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173 results for “Gomphocerinae”
Figure 10 from: Vedenina V, Sevastianov N, Kovalyova E (2024) New data on bioacoustics and courtship behaviour in grasshoppers (Orthoptera, Acrididae, Gomphocerinae) from Russia and adjacent countries. ZooKeys 1200: 1-26. https://doi.org/10.3897/zookeys.1200.118422
Figure 10 Oscillograms of the calling song A, B courtship songs C–H and frequency spectra I–K in Megaulacobothrus aethalinus. Courtship songs of two males are shown in C and G. Song recordings are presented at two different speeds. In all oscillograms the two upper lines are recordings of hind leg movements and the lower line is the sound recording. Different elements of the calling song are shown in B of the courtship song – in C. Frequency spectra are shown in kHz for the calling song I for the courtship element 1 J and courtship element 2 K.
Figure 7 from: Vedenina V, Sevastianov N, Kovalyova E (2024) New data on bioacoustics and courtship behaviour in grasshoppers (Orthoptera, Acrididae, Gomphocerinae) from Russia and adjacent countries. ZooKeys 1200: 1-26. https://doi.org/10.3897/zookeys.1200.118422
Figure 7 Oscillograms of the calling song A–D, courtship songs E–H and frequency spectra I, J in Chorthippus macrocerus. Courtship songs are shown in males from Orenburg region E–F and from Georgia G–H. Song recordings are presented at three different speeds. In all oscillograms the two upper lines are recordings of hind leg movements and the lower line is the sound recording. Frequency spectra are shown in kHz for the courtship songs from Orenburg region I and from Georgia J.
Figure 1 from: Vedenina V, Sevastianov N, Kovalyova E (2024) New data on bioacoustics and courtship behaviour in grasshoppers (Orthoptera, Acrididae, Gomphocerinae) from Russia and adjacent countries. ZooKeys 1200: 1-26. https://doi.org/10.3897/zookeys.1200.118422
Figure 1 Map of localities where the specimens were collected for the song recordings. 1–6: Chorthippus macrocerus; 7, 8: Chorthippus pullus; 9: Mesasippus kozhevnikovi; 10–13: Megaulacobothrus aethalinus; 14, 15 C. hammarstroemi; 16: Myrmeleotettix palpalis; 17, 18: Stenobothrus newskii. The localities of the same species are indicated by the same colour.
Figure 9 from: Vedenina V, Sevastianov N, Kovalyova E (2024) New data on bioacoustics and courtship behaviour in grasshoppers (Orthoptera, Acrididae, Gomphocerinae) from Russia and adjacent countries. ZooKeys 1200: 1-26. https://doi.org/10.3897/zookeys.1200.118422
Figure 9 Oscillograms of the calling song A–C rivalry song D–E courtship song F–G and frequency spectra H–J in Chorthippus hammarstroemi. Song recordings are presented at three different speeds. In all oscillograms except F, G the two upper lines are recordings of hind leg movements and the lower line is the sound recording. In F, G the movements of only one leg are shown. Frequency spectra are shown in kHz for the calling song H rivalry song I and courtship song J.
Figure 6 from: Vedenina V, Sevastianov N, Kovalyova E (2024) New data on bioacoustics and courtship behaviour in grasshoppers (Orthoptera, Acrididae, Gomphocerinae) from Russia and adjacent countries. ZooKeys 1200: 1-26. https://doi.org/10.3897/zookeys.1200.118422
Figure 6 Oscillograms of the courtship song A–G and frequency spectra H, I in Chorthippus pullus. Courtship songs are shown in males from Ukraine A, D, F and Russia B, C, E, G. Song recordings are presented at three different speeds. In all oscillograms except B, G the two upper lines are recordings of hind leg movements and the lower line is the sound recording. Courtship song of one-legged male is shown in B, G. Frequency spectra are shown in kHz for the main echeme H and precopulatory sound I.
Figure 5 from: Vedenina V, Sevastianov N, Kovalyova E (2024) New data on bioacoustics and courtship behaviour in grasshoppers (Orthoptera, Acrididae, Gomphocerinae) from Russia and adjacent countries. ZooKeys 1200: 1-26. https://doi.org/10.3897/zookeys.1200.118422
Figure 5 Oscillograms of the calling song A, B courtship song C–H and frequency spectra I, J in Mesasippus kozhevnikovi. Courtship songs of two males are shown in D and G. Song recordings are presented at three different speeds. In all oscillograms the two upper lines are recordings of hind leg movements and the lower line is the sound recording. Frequency spectra are shown in kHz for the short syllables I and the main echeme J of courtship.
Supplementary material 3 from: Vedenina V, Sevastianov N, Kovalyova E (2024) New data on bioacoustics and courtship behaviour in grasshoppers (Orthoptera, Acrididae, Gomphocerinae) from Russia and adjacent countries. ZooKeys 1200: 1-26. https://doi.org/10.3897/zookeys.1200.118422
Courtship in Chorthippus pullus
Supplementary material 4 from: Vedenina V, Sevastianov N, Kovalyova E (2024) New data on bioacoustics and courtship behaviour in grasshoppers (Orthoptera, Acrididae, Gomphocerinae) from Russia and adjacent countries. ZooKeys 1200: 1-26. https://doi.org/10.3897/zookeys.1200.118422
Courtship in Chorthippus macrocerus
Figure 4 from: Vedenina V, Sevastianov N, Kovalyova E (2024) New data on bioacoustics and courtship behaviour in grasshoppers (Orthoptera, Acrididae, Gomphocerinae) from Russia and adjacent countries. ZooKeys 1200: 1-26. https://doi.org/10.3897/zookeys.1200.118422
Figure 4 Oscillograms of the calling song A–C courtship song D–G and frequency spectra H, I in Stenobothrus newskii. Courtship songs of two males are shown in E and F. Song recordings are presented at three different speeds. In oscillograms A–C, F–G the two upper lines are recordings of hind leg movements and the lower line is the sound recording. The drawing shows the wing clapping, which generates the high-amplitude pulses shown in D–G. Frequency spectra are shown in kHz for the main echeme H and wing beats I.
FIGURE 1 in Clarification of taxonomic status of Pseudochorthippus geminus (Mistshenko, 1951) (Orthoptera: Acrididae: Gomphocerinae) based on male calling song analysis
FIGURE 1. Map of collection sites of studied species of Pseudochorthippus.
Figure 1. a-b in Postembrionic development and reproductive parameters of the grasshopper pest Borellia bruneri (Acrididae: Gomphocerinae) under controlled conditions
Figure 1. a-b, nymphs in first stage breeding under controlled conditions, c- nymphs of five stage, d- male and female adults.
Fig 9 from: Silva ACS, Nunes LA, Batista WL, Lhano MG (2018) Morphometric variation among males of Orphulella punctata (De Geer, 1773) (Acrididae: Gomphocerinae) from different biomes in Brazil. Journal of Orthoptera Research 27(2): 163-171. https://doi.org/10.3897/jor.27.21203
Fig 9 Scatter plot of the Principal Components Analysis (PCA) from Orphulellapunctata (De Geer, 1773) lateral head shape in populations collected in the Cerrado, Atlantic Forest, and Pantanal. A. Thin-plate spline of the positive (+) and B. negative (-) axes of PCA 2; C.PCA plot.
Fig 5 from: Silva ACS, Nunes LA, Batista WL, Lhano MG (2018) Morphometric variation among males of Orphulella punctata (De Geer, 1773) (Acrididae: Gomphocerinae) from different biomes in Brazil. Journal of Orthoptera Research 27(2): 163-171. https://doi.org/10.3897/jor.27.21203
Fig 5 Scatter plot of the Principal Components Analysis (PCA) from Orphulellapunctata (De Geer, 1773) femur shape in populations collected in the Cerrado, Atlantic Forest, and Pantanal. A. Thin-plate spline of the positive (+) and B. negative (-) axes of PCA 1; C.PCA plot.
