Academic literature on the topic 'Stridulatory file'

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Journal articles on the topic "Stridulatory file"

1

SALVADOR, JEWEL ANNE G., OLGA MACAS NUÑEZA, TONY ROBILLARD, and MING KAI TAN. "A new species of Ducetia (Tettigoniidae, Phaneropterinae) from Mindanao, Philippines based on bioacoustics, stridulatory file morphology and genetic data." Zootaxa 5468, no. 1 (2024): 179–90. http://dx.doi.org/10.11646/zootaxa.5468.1.8.

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The Ducetia japonica species group consists of 11 species widely distributed in Asia and Australia. It includes a single species from the Philippines: Ducetia adspersa Brunner von Wattenwyl, 1878. Previously synonymized under Ducetia japonica (Thunberg, 1815), this species was resurrected for its unique stridulatory file. Based on its distinct stridulatory file morphology, male calling song and cytochrome c oxidase subunit I signature, we discovered and describe here a new species from Mindanao in the south of the Philippines: Ducetia laniae sp. nov. We also describe the calling song of this n
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2

Rebrina, Fran, Marianna Anichini, Klaus Reinhold, and Gerlind U. C. Lehmann. "Allometric scaling in two bushcricket species (Orthoptera: Tettigoniidae) suggests sexual selection on song-generating structures." Biological Journal of the Linnean Society 131, no. 3 (2020): 521–35. http://dx.doi.org/10.1093/biolinnean/blaa122.

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Abstract In acoustically communicating bushcrickets (Orthoptera: Tettigoniidae), most signal properties are influenced by the dimensions of the stridulatory apparatus, which in turn reflects body size and condition of the signaller. Females can assess male quality based on acoustic signals, suggesting that male stridulatory structures may be under sexual selection. We investigated scaling relationships between stridulatory structures, body size and body mass in males of the bushcricket Poecilimon veluchianus veluchianus, in comparison to the congeneric Poecilimon ampliatus. Stridulatory struct
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Chamorro-Rengifo, Juliana, Holger Braun, and Cristiano Lopes-Andrade. "The secret stridulatory file under the right tegmen in katydids (Orthoptera, Ensifera, Tettigonioidea)." Zootaxa 3821, no. 5 (2014): 590–96. https://doi.org/10.11646/zootaxa.3821.5.7.

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Chamorro-Rengifo, Juliana, Braun, Holger, Lopes-Andrade, Cristiano (2014): The secret stridulatory file under the right tegmen in katydids (Orthoptera, Ensifera, Tettigonioidea). Zootaxa 3821 (5): 590-596, DOI: 10.11646/zootaxa.3821.5.7
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4

VEDENINA, VARVARA, DMITRY TISHECHKIN, EVGENIA KOVALYOVA, and NIKITA SEVASTIANOV. "A new species of the subgenus Chorthippus Fieber, 1852 (Orthoptera: Acrididae: Gomphocerinae: Chorthippus) from Kazakhstan and Kyrgyzstan, closely related to C. angulatus Tarbinsky and C. karelini (Uvarov)." Zootaxa 5653, no. 2 (2025): 246–62. https://doi.org/10.11646/zootaxa.5653.2.5.

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A new species Chorthippus kegenicus sp. nov. is described based on the calling and courtship songs and morphology. Morphological characters bring the new species close to C. angulatus Tarbinsky, 1927 and C. karelini (Uvarov, 1910): the morphology of tegmina is similar to that in C. karelini, whereas the morphology of stridulatory file is similar to that in C. angulatus. In the new species and in C. angulatus, we found a homology of stridulatory pegs in two sexes, which is not common within Gomphocerinae. The song analysis allows to reliably distinguish all three species mentioned. At the same
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5

HELLER, KLAUS-GERHARD. "Warm-Up and Stridulation in the Buschcricket, Hexacentrus Unicolor Serville (Orthoptera, Conocephalidae, Listroscelidinae)." Journal of Experimental Biology 126, no. 1 (1986): 97–109. http://dx.doi.org/10.1242/jeb.126.1.97.

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The morphology of the stridulatory organ of the tropical bushcricket Hexacentrus unicolor is described and an investigation is made of stridulatory movements and muscle activities. 1. The song is produced by extremely fast stridulatory movements (320–415 Hz), during which, while closing the wings, a highly specialized file is brought into contact with the plectrum to produce sound. The muscles are activated with the same frequency, i.e. they work synchronously (neurogenic). 2. A few minutes before the stridulation starts, the muscles are activated in a similar rhythm to that pertaining during
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6

Salvador, Jewel Anne G., Olga Macas Nuñeza, Tony Robillard, and Ming Kai Tan. "A new species of Ducetia (Tettigoniidae, Phaneropterinae) from Mindanao, Philippines based on bioacoustics, stridulatory file morphology and genetic data." Zootaxa 5468, no. 1 (2024): 179–90. https://doi.org/10.11646/zootaxa.5468.1.8.

