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Figure 5 from: Hamer MT, Marquis AD, Guénard B (2021) Strumigenys perplexa (Smith, 1876) (Formicidae, Myrmicinae) a new exotic ant to Europe with establishment in Guernsey, Channel Islands. Journal of Hymenoptera Research 83: 101-124. https://doi.org/10.3897/jhr.83.66829
Figure 5 In-situ photo records in which specimens were not collected AStrumigenys perplexa worker carrying prey Entomobrya intermedia (Collembola: Entomobryidae) at Les Hubit de Bas BS. perplexa worker under wood from Camp du Roi. Photos by Andy Marquis.
Figures 22-36 from: Samartsev K, Ku D-S (2021) New records of Braconinae (Hymenoptera, Braconidae) from South Korea. Journal of Hymenoptera Research 83: 21-72. https://doi.org/10.3897/jhr.83.63353
Figures 22-36 Bracon (Bracon) imbricatellus Tobias, 2000 (22–28 holotype, female, ZISP) and B. (B.) longigenis Tobias, 1957 (29, 31, 32, 35, 36 holotype 30, 34 paratype, female, ZISP) 22 habitus, dorsal view 23, 34 head, anterior view 24, 29 head, lateral view 25, 35 first metasomal tergite, dorsal view 26 metasoma, dorsolateral view 27, 33 head (and mesoscutum), dorsal view 28 metasoma, dorsal view 30 head, ventrolateral view 31 habitus, lateral view 32 apex of ovipositor 36 metasoma and hind tarsus, dorsal view. Scale bars: 0.25 mm (32); 0.5 mm (23–30, 34–36); 1 mm (31).
Figure 3 from: Hamer MT, Marquis AD, Guénard B (2021) Strumigenys perplexa (Smith, 1876) (Formicidae, Myrmicinae) a new exotic ant to Europe with establishment in Guernsey, Channel Islands. Journal of Hymenoptera Research 83: 101-124. https://doi.org/10.3897/jhr.83.66829
Figure 3 Strumigenys perplexa worker (ANTWEB1013915) A head view B profile view C dorsal view D mandibles view. Images by Benoit Guénard.
Figures 2-10 from: Samartsev K, Ku D-S (2021) New records of Braconinae (Hymenoptera, Braconidae) from South Korea. Journal of Hymenoptera Research 83: 21-72. https://doi.org/10.3897/jhr.83.63353
Figures 2-10 Atanycolus ivanowi (Kokujev, 1898) (2, 3 lectotype, female, ZISP4, 5 paralectotype of A. signatus Szépligeti, 1901, female, HNHM) and Bracon (Bracon) albion albion Papp, 1999 (6–10 paratype, female, HNHM) 2, 6 habitus, lateral view 3 head, ventrolateral view 4, 7 head, anterior view 5, 10 metasoma, dorsal view 8 head, lateral view 9 hind tarsus. Scale bars: 0.5 mm (7–10); 1 mm (2–6).
Figures A5-A8 from: Samartsev K, Ku D-S (2021) New records of Braconinae (Hymenoptera, Braconidae) from South Korea. Journal of Hymenoptera Research 83: 21-72. https://doi.org/10.3897/jhr.83.63353
Figures A5-A8 Collecting localities of the material on the species new to South Korea. Point numbers correspond with numbers in brackets in text.
Figures 11-21 from: Samartsev K, Ku D-S (2021) New records of Braconinae (Hymenoptera, Braconidae) from South Korea. Journal of Hymenoptera Research 83: 21-72. https://doi.org/10.3897/jhr.83.63353
Figures 11-21 Bracon (Bracon) albion continentalis ssp. nov. (holotype, female, NIBR) 11 habitus, lateral view 12 wings 13 head and mesoscutum, dorsal view 14 head, ventrolateral view 15 head, anterior view 16 head, lateral view 17 mesosoma, lateral view 18 propodeum, dorsal view 19 metasoma, dorsal view 20 hind tarsus and ovipositor 21 first metasomal tergite, dorsal view. Scale bars: 0.5 mm (13–21); 1 mm (11, 12).
