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Figure 1 from: Gilder K, Masloski KE, Woolley JB, Gu M, Merchant ME, Heinz KM (2020) Discovery of a non-native parasitoid, Marlattiella prima Howard (Hymenoptera, Aphelinidae) and its non-native host, Lopholeucaspis japonica Cockerell (Hemiptera, Diaspididae) in Central Texas. Journal of Hymenoptera Research 77: 213-217. https://doi.org/10.3897/jhr.77.53827
Figure 1 Marlattiella prima Howard adult female recovered from Lopholeucaspis japonica Cockerell on Lagerstroemia indica L. trees. This specimen is in the TAMU Insect Collection (TAMUIC) as TAMU Vouchers #746. The photograph was taken by JBW with a Macropod system (https://macroscopicsolutions.com) using 20× microscope objective, a 200 mm tube lens, and a Canon EOS 5D Mark III camera.
Figure 2 from: Sheffield CS (2020) A new species of Andrena (Trachandrena) from the Southwestern United States (Hymenoptera, Andrenidae). Journal of Hymenoptera Research 77: 87-103. https://doi.org/10.3897/jhr.77.53704
Figure 2 Dorsal surface of metasoma of female Trachandrena. AAndrena rugosa, the type species of the subgenus, with relatively wide apical impressed area of T2; BA. hippotes Robertson, with a relatively narrow apical impressed area of T2 (but still wider than basal area); CA. cleodora (Viereck); DA. hadfieldi, nov. sp. Both of the latter species have broad apical impressed areas of T2 which are impunctate.
Figure 3 from: Sheffield CS (2020) A new species of Andrena (Trachandrena) from the Southwestern United States (Hymenoptera, Andrenidae). Journal of Hymenoptera Research 77: 87-103. https://doi.org/10.3897/jhr.77.53704
Figure 3 Facial fovea of Andrena rugosa. The lower half of the facial fovea in Trachandrena is usually much narrower than the upper portion, though this species is the most extreme example.
Figure 11 from: Sheffield CS (2020) A new species of Andrena (Trachandrena) from the Southwestern United States (Hymenoptera, Andrenidae). Journal of Hymenoptera Research 77: 87-103. https://doi.org/10.3897/jhr.77.53704
Figure 11 Propodeal corbicula of AAndrena (Trachandrena) hadfieldi showing long plumose hairs on the dorsal and posterior surface, no hairs on the anterior margin, and long simple internal hairs, and the rather smooth surface, and BA. (Trachandrena) cleodora, with the surface coarsely rugose.
Figure 10 from: Sheffield CS (2020) A new species of Andrena (Trachandrena) from the Southwestern United States (Hymenoptera, Andrenidae). Journal of Hymenoptera Research 77: 87-103. https://doi.org/10.3897/jhr.77.53704
Figure 10 Face of A holotype female of Andrena (Trachandrena) hadfieldi, and BA. (Trachandrena) cleodora.
Figure 1 from: Sheffield CS (2020) A new species of Andrena (Trachandrena) from the Southwestern United States (Hymenoptera, Andrenidae). Journal of Hymenoptera Research 77: 87-103. https://doi.org/10.3897/jhr.77.53704
Figure 1 Dorsal enclosure of propodeum (i.e., propodeal triangle) of a female Andrena rugosa Robertson, the type species of Trachandrena Robertson.
Figures 1-9 from: Li T, Sun S-P, Sheng M-L (2020) A new species of genus Rhinotorus Förster (Ichneumonidae, Ctenopelmatinae) parasitizing Pristiphora erichsonii (Hymenoptera, Tenthredinidae) and a key to Eastern Palaearctic species. Journal of Hymenoptera Research 77: 203-211. https://doi.org/10.3897/jhr.77.53323
Figures 1-9 Rhinotorus nigrus Sheng, Li & Sun, sp. nov. Holotype, female 1 habitus and host's cocoon, lateral view 2 head, anterior view 3 head, lateral view 4 head, dorsal view 5 head, dorsoanterior view 6 mesosoma, lateral view 7 propodeum 8 metasoma, dorsal view 9 apical portion of metasoma, lateral view.
Figures 7-13 from: Burks RA, Woolley JB, Kesbeh SO, Eldridge DS, Dal Molin A, Heraty JM (2020) Discovery and description of the first known fossil Signiphoridae (Hymenoptera, Chalcidoidea). Journal of Hymenoptera Research 77: 219-226. https://doi.org/10.3897/jhr.77.53307
Figures 7-13 7 Holotype, wings showing surface sculpture (ssmv: setae submarginal vein, setae M1–M6). (Macropod) 8 paratype, fore wing and hind wing (Leica Z16 Apo A) 9 holotype, wing venation (Macropod) 10 paratype, legs (fts: foretibial spur) (Macropod) 11 holotype, dorsal metasoma and genitalia (Ms7: metasomal sternum 7, Ms8: metasomal sternum 8) (Macropod) 12 Holotype, ventral metasoma and subgenital plate (dg: digitus) (Keyence) 13 Paratype, apex of metasoma, lateral (mfs: mesofemoral spines) (Macropod).
Figures 1-6 from: Burks RA, Woolley JB, Kesbeh SO, Eldridge DS, Dal Molin A, Heraty JM (2020) Discovery and description of the first known fossil Signiphoridae (Hymenoptera, Chalcidoidea). Journal of Hymenoptera Research 77: 219-226. https://doi.org/10.3897/jhr.77.53307
Figures 1-6 1 Whole fossil showing the holotype and paratype (Leica Z16 Apo A) 2 holotype, dorsal habitus (Macropod) 3 paratype, lateral habitus (Keyence) 4 paratype, head and antennae (anl: anellus) (Keyence) 5 holotype, head and antennae (man: mandible) (Macropod) 6 holotype, mesosoma (Macropod).
Figure 8 from: Sabbatini-Peverieri G, Giovannini L, Benvenuti C, Madonni L, Hoelmer K, Roversi PF (2020) Characteristics of the meconia of European egg parasitoids of Halyomorpha halys. Journal of Hymenoptera Research 77: 187-201. https://doi.org/10.3897/jhr.77.52904
Figure 8 Leptoglossus occidentalis eggs parasitized by Gryon pennsylvanicum (A) and meconium recognizable in the host egg (B) and its SEM image (C). Scale bar: 500μm (B).
Figure 5 from: Sabbatini-Peverieri G, Giovannini L, Benvenuti C, Madonni L, Hoelmer K, Roversi PF (2020) Characteristics of the meconia of European egg parasitoids of Halyomorpha halys. Journal of Hymenoptera Research 77: 187-201. https://doi.org/10.3897/jhr.77.52904
Figure 5 Meconium (arrows) of egg parasitoids of Halyomorpha halys visible through partially dissected host eggs: Anastatus bifasciatus (A); Trissolcus mitsukurii (B); Trissolcus japonicus (C); Acroclisoides sinicus on previous parasitized egg by Trissolcus mitsukurii (D); Ooencyrtus telenomicida (E).
Figure 7 from: Sabbatini-Peverieri G, Giovannini L, Benvenuti C, Madonni L, Hoelmer K, Roversi PF (2020) Characteristics of the meconia of European egg parasitoids of Halyomorpha halys. Journal of Hymenoptera Research 77: 187-201. https://doi.org/10.3897/jhr.77.52904
Figure 7 Meconium of Halyomorpha halys egg parasitoid at SEM: Anastatus bifasciatus (A); Trissolcus japonicus (B); Trissolcus mitsukurii (C); Acroclisoides sinicus (red arrow) on meconium of Trissolcus japonicus (D); Acroclisoides sinicus (red arrow) on meconium of Trissolcus mitsukurii (E); Ooencyrtus telenomicida (F).
Figure 6 from: Sabbatini-Peverieri G, Giovannini L, Benvenuti C, Madonni L, Hoelmer K, Roversi PF (2020) Characteristics of the meconia of European egg parasitoids of Halyomorpha halys. Journal of Hymenoptera Research 77: 187-201. https://doi.org/10.3897/jhr.77.52904
Figure 6 Halyomorpha halys egg parasitoid meconium extracted from the host egg: Anastatus bifasciatus (A); Trissolcus japonicus (B); Trissolcus mitsukurii (C); Acroclisoides sinicus (red arrows) on meconium of Trissolcus japonicus (D); Acroclisoides sinicus (red arrows) on meconium of Trissolcus mitsukurii (E); detail of meconium of T. japonicus (view from the bottom (F); Ooencyrtus telenomicida (G). Scale bars: 500μm.
Figures 1-7 from: Nguyen LTP, Carpenter JM (2020) Potter wasps of the genus Labus (Hymenoptera, Vespidae, Eumeninae) from Vietnam, with description of two new species. Journal of Hymenoptera Research 77: 139-150. https://doi.org/10.3897/jhr.77.52797
Figures 1-7 Labus angulus sp.nov., holotype, female 1 head, frontal view 2 head, dorsal-frontal view 3 mesosoma, dorsal view 4 propodeum, posterior view 5 TI, dorsal view 6 matasomal segments, lateral view 7 habitus. Scale bars: 0.5 mm.
Figure 5 from: Sakagami K, Shimizu S, Fujie S, Maeto K (2020) Revisiting the host use and phylogeny of Colastomion Baker (Hymenoptera, Braconidae, Rogadinae), with a new host record from Japan. Journal of Hymenoptera Research 77: 175-186. https://doi.org/10.3897/jhr.77.52774
Figure 5 Bayesian majority-rule consensus tree of Colastomion species based on CO1. Posterior probabilities (> 0.80) and bootstrap values (> 50%) are indicated at below of each node (PP / BT). Lifestyles are indicated as shown in Quicke et al. (2012), except for C. formosanum.
Figures 37-46 from: Luo L, Zhang Q-H, Chen B, Li T-J (2020) Additions to the knowledge of the genus Allorhynchium van der Vecht, 1963 from China (Hymenoptera, Vespidae, Eumeninae). Journal of Hymenoptera Research 77: 119-137. https://doi.org/10.3897/jhr.77.52309
Figures 37-46 Allorhynchium radiatum (Allorhynchium A, from Guangxi) 37 habitus (dorsal view), ♀ 38 habitus (dorsal view), ♂ 39 genitalia (front view), ♂ 40 clypeus, ♀ 41 clypeus, ♂ 42 apex of antenna, ♂ 43–45 variations of S2, ♂ 46 S7, ♂.
Figure 4 from: Sakagami K, Shimizu S, Fujie S, Maeto K (2020) Revisiting the host use and phylogeny of Colastomion Baker (Hymenoptera, Braconidae, Rogadinae), with a new host record from Japan. Journal of Hymenoptera Research 77: 175-186. https://doi.org/10.3897/jhr.77.52774
Figure 4 A larva of Nevrina procopia (Stoll) mummified by Colastomion formosanum (Watanabe), lateral view.
Figures 29-36 from: Luo L, Zhang Q-H, Chen B, Li T-J (2020) Additions to the knowledge of the genus Allorhynchium van der Vecht, 1963 from China (Hymenoptera, Vespidae, Eumeninae). Journal of Hymenoptera Research 77: 119-137. https://doi.org/10.3897/jhr.77.52309
Figures 29-36 Allorhynchium radiatumLi et al., 2019 (from Guizhou) 29 habitus (dorsal view), ♀ 30 habitus (dorsal view), ♂ 31 genitalia (front view), ♂ 32 clypeus, ♀ 33 clypeus, ♂ 34 apex of antenna, ