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Figure 2 from: Fernandez-Triana J, Beaudin M, van Achterberg K, Agbodzavu MK, Othim STO, Nyamu FW, Fiaboe KKM (2017) DNA barcodes, expanded distribution, and redescription of Apanteles hemara Nixon, 1965 (Hymenoptera, Braconidae, Microgastrinae), a potential biocontrol species against amaranth leaf-webbers in Africa. Journal of Hymenoptera Research 58: 1-15. https://doi.org/10.3897/jhr.58.13361
Figure 2 - Details of the Barcode Index Number Registry for Apanteles hemara, data from BOLD (http://v4.boldsystems.org/).
Figure 3 from: Báthori F, Rádai Z, Tartally A (2017) The effect of Rickia wasmannii (Ascomycota, Laboulbeniales) on the aggression and boldness of Myrmica scabrinodis (Hymenoptera, Formicidae). Journal of Hymenoptera Research 58: 41-52. https://doi.org/10.3897/jhr.58.13253
Figure 3 - Time latency until leaving shelter in case of uninfected (N=215) and infected (N=215) workers.
Figure 2 from: Báthori F, Rádai Z, Tartally A (2017) The effect of Rickia wasmannii (Ascomycota, Laboulbeniales) on the aggression and boldness of Myrmica scabrinodis (Hymenoptera, Formicidae). Journal of Hymenoptera Research 58: 41-52. https://doi.org/10.3897/jhr.58.13253
Figure 2 - Tubes used for a boldness and b aggression tests. Arrow indicates the flap which was removed at the beginning of the test.
Figure 4 from: Báthori F, Rádai Z, Tartally A (2017) The effect of Rickia wasmannii (Ascomycota, Laboulbeniales) on the aggression and boldness of Myrmica scabrinodis (Hymenoptera, Formicidae). Journal of Hymenoptera Research 58: 41-52. https://doi.org/10.3897/jhr.58.13253
Figure 4 - Probability if initiating aggressive behaviour in cases of uninfected (N=119) and infected (N=119) workers.
Figure 2 from: Becerra-Chiron IM, Moya-Raygoza G, Muñoz-Urias A (2017) Host-Dryinidae (Hymenoptera) interactions on edge grasses of maize agroecosystem throughout winter in Mexico. Journal of Hymenoptera Research 57: 155-166. https://doi.org/10.3897/jhr.57.12990
Figure 2 - Quantitative food web of parasitoid-host interaction found on the edges of maize agroecosystem in the winter seasons of 2014 and 2015. Top names are the parasitoid species and bottom names are the host species.
Figure 1 from: Becerra-Chiron IM, Moya-Raygoza G, Muñoz-Urias A (2017) Host-Dryinidae (Hymenoptera) interactions on edge grasses of maize agroecosystem throughout winter in Mexico. Journal of Hymenoptera Research 57: 155-166. https://doi.org/10.3897/jhr.57.12990
Figure 1 - Total of parasitoid-host interactions found on the edges of maize agroecosystem in the winter seasons of 2014 and 2015. Name in parenthesis show the name of the host tribe.
Figures 8-11 from: Khalaim AI, Ruíz-Cancino E (2017) Ichneumonidae (Hymenoptera) associated with xyelid sawflies (Hymenoptera, Xyelidae) in Mexico. Journal of Hymenoptera Research 58: 17-27. https://doi.org/10.3897/jhr.58.12919
Figures 8-11 - Idiogramma elbakyanae sp. n., holotype female 8 habitus (without antennae and wings), lateral view 9 head, antero-ventral view 10 head, dorsal view 11 head, dorso-lateral view.
