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1,864 results for “Cicadidae”
InsectSet32: Dataset for automatic acoustic identification of insects (Orthoptera and Cicadidae)
<p>This dataset contains recordings of 32 sound producing insect species with a total 335 files and a length of 57 minutes. The dataset was compiled for training neural networks to automatically identify insect species while comparing adaptive, waveform-based frontends to conventional mel-spectrogram frontends for audio feature extraction. This work was <a href="https://doi.org/10.1371/journal.pcbi.1011541">published</a> in PLOS Computational Biology and this dataset can be used to replicate the results, as well as other uses. The scripts for audio processing and the machine learning implementations are published on <a href="https://github.com/mariusfaiss/InsectSet32-Adaptive-Representations-of-Sound-for-Automatic-Insect-Recognition">Github</a>.</p> <p>The recordings are split into two datasets. Roughly half of the recordings (147) are of nine species belonging to the order Orthoptera. These recordings stem from a dataset that was originally compiled by <a href="https://orcid.org/0000-0002-8929-2737">Baudewijn Odé</a> (unpublished). </p> <p>The remaining recordings (188) are of 23 species in the family Cicadidae. These recordings were selected from the Global Cicada Sound Collection hosted on <a href="https://bio.acousti.ca/">Bioacoustica</a> (<a href="https://doi.org/10.1093/database/bav054">doi.org/10.1093/database/bav054</a>), including recordings published in <a href="https://doi.org/10.3897/BDJ.3.e5792">doi.org/10.3897/BDJ.3.e5792</a> & <a href="https://doi.org/10.11646/zootaxa.4340.1">doi.org/10.11646/zootaxa.4340.1</a>. Many recordings from this collection included speech annotations in the beginning of the recordings, therefore the last ten seconds of audio were extracted and used in this dataset. </p> <p>All files were manually inspected and files with strong noise interference or with sounds of multiple species were removed. Between species, the number of files ranges from four to 22 files and the length from 40 seconds to almost nine minutes of audio material for a single species. The files range in length from less than one second to several minutes. All original files were available with sample rates of at least 44.1 kHz or higher but were resampled to 44.1 kHz mono WAV files for consistency. The annotation files contain information for each recording, including the file name, species name and identifier, as well as the data subset they were included in for training the neural network (training, test, validation).</p>
InsectSet47 & InsectSet66: Expanded datasets for automatic acoustic identification of insects (Orthoptera and Cicadidae)
<p><strong>Updated full version with training, validation and test sets.</strong></p> <p>Two newly compiled datasets for training neural networks to automatically identify insect species while comparing adaptive, waveform-based frontends to conventional mel-spectrogram frontends for audio feature extraction. This work was <a href="https://doi.org/10.1371/journal.pcbi.1011541">published in PLOS</a> Computational Biology and the machine learning implementations were published on <a href="https://github.com/mariusfaiss/InsectSet47-InsectSet66-Adaptive-Representations-of-Sound-for-Automatic-Insect-Recognition">Github</a>.</p> <p>These datasets expand on the previously published <a href="https://doi.org/10.5281/zenodo.7072196">InsectSet32</a> by including recently published collections of insect recordings by citizen scientists from around the world. Recordings from <a href="https://bio.acousti.ca/">BioAcoustica</a>, <a href="http://xeno-canto.org/">xeno-canto</a> and <a href="http://inaturalist.org/">iNaturalist</a>, as well as private collections by <a href="https://orcid.org/0000-0002-8929-2737">Baudewijn Odé</a> were downloaded and manually inspected. Files with strong noise interference or intense filtering, as well as files containing sounds of multiple species were removed to compile these datasets. The files were standardised to 44.1 kHz mono WAV files ranging in length from less than one second to several minutes. Files containing long periods without insect sounds were edited into multiple smaller files with silent periods no longer than 5 seconds. These files are marked as edits in the annotation file and should be assigned together into train/validation/test sets to prevent data leakage. The annotation files contain information for each recording, including the file name, species name and identifier, as well as the data subset they were included in for training the neural network (training, test, validation).</p> <p>InsectSet47 expands on <a href="https://doi.org/10.5281/zenodo.7072196">InsectSet32</a> with recordings from <a href="http://xeno-canto.org/">xeno-canto</a> and contains 1006 original recordings from 47 species, with at least ten files per species. The total length of InsectSet47 is 22 hours. InsectSet66 further expands on InsectSet47 by adding research-grade audio observations from <a href="http://inaturalist.org/">iNaturalist</a>, with a total of 1554 recordings from 66 species, a total length of over 24 hours and a minimum of ten files per species.</p> <p>The datasets were split into the training, validation and test sets while ensuring a roughly equal distribution of audio files and audio material for every species in all three subsets. This resulted in a 60/20/20 split (train/validation/test) by file number and a 64/19.5/16.5 split by file length.</p>
Fig. 16 in Nouvelles Cigales originaires de Tanzanie (Rhynchota, Auchenorhyncha, Cicadidae)
Fig. 16. – Ugada spp.– 12,Ugada dargein. sp. (1, habitus partiel de l'holotype en vue dorsale; 2, bloc génital vu de dessous). – 35, Habitus comparés des Ugada du groupelimbalis [3,Ugada limbalis (Karsch, 1890); 4,U. kageraensis n. sp.; 5,U. limbimacula (Karsch, 1893)]. – 6,Ugada kageraensisn. sp., bloc génital vu de trois quarts gauche.
