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173 results for “Gomphocerinae”
FIGURE 10 in Contributions to the study of the grasshopper (Orthoptera: Acrididae Gomphocerinae) courtship songs from Kazakhstan and adjacent territories
FIGURE 10. Positions of antennae in a male of Gomphocerus sibiricus during courtship, when producing the element 1 (A), when producing the element 3 (B–F). The antennae are swung in such a way as they describe a cone when producing one longer pulse and 3–4 shorter pulses (see Fig. 9 E).
FIGURE 8 in Contributions to the study of the grasshopper (Orthoptera: Acrididae Gomphocerinae) courtship songs from Kazakhstan and adjacent territories
FIGURE 8. Positions of a male of Stenobothrus miramae during the element 3 of courtship. (A) The male hits a female several times with his head; (B) the male slowly raises both hind femora and keeps them over head.
FIGURE 6 in Contributions to the study of the grasshopper (Orthoptera: Acrididae Gomphocerinae) courtship songs from Kazakhstan and adjacent territories
FIGURE 6. Movements of antennae during the element 3 of courtship in Myrmeleotettix pallidus. Figures A–F demonstrate successive stages of the antennae position.
FIGURE 13 in Contributions to the study of the grasshopper (Orthoptera: Acrididae Gomphocerinae) courtship songs from Kazakhstan and adjacent territories
FIGURE 13. Oscillograms and frequency spectrum of the courtship songs of two males of Chorthippus karelini from Almaty region (A) and Aktobe region (B). Song recordings are presented at three different speeds (faster oscillograms of the indicated parts of the songs shown in C–F). 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 courtship song are indicated by numbers 1–5, drawings show different positions of the hind legs and abdomen at the corresponding moments of the song. Frequency spectra shown for the element 3 (G), the element 4 (H), the element 5 (I–J).
FIGURE 3 in Contributions to the study of the grasshopper (Orthoptera: Acrididae Gomphocerinae) courtship songs from Kazakhstan and adjacent territories
FIGURE 3. Oscillograms (A-D) and frequency spectra (E-F) of the courtship song of Omocestus haemorrhoidalis from Orenburg region. Song recordings are presented at three different speeds (faster oscillograms of the indicated parts of the songs shown in B–D). 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 courtship song are indicated by numbers 1–3. Frequency spectra shown for the elements 1 (E) and 2 (F).
FIGURE 4 in Contributions to the study of the grasshopper (Orthoptera: Acrididae Gomphocerinae) courtship songs from Kazakhstan and adjacent territories
FIGURE 4. Oscillograms and frequency spectrum of the courtship songs of two males (A, B) of Omocestus petraeus from Orenburg region. Song recordings are presented at three different speeds (faster oscillograms of the indicated parts of the songs shown in C–F). 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 courtship song are indicated by numbers 1–3. Frequency spectrum (G) shown for element 2.
FIGURE 2 in Contributions to the study of the grasshopper (Orthoptera: Acrididae Gomphocerinae) courtship songs from Kazakhstan and adjacent territories
FIGURE 2. Oscillograms and frequency spectra of the courtship songs of two males (A, B) of Omocestus viridulus from Altai Republic. Song recordings are presented at three different speeds (faster oscillograms of the indicated parts of the songs shown in C–E). 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 courtship song are indicated by numbers 1–4. Frequency spectra shown for the elements 1 (F) and 3 (G).
FIGURE 1 in Contributions to the study of the grasshopper (Orthoptera: Acrididae Gomphocerinae) courtship songs from Kazakhstan and adjacent territories
FIGURE 1. Map of localities where the specimens were collected for the song recordings. Kazakhstan: 1—10 SE of Aktobe, near Aktjubinsk reservoir; 2—Akmola region, ab. 90 km SW of Kokshetau, near Balkashino; 3—Akmola region, ab. 60 km SE km of Nur-Sultan, environs of Vishnevka, near Vjacheslavskoe reservoir, 4—Akmola region, ab. 40 km NW of Ereimentau, Baysary; 5—Pavlodar region, ab. 48 km W of Ekibastuz, ab. 3 km W of Schiderty; 6—Pavlodar region, ab. 44 km SW of Pavlodar, environs of Pogranichnoe; 7—Pavlodar region, between Terenkol' and Beregovoe, near Irtysh river; 8—Pavlodar region, Zhelezinsky district, near Pyatiryzhsk; 9—Pavlodar region, environs of Irtyshsk; 10—Almaty region, ab. 60 km NE of Taldykorgan, near Kapal; 11- Almaty region, between Saryozek and Zharkent, environs of Basshi; 12—Almaty region, ab. 6 km SW of Zharkent; 13—Almaty region, ab. 4 km SE of Kegen, flood-lands of Kegen river; 14—Orenburg region, ab. 10 km W of Novosergievka; 15—ab. 10 km E of Orenburg, near Ural river; 16—Orenburg region, ab. 20 km NW of Orsk, environs of railway station Guberlja; 17—Altai Republic, ab. 26 km S of Shebalino, Semensky pass; 18—Altai Republic, ab. 26 km SE of Ongudai, environs of Kupchegen'.
