobes of the endophallic sclerite; MLPs—main body of pseudepiphallus; R—rami; Ps.Ap—pseudepiphallic apodemes; arrows—ectophallic sclerite outer branch settled between posterior lobes of endophallic sclerite.
FIGURES 37–42 in A new species of Oecanthus and Oecanthus lineolatus Saussure, 1897 from Southern Brazil: species description, including phallic sclerites, metanotal glands and calling song (Orthoptera: Gryllidae: Oecanthinae)
FIGURES 37–42. Ovipositor, subgenital and supra-anal plates. 37—Oecanthus pallidus n. sp. ovipositor, dorsal, 39—subgenital plate, 40—supra-anal plate; 38—Oecanthus lineolatus ovipositor, dorsal, 41—subgenital plate, 42—supra-anal plate.
FIGURE 4. Calling song spectrograms. A in Two new species of Hygronemobius Hebard, 1913 (Orthoptera, Grylloidea, Nemobiinae) from Brazilian Amazon
FIGURE 4. Calling song spectrograms. A—three chirps of Hygronemobius duckensis sp. nov., the first with 20 pulses and the other ones with 21 pulses; B—nine chirps of Hygronemobius dialeucus sp. nov., first eight with five pulses and the last one with four pulses.
FIGURE 2 in Phlugis ocraceovittata and its ultrasonic calling song (Orthoptera, Tettigoniidae, Phlugidini)
FIGURE 2. Phlugis ocraceovittata male: A. lateral view (abdomen slightly shrunk); B. subgenital plate in lateral, dorso-lateral and dorsal view; C. anterior portion of body, note auditory spiracle with latero-ventrally directed opening; D. stridulatory file and base of left tegmen in ventral view (the little yellow spot is the file); D. anterior portion of body in dorsal view (note long coxal spines).
FIGURE 3 in Phlugis ocraceovittata and its ultrasonic calling song (Orthoptera, Tettigoniidae, Phlugidini)
FIGURE 3. Calling song of Phlugis ocraceovittata: A. one-second fragment of continuous calling; B. one call; C. linear spectrogram; D. the male inside the cage (25°C, 20/12/2015, 14:35, recording M00080).
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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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.