Fig. 1723. – 1719,Orapa uwembaiensis n in Nouvelles Cigales originaires de Tanzanie (Rhynchota, Auchenorhyncha, Cicadidae)
Fig. 1723. – 1719,Orapa uwembaiensis n. sp. (17, mâle holotype; 18, femelle allotype; 19, vue rapprochée de la cymbale et du deuxième latérotergite du côté gauche). – 2023, Kageralna dargei n. gen., n. sp., holotype (20, vue dorsale; 21, vue ventrale rapprochée et partielle du côté droit; 22, profil du côté gauche; 23, vue rapprochée du bloc génital, côté droit).
Fig. 1216. – 1214,Afzeliada mikessensis n in Nouvelles Cigales originaires de Tanzanie (Rhynchota, Auchenorhyncha, Cicadidae)
Fig. 1216. – 1214,Afzeliada mikessensis n. sp. (12, mâle holotype; 13, femelle allotype; 14, bloc génital vu de trois quarts côté droit). – 1516, Afzeliada iringana n. sp. (15, mâle holotype en vue dorsale; 16, bloc génital en vue postérieure, côté droit).
Figure 4 in Éthologie sonore et statut acoustique de quelques Cigales thaïlandaises, incluant la description de deux espèces nouvelles (Hemiptera : Auchenorhyncha*, Cicadoidea, Cicadidae)
Figure 4 Pomponia linearis (Walker, 1850). Mâle (en haut) et femelle allotype (en dessous). (Photographies Michel Boulard)
Figures 13 in Éthologie sonore et statut acoustique de quelques Cigales thaïlandaises, incluant la description de deux espèces nouvelles (Hemiptera : Auchenorhyncha*, Cicadoidea, Cicadidae)
Figures 13 à 15 Terpnosia nonusaprilis n. sp. – 13 à 15, Holotype ♂, vues dorsale (13) et sous abdominale (14), fémur antérieur (15). (Dessins Hélène LeRuyet-Tan)
Figures 10 et 11 Tanna ventriroseus n in Éthologie sonore et statut acoustique de quelques Cigales thaïlandaises, incluant la description de deux espèces nouvelles (Hemiptera : Auchenorhyncha*, Cicadoidea, Cicadidae)
Figures 10 et 11 Tanna ventriroseus n. sp. – 10 et 11, Conformation des pièces génitales d'un paratype ♂. (Dessins Hélène LeRuyet-Tan)
Figure 12 Terpnosia abdullah Distant, 1904 in Éthologie sonore et statut acoustique de quelques Cigales thaïlandaises, incluant la description de deux espèces nouvelles (Hemiptera : Auchenorhyncha*, Cicadoidea, Cicadidae)
Figure 12 Terpnosia abdullah Distant, 1904. Mise en évidence de la maculature latérotergale de l'abdomen. (Photographie Michel Boulard)
Figures 5-6 in Éthologie sonore et statut acoustique de quelques Cigales thaïlandaises, incluant la description de deux espèces nouvelles (Hemiptera : Auchenorhyncha*, Cicadoidea, Cicadidae)
Figures 5-6 Pomponia linearis (Walker, 1850). Conformation des pièces génitales mâles vues de profil, puis de l'arrière. (Dessins Hélène LeRuyet-Tan)
Figures 2-3 in Éthologie sonore et statut acoustique de quelques Cigales thaïlandaises, incluant la description de deux espèces nouvelles (Hemiptera : Auchenorhyncha*, Cicadoidea, Cicadidae)
Figures 2-3 Macrosemia tonkiniana (Jacobi, 1905), habitus typique du mâle (2) mise en évidence de la forme des opercules (3).
FIG. 5 in Cicadetta sibillae Hertach & Trilar, 2015, nouvelle espèce de cigale pour la France (Hemiptera, Cicadidae) et premières analyses des sons complexes émis durant la cymbalisation d'appel nuptial
FIG. 5. — Édéages mâles: A, vue dorsale de l'apex du phallus et de ses deux pseudoparamères élargies chez C. cerdaniensis Puissant & Boulard, 2000; B, vue dorsale de l'apex du phallus et de ses deux pseudoparamères effilés et oblongs chez Cicadetta sibillae Hertach & Trilar, 2015; C, vue latérale du phallus et de ses deux pseudoparamères chez C. sibillae. Voir « Matériel et méthodes » pour la définition des abréviations. Échelles: A, B, 0,5 mm; C, 1 mm.