Fig 8 from: Silva ACS, Nunes LA, Batista WL, Lhano MG (2018) Morphometric variation among males of Orphulella punctata (De Geer, 1773) (Acrididae: Gomphocerinae) from different biomes in Brazil. Journal of Orthoptera Research 27(2): 163-171. https://doi.org/10.3897/jor.27.21203
Fig 8 Similarity dendrogram for the head in dorsal view for Orphulellapunctata populations from the Cerrado, Atlantic Forest, and Pantanal by the UPGMA method. The permutation test was carried out with 10,000 replicates and a cophenetic correlation coefficient of 79.2%.
Fig 4 from: Silva ACS, Nunes LA, Batista WL, Lhano MG (2018) Morphometric variation among males of Orphulella punctata (De Geer, 1773) (Acrididae: Gomphocerinae) from different biomes in Brazil. Journal of Orthoptera Research 27(2): 163-171. https://doi.org/10.3897/jor.27.21203
Fig 4 Similarity dendrogram for the pronotum in Orphulellapunctata populations from the Cerrado, Atlantic Forest, and Pantanal by the UPGMA method. The permutation test was carried out with 10,000 replicates and a cophenetic correlation coefficient of 97.1%.
Fig 1 from: Silva ACS, Nunes LA, Batista WL, Lhano MG (2018) Morphometric variation among males of Orphulella punctata (De Geer, 1773) (Acrididae: Gomphocerinae) from different biomes in Brazil. Journal of Orthoptera Research 27(2): 163-171. https://doi.org/10.3897/jor.27.21203
Fig 1 Collection sites for Orphulellapunctata (De Geer, 1773): Cerrado, Atlantic Forest and Pantanal.
Fig 6 from: Silva ACS, Nunes LA, Batista WL, Lhano MG (2018) Morphometric variation among males of Orphulella punctata (De Geer, 1773) (Acrididae: Gomphocerinae) from different biomes in Brazil. Journal of Orthoptera Research 27(2): 163-171. https://doi.org/10.3897/jor.27.21203
Fig 6 Similarity dendrogram for the femur from Orphulellapunctata populations from the Cerrado, Atlantic Forest, and Pantanal by the UPGMA method. The permutation test was carried out with 10,000 replicates and a cophenetic correlation coefficient of 86.83%.
Fig 11 from: Silva ACS, Nunes LA, Batista WL, Lhano MG (2018) Morphometric variation among males of Orphulella punctata (De Geer, 1773) (Acrididae: Gomphocerinae) from different biomes in Brazil. Journal of Orthoptera Research 27(2): 163-171. https://doi.org/10.3897/jor.27.21203
Fig 11 Analysis of the size of the A. pronotum, B. femur, C. head in dorsal view and D. head in lateral view. Similar letters indicate that these biomes are statistically equivalent in relation to the size of the pronotum, femur, dorsal, and lateral view of the head by Tukey's test (p<0.05).
Fig 7 from: Silva ACS, Nunes LA, Batista WL, Lhano MG (2018) Morphometric variation among males of Orphulella punctata (De Geer, 1773) (Acrididae: Gomphocerinae) from different biomes in Brazil. Journal of Orthoptera Research 27(2): 163-171. https://doi.org/10.3897/jor.27.21203
Fig 7 Scatter plot of the Principal Components Analysis (PCA) from Orphulellapunctata (De Geer, 1773) dorsal head shape in populations collected in the Cerrado, Atlantic Forest, and Pantanal. A. Thin-plate spline of the positive (+) and B. negative (-) axes of PCA 2; C.PCA plot.
Fig 3 from: Silva ACS, Nunes LA, Batista WL, Lhano MG (2018) Morphometric variation among males of Orphulella punctata (De Geer, 1773) (Acrididae: Gomphocerinae) from different biomes in Brazil. Journal of Orthoptera Research 27(2): 163-171. https://doi.org/10.3897/jor.27.21203
Fig 3 Scatter plot of the Principal Components Analysis (PCA) of Orphulellapunctata (De Geer, 1773) pronotum shape in populations collected from the Cerrado, Atlantic Forest, and Pantanal. A. Thin-plate spline of the positive (+) and B. negative (-) axes of PCA 2; C.PCA plot.
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
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