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Figure 4 from: Choi J-K, Lee J-W (2020) Four new species of the genus Rodrigama Gauld, 1991 (Hymenoptera, Ichneumonidae, Poemeniinae) from South Korea. Journal of Hymenoptera Research 75: 1-13. https://doi.org/10.3897/jhr.75.46867
Figure 4 R. wooki sp. nov. (holotype). A habitus in lateral view B head in frontal view C Frons and mesoscutum in dorsal view D propodeum E first to third tergites in lateral view F second tergite in dorsal view G first to third tergites in dorsal view H posterior end of metasoma. Scale bars: 1 mm (A, C, E, G–H); 0.5 mm (B, D, F).
Figure 2 from: Choi J-K, Lee J-W (2020) Four new species of the genus Rodrigama Gauld, 1991 (Hymenoptera, Ichneumonidae, Poemeniinae) from South Korea. Journal of Hymenoptera Research 75: 1-13. https://doi.org/10.3897/jhr.75.46867
Figure 2 R. sobaekensis sp. nov. (holotype). A habitus in lateral view B head in frontal view C Frons and mesoscutum in dorsal view D propodeum E first to third tergites in lateral view F second tergite in dorsal view G first to third tergites in dorsal view H posterior end of metasoma. Scale bars: 2 mm (A, E, G); 1 mm (B–D, F, H).
Fig 3 from: Kolnegari M, Naserifard M, Hazrati M, Shelomi M (2020) Squatting (squatter) mantis man: A prehistoric praying mantis petroglyph in Iran. Journal of Orthoptera Research 29(1): 41-44. https://doi.org/10.3897/jor.29.39400
Fig 3 Praying mantids with records in Iran. A. Adult Bolivaria brachyptera Pallas, 1773, with raised and opened forelimbs in a deimatic display. B. Adult Holaptilon brevipugilis Kolnegari, 2018. C.Empusa hedenborgii Stal, 1877, with opened forelimbs. D. Conehead mantis Empusa pennicornis (Pallas, 1773). Photo credit: M. Kolnegari.
Fig 2 from: Kolnegari M, Naserifard M, Hazrati M, Shelomi M (2020) Squatting (squatter) mantis man: A prehistoric praying mantis petroglyph in Iran. Journal of Orthoptera Research 29(1): 41-44. https://doi.org/10.3897/jor.29.39400
Fig 2 Locality of the "squatting mantis man" petroglyph. A. Map of Iran with Markazi Province highlighted and the location of the Teymareh petroglyph site labeled on the insert in red (illustration by M. Kolnegari). B. Sarkubeh Village as seen from the petroglyph site. C. The Teymareh petroglyph locality. Photo credit: M. Kolnegari.
Fig 1 from: Kolnegari M, Naserifard M, Hazrati M, Shelomi M (2020) Squatting (squatter) mantis man: A prehistoric praying mantis petroglyph in Iran. Journal of Orthoptera Research 29(1): 41-44. https://doi.org/10.3897/jor.29.39400
Fig 1 "Squatting mantis man" petroglyph. A. The inspected petroglyph, located in Teymareh Region, Khomein County, Markazi Province, Iran. IFRAO (International Federation of Rock Art Organizations) Standard Scale: 10 cm from end to end. Photo credit: M. Naserifard. B. Black and white drawing of the motif (illustration by M. Kolnegari).
Fig 3 from: Kolnegari M (2020) Mating behavior of the Persian boxer mantid, Holaptilon brevipugilis (Mantodea: Mantidae). Journal of Orthoptera Research 29(1): 35-39. https://doi.org/10.3897/jor.29.37595
Fig 3 Trembling and showing the shiny colored surface of forefemora by a Holaptilon brevipugilis male during a frontal encounter with a female.
Fig 2 from: Kolnegari M (2020) Mating behavior of the Persian boxer mantid, Holaptilon brevipugilis (Mantodea: Mantidae). Journal of Orthoptera Research 29(1): 35-39. https://doi.org/10.3897/jor.29.37595
Fig 2 The sequence of mating behavior of Holaptilon brevipugilis showing the number and the percentage of males at each stage. One frontal encounter and four lateral encounters did not lead to any interaction between males and females, so they were excluded from the dataset.
Fig 4 from: Kolnegari M (2020) Mating behavior of the Persian boxer mantid, Holaptilon brevipugilis (Mantodea: Mantidae). Journal of Orthoptera Research 29(1): 35-39. https://doi.org/10.3897/jor.29.37595
Fig 4 Copulation behavior in Holaptilon brevipugilis.A. Male mounting failure. Male is underneath the female. B. Copulation. Smaller male is on top of the larger female.
Fig 1 from: Kolnegari M (2020) Mating behavior of the Persian boxer mantid, Holaptilon brevipugilis (Mantodea: Mantidae). Journal of Orthoptera Research 29(1): 35-39. https://doi.org/10.3897/jor.29.37595
Fig 1 Orientation of male Holaptilon brevipugilis abdomen in a frontal encounter with a female prior to copulation. A. Plantar flexion and B. Dorsiflexion of the abdomen. The male is in the foreground on the left and the female is to the rear and to the right of the male.
Fig 9 from: Cadena-Castañeda OJ, Silva DSM, Mendes DMM, Pereira MR, Domenico FC, Sperber CF (2020) Review of the tribe Amorphopini (Orthoptera: Tetrigidae: Metrodorinae): Pygmy moss-lichen tetrigids from the Amazon rainforest. Journal of Orthoptera Research 29(1): 45-62. https://doi.org/10.3897/jor.29.33717
Fig 9 Eomorphopus antennatus (male) A. Habitus in lateral view B. Frons; C. Head, lateral lobes of pronotum and tegmina in lateral view; D. Habitus in dorsal view; E. Fore-femur; F. Mid-femur; G. Terminalia in ventral view; and H. In lateral view.
Fig 8 from: Cadena-Castañeda OJ, Silva DSM, Mendes DMM, Pereira MR, Domenico FC, Sperber CF (2020) Review of the tribe Amorphopini (Orthoptera: Tetrigidae: Metrodorinae): Pygmy moss-lichen tetrigids from the Amazon rainforest. Journal of Orthoptera Research 29(1): 45-62. https://doi.org/10.3897/jor.29.33717
Fig 8 Eomorphopus antennatus (female) A. Habitus in lateral view; B. Frons; C. Head, lateral lobes of pronotum and tegmina in lateral view; D. Habitus in dorsal view; E. Fore-femur; F. Mid-femur; G. Terminalia in ventral view; and H. In lateral view.
Fig 4 from: Cadena-Castañeda OJ, Silva DSM, Mendes DMM, Pereira MR, Domenico FC, Sperber CF (2020) Review of the tribe Amorphopini (Orthoptera: Tetrigidae: Metrodorinae): Pygmy moss-lichen tetrigids from the Amazon rainforest. Journal of Orthoptera Research 29(1): 45-62. https://doi.org/10.3897/jor.29.33717
Fig 4 Eomorphopus granulatus (female lectotype) A. Lateral left habitus; B. Lateral right habitus; C. Dorsal view; D. Head details in frontal view; and E. Labels. Scale bars: 5 mm.
Fig 2 from: Cadena-Castañeda OJ, Silva DSM, Mendes DMM, Pereira MR, Domenico FC, Sperber CF (2020) Review of the tribe Amorphopini (Orthoptera: Tetrigidae: Metrodorinae): Pygmy moss-lichen tetrigids from the Amazon rainforest. Journal of Orthoptera Research 29(1): 45-62. https://doi.org/10.3897/jor.29.33717
Fig 2 Amorphopus notabilis (male). A. Habitus in lateral view; B. Frons; C. Head, lateral lobes of pronotum and tegmina in lateral view; D. Habitus in dorsal view; E. Fore-femur; F. Mid-femur; G. Terminalia in ventral view; and H. In lateral view.
Fig 5 from: Cadena-Castañeda OJ, Silva DSM, Mendes DMM, Pereira MR, Domenico FC, Sperber CF (2020) Review of the tribe Amorphopini (Orthoptera: Tetrigidae: Metrodorinae): Pygmy moss-lichen tetrigids from the Amazon rainforest. Journal of Orthoptera Research 29(1): 45-62. https://doi.org/10.3897/jor.29.33717
Fig 5 Eomorphopus granulatus (male paralectotype) A. Lateral left habitus; B. Lateral right habitus; C. Dorsal view; D. Head details in frontal view; and E. Labels. Scale bars: 5 mm.