FIGURE 3 in A new discovery of a long-winged form of Mexican endemic grasshopper Melanotettix dibelonius Bruner, 1904 (Orthoptera: Acrididae: Gomphocerinae) and notes on wing polymorphism and geographic distribution
FIGURE 3. Updated geographic distribution of Melanotettix dibelonius and its two morphotypes identified (red triangle = longwinged form; blue circle = short-winged form). Numbers beside the symbols indicate the locality number. *Asterisk denotes localities from which specimens were measured for the morphological analyses.
FIGURE 2 in A new discovery of a long-winged form of Mexican endemic grasshopper Melanotettix dibelonius Bruner, 1904 (Orthoptera: Acrididae: Gomphocerinae) and notes on wing polymorphism and geographic distribution
FIGURE 2. Images of mounted individuals of Melanotettix dibelonius. A. Long-winged male lateral. B. Short-winged male lateral. C. Long-winged male dorsal. D. Short-winged male dorsal. E. Long-winged female lateral. F. Short-winged female lateral. G. Long-winged female dorsal. H. Short-winged female dorsal.
FIGURE 1 in A new discovery of a long-winged form of Mexican endemic grasshopper Melanotettix dibelonius Bruner, 1904 (Orthoptera: Acrididae: Gomphocerinae) and notes on wing polymorphism and geographic distribution
FIGURE 1. Images of live individuals of Melanotettix dibelonius. A. Long-winged male. B. Short-winged female. C. Longwinged male (parasitized with acari). D. Short-winged male. E. Long-winged female. F. Short-winged male. Photos by SSU, BF & MEP.
FIGURES 14–16. 14 in A Taxonomic Review of the genus Megaulacobothrus Caudell, 1921 (Orthoptera: Acrididae: Gomphocerinae) from South Korea
FIGURES 14–16. 14, Megaulacobothrus aethalinus, phallic complex. 15, Megaulacobothrus jejuensis sp. nov., phallic complex. 16, Megaulacobothrus latipennis, phallic complex.
FIGURE 11–13. 11 in A Taxonomic Review of the genus Megaulacobothrus Caudell, 1921 (Orthoptera: Acrididae: Gomphocerinae) from South Korea
FIGURE 11–13. 11, Megaulacobothrus aethalinus, epiphallus. 12, Megaulacobothrus jejuensis sp. nov., epiphallus. 13, Megaulacobothrus latipennis, epiphallus.
FIGURE 19 in Chorthippus brunneus subgroup (Orthoptera, Gomphocerinae) in Anatolia with description of two new species: data suggest an Anatolian origin for the lineage
FIGURE 19. Results of canonical discriminant function analysis using 3 song parameters (song duration, syllable number and syllable duration) in male calling songs of C. bornhalmi (Anatolian populations), C. relicticus (Karaman), C. antecessor (Adana), C. brunneus (Germany) and C. bornhalmi (Greece).
FIGURE 13 in Chorthippus brunneus subgroup (Orthoptera, Gomphocerinae) in Anatolia with description of two new species: data suggest an Anatolian origin for the lineage
FIGURE 13. Single linkage dendrogram for the male (A) and female (B) of members of the C. brunneus subgroup.
FIGURE 12 in Chorthippus brunneus subgroup (Orthoptera, Gomphocerinae) in Anatolia with description of two new species: data suggest an Anatolian origin for the lineage
FIGURE 12. First two axes of of canonical discriminant function analyses for the 26 morphometric characters measured from C. bornhalmi (Anatolian populations), C. relicticus (Karaman), C. antecessor (Adana), C. brunneus (Germany) and C. bornhalmi (Bulgaria); A—males, B—females.
FIGURE 11 in Chorthippus brunneus subgroup (Orthoptera, Gomphocerinae) in Anatolia with description of two new species: data suggest an Anatolian origin for the lineage
FIGURE 11. Boxplots for the number of stridulatory pegs counted from members of the C. brunneus subgroup (A - male and B - female.
FIGURES 5–7 in Chorthippus brunneus subgroup (Orthoptera, Gomphocerinae) in Anatolia with description of two new species: data suggest an Anatolian origin for the lineage
FIGURES 5–7. Pronotum (A—male and B—female). 5—C. antecessor (Adana); 6—C. relicticus (Karaman); 7— C. bornhalmi (Antalya-Termessos).
FIGURE 2 in Chorthippus brunneus subgroup (Orthoptera, Gomphocerinae) in Anatolia with description of two new species: data suggest an Anatolian origin for the lineage
FIGURE 2. Terminology for two general song types in C. brunneus subgroup (HLM, hind leg movement; S, sound). C. relicticus- total song (A) and one phrase in detail (B); C. bornhalmi- total song (C) and one phrase in detail (D).
FIGURE 1 in Chorthippus brunneus subgroup (Orthoptera, Gomphocerinae) in Anatolia with description of two new species: data suggest an Anatolian origin for the lineage
FIGURE 1. The localities visited to collect Chorthippus members in Anatolia (small circles represent the localities visited, large filled circles represent the records of C. bornhalmi; filled triangle represent the record of C. antecessor sp. n.; large filled quadrangle represent the records of C. relicticus sp. n.).
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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
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.