FIG. 2 in Cicadetta sibillae Hertach & Trilar, 2015, nouvelle espèce de cigale pour la France (Hemiptera, Cicadidae) et premières analyses des sons complexes émis durant la cymbalisation d'appel nuptial
FIG. 2. — Cicadetta sibillae Hertach & Trilar, 2015, cymbalisation d'appel nuptial d'un mâle avec mouvements des cymbales asynchrone: A, spectres fréquentiels, spectrogramme et oscillogramme (du haut vers le bas) visualisant la fin d'une phrase de type 2, l'intégralité d'une phrase de type 3 et le début d'une phrase de type 2; B, oscillogramme détaillé de 4 modules pris dans la phrase de type 3; C, spectrogramme détaillé et oscillogramme (du haut vers le bas) d'un module composé de huit syllabes (chiffres romains), chacune de ces syllabes étant composée de quatre pulsations (chiffres arabes) émises par les mouvements asynchrones de chacune des cymbales (1-3, aller-retour de la première cymbale et 2-4, aller-retour de la seconde cymbale). Vallon du Réfréi, commune de Tende, Alpes- Maritimes, France, 27-28°C. Voir « Matériel et méthodes » pour la définition des abréviations et des spectres fréquentiels de couleur gris foncé, noir et gris clair.
FIG. 3 in Cicadetta sibillae Hertach & Trilar, 2015, nouvelle espèce de cigale pour la France (Hemiptera, Cicadidae) et premières analyses des sons complexes émis durant la cymbalisation d'appel nuptial
FIG. 3. — Caractéristiques fréquentielles et temporelles des modules émis par Cicadetta sibillae Hertach & Trilar, 2015: A, spectres fréquentiels et oscillogramme (du haut vers le bas) d'un module d'une phrase de type 2; B, spectres fréquentiels et oscillogramme (du haut vers le bas) d'un module d'une phrase de type 3. Voir « Matériel et méthodes » pour la définition des abréviations et des spectres fréquentiels de couleur gris foncé, noir et gris clair.
Fig. 4. Subpsaltria yangi Chen, 1943 in Review of the cicada genus Paharia Distant (Hemiptera, Cicadidae), with the description of a new species and its allied species
Fig. 4. Subpsaltria yangi Chen, 1943 (♂, exuvia). A. Dorsal view of body. B. Lateral view of body. C. Right fore leg, outer view. D. Spines at the apex of mid tibia. E. Spines at the apex of hind tibia. Abbreviations: apt = apical tooth of tibia; bt = blade of tibia; f = femur; fc = femoral comb; itf = intermediate tooth of femur; pbt = point of blade of tibia; ptf = posterior tooth of femur; t = trochanter; ti = tibia.
Fig. 3 in Review of the cicada genus Paharia Distant (Hemiptera, Cicadidae), with the description of a new species and its allied species
Fig. 3. Paharia putoni (Distant, 1892) (♂, adult), Turkey, Van, Kurubas Geçidi. A. Habitus, dorsal view. B. Habitus, ventral view. C. Head and thorax, dorsal view. D. Head and thorax, ventral view. E. Abdomen, ventral view. F. Pygofer, ventral view. G. Pygofer, lateral view. H. Left fore leg, showing the spines on fore femur.
Fig. 5 in Review of the cicada genus Paharia Distant (Hemiptera, Cicadidae), with the description of a new species and its allied species
Fig. 5. Distribution of the species of Paharia. Red square = Pa. lacteipennis (Walker, 1850); green triangle = Pa. putoni (Distant, 1892); purple circle = Pa. semenovi (Oshanin, 1906); brown pentagon = Pa. zevara (Kusnezov, 1931); yellow hexagon = Pa. insidiosa (Boulard, 1977) comb. nov.; black circle = Pa. oorschoti sp. nov.
Fig. 2 in Review of the cicada genus Paharia Distant (Hemiptera, Cicadidae), with the description of a new species and its allied species
Fig. 2. Paharia oorschoti sp. nov. (♂, exuvia, holotype). A. Dorsal view of body. B. Lateral view of body. C. Right fore leg, outer view. D. Spines at the apex of mid tibia. E. Spines at the apex of hind tibia. Abbreviations: acf = accessory tooth of femur; apt = apical tooth of tibia; bt = blade of tibia; f = femur; fc = femoral comb; itf = intermediate tooth of femur; pbt = point of blade of tibia; ptf = posterior tooth of femur; t = trochanter; ti = tibia.
Fig. 1 in Review of the cicada genus Paharia Distant (Hemiptera, Cicadidae), with the description of a new species and its allied species
Fig. 1. Paharia oorschoti sp. nov. (♂, adult, holotype). A. Habitus, dorsal view. B. Habitus, ventral view. C. Head and thorax, dorsal view. D. Head and thorax, ventral view. E. Abdomen, ventral view. F. Male pygofer, ventral view. G. Male pygofer, lateral view. H. Left fore leg, showing the spines on fore femur.
Figs 10–14 in A new species of the genus Cicadatra from Iran (Hemiptera: Auchenorrhyncha: Cicadidae)
Figs 10–14. Song of Cicadatra barbodi sp. nov. recorded in Zangolvar on 23 July 2009. 10 – waveform of a 4.2 second section; 11 – spectrogram of a 4.2 second section; 12 – a 0.865 second expansion of waveform of the same song; 13 – a 0.865 expansion of the spectrum of the same song; 14 – the peak energy in the audible range of frequency in the song.
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