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Salvador, Jewel Anne G., Nuñeza, Olga Macas, Robillard, Tony, Tan, Ming Kai (2024): A new species of Ducetia (Tettigoniidae, Phaneropterinae) from Mindanao, Philippines based on bioacoustics, stridulatory file morphology and genetic data. Zootaxa 5468 (1): 179-190, DOI: 10.11646/zootaxa.5468.1.8, URL: http://dx.doi.org/10.11646/zootaxa.5468.1.8
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7

LIU, CHUN-XIANG, and LE KANG. "A review of the genus Ruidocollaris Liu (Orthoptera: Tettigoniidae), with description of six new species from China." Zootaxa 2664, no. 1 (2010): 36. http://dx.doi.org/10.11646/zootaxa.2664.1.2.

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The validity of Ruidocollaris Liu is re-confirmed based on abundant material from China. A review on Ruidocollaris in the world is given, with a list of nine species. Characters of the stridulatory file on the underside of the male left tegmen, and male stridulatory area on left and right tegmen are provided for each species. Six new species are described, including R. rubescens sp. nov., R. longicaudalis sp. nov., R. apennis sp. nov., R. latilobalis sp. nov., R. ferruginescens sp. nov., and R. parapennis sp. nov.. A key to nine species of the genus Ruidocollaris is provided accompanied by ill
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8

MA, LIBIN, and YALIN ZHANG. "Redescriptions of two incompletely described species of mole cricket genus Gryllotalpa (Grylloidea; Gryllotalpidae; Gryllotalpinae) from China with description of two new species and a key to the known Chinese species." Zootaxa 2733, no. 1 (2011): 41. http://dx.doi.org/10.11646/zootaxa.2733.1.4.

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Gryllotalpa jinxiuensis You et Li, 1990 and Gryllotalpa henana Cai et Niu, 1998, which were incompletely described, are redescribed and illustrated here based on a fuller character set of tegmen veins, stridulatory file and genitalia. Two new species of Gryllotalpa from Henan and Zhejiang, China are also described.
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MENDES, DIEGO MATHEUS DE MELLO, JOMARA CAVALCANTE DE OLIVEIRA, RAFAEL SOBRAL, and GUILHERME ALVES MARQUES. "Description of the female and new characteristics of the male of Phlugis gracila Nickle, 2003 (Orthoptera: Tettigoniidae: Meconematinae) with new behavioral data." Zootaxa 4311, no. 4 (2017): 551. http://dx.doi.org/10.11646/zootaxa.4311.4.7.

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The description of the female of Phlugis gracila and the addition of new characters to the original male description are provided. The description of the male stridulatory file and genitalic morphology is noted for the first time. This is the first record for the species in Brazil (Amazonas) and its natural history is noted.
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Desutter-Grandcolas, L. "Broad-frequency modulation in cricket (Orthoptera, Grylloidea) calling songs: two convergent cases and a functional hypothesis." Canadian Journal of Zoology 76, no. 12 (1998): 2148–63. http://dx.doi.org/10.1139/z98-152.

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Broad-frequency modulations in the calling songs of two cricket species (Eneoptera guyanensis and Lerneca fuscipennis) are documented. Such modulations were considered improbable in cricket songs, owing to the functioning mode of the cricket stridulum. Some species were known to emit sounds at frequencies that differed according to ambient temperature (thermometer crickets (Oecanthus spp.) among others), and small frequency modulations usually occur in the calling songs of many species at the beginning and at the end of each acoustic pulse. This is the first time, however, that broad-frequency
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More sources

Reports on the topic "Stridulatory file"

1

Ander, Kjell. An abdominal stridulation organ in Cyphoderris (Prophalangopsidae) and concerning the systematic classification of the Ensifera (Saltatoria). MacEwan University Library, 2021. http://dx.doi.org/10.31542/r.gm:2687.

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Ensiferan insects (crickets, katydids, grigs and allies) are well known for rubbing parts of their cuticle together to produce sound: a process called stridulation. In this article Swedish entomologist Kjell Ander describes a novel (at the time) stridulatory apparatus in the great grig, Cyphoderris monstrosa (Prophalangopsidae), a relict ensiferan found in the mountainous regions of western North America. Ander used preserved specimens to predict the sound-producing function of a pair of abdominal file-scraper apparatuses, although he was never able to directly test his proposed mechanism nor
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2

Ander, Kjell. An abdominal stridulation organ in Cyphoderris (Prophalangopsidae) and concerning the systematic classification of the Ensifera (Saltatoria). MacEwan University Library, 2021. http://dx.doi.org/10.31542/r.gm:2687.

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Abstract:
Ensiferan insects (crickets, katydids, grigs and allies) are well known for rubbing parts of their cuticle together to produce sound: a process called stridulation. In this article Swedish entomologist Kjell Ander describes a novel (at the time) stridulatory apparatus in the great grig, Cyphoderris monstrosa (Prophalangopsidae), a relict ensiferan found in the mountainous regions of western North America. Ander used preserved specimens to predict the sound-producing function of a pair of abdominal file-scraper apparatuses, although he was never able to directly test his proposed mechanism nor
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