Figures A9-A12 from: Samartsev K, Ku D-S (2021) New records of Braconinae (Hymenoptera, Braconidae) from South Korea. Journal of Hymenoptera Research 83: 21-72. https://doi.org/10.3897/jhr.83.63353
Figures A9-A12 Collecting localities of the material on the species new to South Korea. Point numbers correspond with numbers in brackets in text.
Figures A1-A4 from: Samartsev K, Ku D-S (2021) New records of Braconinae (Hymenoptera, Braconidae) from South Korea. Journal of Hymenoptera Research 83: 21-72. https://doi.org/10.3897/jhr.83.63353
Figures A1-A4 Collecting localities of the material on the species new to South Korea. Point numbers correspond with numbers in brackets in text.
Figure 1 from: Samartsev K, Ku D-S (2021) New records of Braconinae (Hymenoptera, Braconidae) from South Korea. Journal of Hymenoptera Research 83: 21-72. https://doi.org/10.3897/jhr.83.63353
Figure 1 Collecting localities of the material on the listed species. Point numbers correspond with numbers in brackets in text.
Figures 105-116 from: Samartsev K, Ku D-S (2021) New records of Braconinae (Hymenoptera, Braconidae) from South Korea. Journal of Hymenoptera Research 83: 21-72. https://doi.org/10.3897/jhr.83.63353
Figures 105-116 Iphiaulax wuhainensis Wang & Chen, 2008 (105–109 female, NIBR) and Iphiaulax impeditor (Kokujev, 1898) (110–116 lectotype, female, ZISP) 105, 110 habitus, lateral view 106, 112 head, ventrolateral view 107, 115 first metasomal tergite, dorsal view 108, 113 head, lateral view 109 metasoma, dorsolateral view 111 head, anterior view 114 head, dorsal view 116 metasoma, dorsal view. Scale bars: 1 mm.
Figure 4 from: Tanaka S (2021) Embryo-to-embryo communication facilitates synchronous hatching in grasshoppers. Journal of Orthoptera Research 30(2): 107-115. https://doi.org/10.3897/jor.30.63405
Figure 4 Hatching intervals of two eggs kept in contact with one another (top panel), separated by ~5 mm (middle panel) with or without a screen,or connected by a piece of wire (bottom panel) at 30°C under continuous illumination in the six indicated grasshopper species (A–F.). Different letters indicate significant differences in mean values at the 5% level by the Steel-Dwass test. Diagrams in panels show how the eggs were arranged in wells.
Figure 5 from: Tanaka S (2021) Embryo-to-embryo communication facilitates synchronous hatching in grasshoppers. Journal of Orthoptera Research 30(2): 107-115. https://doi.org/10.3897/jor.30.63405
Figure 5 Hatching activity of the eggs of Teleogryllus emma kept in a group (A.) and those kept singly (a distance of approximately 5 mm) (B.) at 30°C under continuous illumination. The hatching times for 5 groups of 10 eggs were pooled and calculated by designating the time of the first hatching egg as 1 h. The mean hatching time ± SD (sample size) is given in each panel. s2 indicates the variance. Diagrams on the right show the experimental setup.
Figure 6 from: Tanaka S (2021) Embryo-to-embryo communication facilitates synchronous hatching in grasshoppers. Journal of Orthoptera Research 30(2): 107-115. https://doi.org/10.3897/jor.30.63405
Figure 6 Aggregations of Nomadacris succincta hatchlings at 09:46 on May 25, 2018 on Minami-Daito Island, Japan (Photographed by Masanari Aizawa). This grasshopper aggregates tightly as 1st instars only during the nymphal stage.
Figure 3 from: Tanaka S (2021) Embryo-to-embryo communication facilitates synchronous hatching in grasshoppers. Journal of Orthoptera Research 30(2): 107-115. https://doi.org/10.3897/jor.30.63405
Figure 3 Hatching intervals of two eggs kept in contact with one another (top panel), separated by 3–5 mm (middle panel), or separated by a screen (bottom panel) in the six indicated grasshopper species. Eggs were maintained under continuous illumination and 30°C temperature (A–F.). Different letters indicate significant differences in mean values at the 5% level using the Steel-Dwass test. Diagram on the right shows how the eggs were arranged in wells.
Figure 2 from: Tanaka S (2021) Embryo-to-embryo communication facilitates synchronous hatching in grasshoppers. Journal of Orthoptera Research 30(2): 107-115. https://doi.org/10.3897/jor.30.63405
Figure 2 Relationship between number of eggs in a group and mean hatching times in six grasshopper species under continuous illumination and 30°C temperature. For each species, hatching times were normalized by assigning a value of 5 h to the mean hatching time of the largest group. n (number of eggs in each treatment) is given above each histogram. Different letters indicate significant differences in mean values at the 5% level using the Tukey's multiple test (A–E.) or the t- test (F.). ns indicates no significant difference.
Figure 1 from: Tanaka S (2021) Embryo-to-embryo communication facilitates synchronous hatching in grasshoppers. Journal of Orthoptera Research 30(2): 107-115. https://doi.org/10.3897/jor.30.63405
Figure 1 Hatching activity of eggs kept in a group (A–F.) and those kept singly (G–L.) in a thermocycle of 30 (orange) and 25°C (blue) under continuous illumination in the six indicated grasshopper species. The numbers of eggs that hatched over 2–5 days were pooled and plotted against the time of day. Black arrows indicate the medians. Asterisks indicate a significant difference between the two treatments by the Mann Whitney U-test at the 5% level. The photographs on the right show hatchlings of respective species. Scale bars: 5 mm.
Figure 6 from: Starr CK, Jacobson RS, Krispyn JW, Spiers JA (2021) Caste and wing loading in a social wasp (Hymenoptera, Vespidae, Dolichovespula maculata). In: Proshchalykin MYu, Gokhman VE (Eds) Hymenoptera studies through space and time: A collection of papers dedicated to the 75th anniversary of Arkady S. Lelej. Journal of Hymenoptera Research 84: 381-390. https://doi.org/10.3897/jhr.84.68800
Figure 6 Hind-tibia length as a function of A dry weight and B mesoscutum length in Dolichovespula maculata females.
Figure 5 from: Starr CK, Jacobson RS, Krispyn JW, Spiers JA (2021) Caste and wing loading in a social wasp (Hymenoptera, Vespidae, Dolichovespula maculata). In: Proshchalykin MYu, Gokhman VE (Eds) Hymenoptera studies through space and time: A collection of papers dedicated to the 75th anniversary of Arkady S. Lelej. Journal of Hymenoptera Research 84: 381-390. https://doi.org/10.3897/jhr.84.68800
Figure 5 Forewing length as a function of A dry weight and B mesoscutum length in Dolichovespula maculata females.
Figure 3 from: Starr CK, Jacobson RS, Krispyn JW, Spiers JA (2021) Caste and wing loading in a social wasp (Hymenoptera, Vespidae, Dolichovespula maculata). In: Proshchalykin MYu, Gokhman VE (Eds) Hymenoptera studies through space and time: A collection of papers dedicated to the 75th anniversary of Arkady S. Lelej. Journal of Hymenoptera Research 84: 381-390. https://doi.org/10.3897/jhr.84.68800
Figure 3 Linear measures of limbs in Dolichovespula maculataa forewing length from base of the costal vein to tip of the wing b length of first discal cell c maximum forewing width d length of fore-tibia.
Figure 5 from: Shimizu A, Pitts JP, Yoshimura J, Wahis R (2021) New genus and species of Pompilinae spider wasps from the Oriental Region (Hymenoptera, Pompilidae). In: Proshchalykin MYu, Gokhman VE (Eds) Hymenoptera studies through space and time: A collection of papers dedicated to the 75th anniversary of Arkady S. Lelej. Journal of Hymenoptera Research 84: 339-359. https://doi.org/10.3897/jhr.84.68810
Figure 5 Erythropompilus thailandensis Pitts & Shimizu, sp. nov., holotype, female A head in anterior view B head and pronotum in dorsal view C scutellum, metanotum, metapostnotum, and propodeum in dorsal view D whole body in lateral view E left fore and hind wings F left maxilla in lateral view G labio-maxillary complex in posterior view (arrow, preapical membranous area of prementum) H head and mesosoma in lateral view I mid and hind tibiae in dorsal view. Scale bars: 0.3 mm (F, G); 1 mm (A–E, H, I).
ScienceDex guides
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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.