Fig 1 from: Cadena-Castañeda OJ, Silva DSM, Mendes DMM, Pereira MR, Domenico FC, Sperber CF (2020) Review of the tribe Amorphopini (Orthoptera: Tetrigidae: Metrodorinae): Pygmy moss-lichen tetrigids from the Amazon rainforest. Journal of Orthoptera Research 29(1): 45-62. https://doi.org/10.3897/jor.29.33717
Fig 1 Amorphopus notabilis (female). A. Habitus in lateral view; B. Frons; C. Head, lateral lobes of pronotum and tegmina in lateral view; D. Habitus in dorsal view; E. Fore-femur; F. Mid-femur; G. Terminalia in ventral view; and H. In lateral view.
Fig 6 from: Cadena-Castañeda OJ, Silva DSM, Mendes DMM, Pereira MR, Domenico FC, Sperber CF (2020) Review of the tribe Amorphopini (Orthoptera: Tetrigidae: Metrodorinae): Pygmy moss-lichen tetrigids from the Amazon rainforest. Journal of Orthoptera Research 29(1): 45-62. https://doi.org/10.3897/jor.29.33717
Fig 6 Eomorphopus granulatus (male not a type) A. Habitus in lateral view; B. Frons; C. Head, lateral lobes of pronotum and tegmina in lateral view; D. Habitus in dorsal view; E. Fore-femur; F. Mid-femur; G. Terminalia in ventral view; and H. In lateral view.
Figure 4 from: Li Y, Tang P, Chen X-x (2020) The genus Indabracon van Achterberg (Hymenoptera, Braconidae, Braconinae) in China, with description of four new species. Journal of Hymenoptera Research 76: 39-56. https://doi.org/10.3897/jhr.76.50794
Figure 4 Indabracon discolor sp. nov., ♀, holotype a fore wing b hind wing c mesosoma, lateral view d mesosoma, dorsal view e metasoma, dorsal view f hind leg, lateral view g head, front view h head, dorsal view i head, lateral view j first metasomal tergite, dorsal view k scapus outer side, lateral view l apex of antenna m apex of ovipositor, lateral view.
Figure 6 from: Sharaf MR, Aldawood AS, Mohamed AA, Hita Garcia F (2020) The genus Lepisiota Santschi, 1926 of the Arabian Peninsula with the description of a new species, Lepisiota elbazi sp. nov. from Oman, an updated species identification key, and assessment of zoogeographic affinities. Journal of Hymenoptera Research 76: 127-152. https://doi.org/10.3897/jhr.76.50193
Figure 6 Lepisiota elbazi sp. nov. A body in profile B body in dorsal view C head in full-face view, CASENT0922860, (Michele Esposito), www.AntWeb.org.
Figure 8 from: Li Y, Tang P, Chen X-x (2020) The genus Indabracon van Achterberg (Hymenoptera, Braconidae, Braconinae) in China, with description of four new species. Journal of Hymenoptera Research 76: 39-56. https://doi.org/10.3897/jhr.76.50794
Figure 8 Indabracon semicircularis sp. nov., ♀, holotype a fore wing b hind wing c mesosoma, lateral view d mesosoma, dorsal view e metasoma, dorsal view f hind leg, lateral view g head, front view h head, dorsal view i head, lateral view j first metasomal tergite, dorsal view k scapus outer side, lateral view l apex of antenna m apex of ovipositor, lateral view.
Figure 4 from: Sharaf MR, Aldawood AS, Mohamed AA, Hita Garcia F (2020) The genus Lepisiota Santschi, 1926 of the Arabian Peninsula with the description of a new species, Lepisiota elbazi sp. nov. from Oman, an updated species identification key, and assessment of zoogeographic affinities. Journal of Hymenoptera Research 76: 127-152. https://doi.org/10.3897/jhr.76.50193
Figure 4 A mesosoma of L. omanensis in profile showing propodeal spines, CASENT0922278 (Michele Esposito) B body of L. frauenfeldi in profile propodeal and petiolar spines, CASENT0909884 (Zach Lieberman) C body of L. nigrescens in profile, CASENT0912400 (Will Ericson) D body of L. obtusa in profile showing reduced petiolar spines, CASENT0280477 (Shannon Hartman), www.AntWeb.org.
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
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.