Figures 32-37 from: Huber JT (2017) Eustochomorpha Girault, Neotriadomerus gen. n., and Proarescon gen. n. (Hymenoptera, Mymaridae), early extant lineages in evolution of the family. Journal of Hymenoptera Research 57: 1-87. https://doi.org/10.3897/jhr.57.12892
Figures 32-37 - Neotriadomerus spp. 32 N. gloriosus female head, anterior 33 N. darlingi male head + pronotum, dorsal 34 N. gloriosus lower face + mouthparts, anterior 35 N. gloriosus maxillae + labium, anterior 36 N. longissimus head, scape and mandibles, dorsoanterolateral 37 N. longissimus radicle, anterolateral (and showing 3-way junction of transverse, supraorbital and preorbital trabeculae). Scale bar for 32, 33, 36 = 100 μm; 34 = 50 μm; 35, 37 = 20 μm.
Figures 38-43 from: Huber JT (2017) Eustochomorpha Girault, Neotriadomerus gen. n., and Proarescon gen. n. (Hymenoptera, Mymaridae), early extant lineages in evolution of the family. Journal of Hymenoptera Research 57: 1-87. https://doi.org/10.3897/jhr.57.12892
Figures 38-43 - Neotriadomerus spp. 38 N. longissimus female scape–base of fl2, lateral 39 N. sp. female fl8 + clava, lateral 40 N. darlingi male apex of pedicel–base of fl2, lateral 41 N. darlingi male fl11–fl13, lateral 42 N. darlingi male fl11, lateral 43 N. darlingi male apex of fl11, lateral. Scale bar for 38 = 100 μm; 39, 41 = 50 μm; 40, 42, 43 = 20 μm.
Figures 184-187 from: Huber JT (2017) Eustochomorpha Girault, Neotriadomerus gen. n., and Proarescon gen. n. (Hymenoptera, Mymaridae), early extant lineages in evolution of the family. Journal of Hymenoptera Research 57: 1-87. https://doi.org/10.3897/jhr.57.12892
Figures 184-187 - Borneomymar madagascar, male. 184 head, dorsal 185 antenna, dorsal, twisted laterally after fl4 186 metasoma (gt7 missing) 187 genitalia, dorsal. Scale bar for 184, 187 = 100 μm; 185, 186 = 200 μm.
Figures 181-183 from: Huber JT (2017) Eustochomorpha Girault, Neotriadomerus gen. n., and Proarescon gen. n. (Hymenoptera, Mymaridae), early extant lineages in evolution of the family. Journal of Hymenoptera Research 57: 1-87. https://doi.org/10.3897/jhr.57.12892
Figures 181-183 - Borneomymar madagascar, female. 181 body (without head), habitus, dorsal 182 mesosoma, dorsal 183 metasoma, dorsal (slightly twisted). Scale bar for 181 = 1000 μm; 182, 183 = 100 μm.
Figures 177-180 from: Huber JT (2017) Eustochomorpha Girault, Neotriadomerus gen. n., and Proarescon gen. n. (Hymenoptera, Mymaridae), early extant lineages in evolution of the family. Journal of Hymenoptera Research 57: 1-87. https://doi.org/10.3897/jhr.57.12892
Figures 177-180 - Borneomymar madagascar, female. 177 head, anterior (vertex detached anteriorly, with trabeculae unrolled) 178 head, posterior 179 antenna 180 wings. Scale bar for 177, 178 = 100 μm; 179, 180 = 500 μm.
Figures 175- 176 from: Huber JT (2017) Eustochomorpha Girault, Neotriadomerus gen. n., and Proarescon gen. n. (Hymenoptera, Mymaridae), early extant lineages in evolution of the family. Journal of Hymenoptera Research 57: 1-87. https://doi.org/10.3897/jhr.57.12892
Figures 175- 176 - Proarescon similis, male paratype. 175 metasoma, dorsal 176 genitalia, dorsal (seen through body). Scale bar for 175 = 100 μm; 176 = 50 μm.
Figures 173- 174 from: Huber JT (2017) Eustochomorpha Girault, Neotriadomerus gen. n., and Proarescon gen. n. (Hymenoptera, Mymaridae), early extant lineages in evolution of the family. Journal of Hymenoptera Research 57: 1-87. https://doi.org/10.3897/jhr.57.12892
Figures 173- 174 - Proarescon similis, male paratype. 173 mesosoma, dorsal 174 wings. Scale bar = 100 μm.
Figures 19-24 from: Huber JT (2017) Eustochomorpha Girault, Neotriadomerus gen. n., and Proarescon gen. n. (Hymenoptera, Mymaridae), early extant lineages in evolution of the family. Journal of Hymenoptera Research 57: 1-87. https://doi.org/10.3897/jhr.57.12892
Figures 19-24 - Eustochomorpha haeckeli, female. 19 wings 20a parastigma, ventral 20b base of marginal vein, ventral 20c apex of marginal vein, stigma + postmarginal vein, ventral 21a parastigma, dorsal 21b stigma, dorsal 22 gaster apex showing cerci, posterolaterodorsal 23 gaster apex showing cerci, dorsal 24 gaster apex, posterolaterodorsal. Scale bar for 19 = 200 μm; 20a, 20b, 21b, 22–24 = 20 μm; 20c, 21a = 50 μm.
Figures 1-7 from: Khalaim AI, Ruíz-Cancino E (2017) Ichneumonidae (Hymenoptera) associated with xyelid sawflies (Hymenoptera, Xyelidae) in Mexico. Journal of Hymenoptera Research 58: 17-27. https://doi.org/10.3897/jhr.58.12919
Figures 1-7 - Gelanes horstmanni sp. n., holotype female (1, 2, 4, 5) and paratype male (3). 1 body, lateral view 2 head with antenna and mesosoma, dorso-lateral view 3 head, dorsal view 4 head, antero-ventral view 5 apex of ovipositor, lateral view. Idiogramma comstockii, female 6 head, antero-ventral view 7 head, dorso-lateral view.
Figures 170-172 from: Huber JT (2017) Eustochomorpha Girault, Neotriadomerus gen. n., and Proarescon gen. n. (Hymenoptera, Mymaridae), early extant lineages in evolution of the family. Journal of Hymenoptera Research 57: 1-87. https://doi.org/10.3897/jhr.57.12892
Figures 170-172 - Proarescon similis. 170 holotype metasoma, lateral 171 male paratype head, anterior 172 male paratype antenna. Scale bar for 170, 172 =200 μm; 171 =100 μm.
Figures 165-167 from: Huber JT (2017) Eustochomorpha Girault, Neotriadomerus gen. n., and Proarescon gen. n. (Hymenoptera, Mymaridae), early extant lineages in evolution of the family. Journal of Hymenoptera Research 57: 1-87. https://doi.org/10.3897/jhr.57.12892
Figures 165-167 - Proarescon similis, holotype. 165 head, dorsal 166a antenna without scape, lateral 166b antenna, dorsal 167 type slide. Scale bar = 100 μm.
Figures 153-158 from: Huber JT (2017) Eustochomorpha Girault, Neotriadomerus gen. n., and Proarescon gen. n. (Hymenoptera, Mymaridae), early extant lineages in evolution of the family. Journal of Hymenoptera Research 57: 1-87. https://doi.org/10.3897/jhr.57.12892
Figures 153-158 - Proarescon similis. 153 male head, ventroanterior 154 female head and pronotum, posterodorsal 155 male lower face and prosternum 156 female antennae 157 female mesosoma, dorsal 158 male mesosoma, dorsolateral. Scale bar for 153, 154, 157, 158 = 50 μm; 155= 20 μm; 156 = 100 μm.
Figures 168- 169 from: Huber JT (2017) Eustochomorpha Girault, Neotriadomerus gen. n., and Proarescon gen. n. (Hymenoptera, Mymaridae), early extant lineages in evolution of the family. Journal of Hymenoptera Research 57: 1-87. https://doi.org/10.3897/jhr.57.12892
Figures 168- 169 - Proarescon similis, holotype. 168 metasoma, dorsal (inset: enlargment of central area of scutellum showing fenestra) 169 wings. Scale bar = 100 μm.
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.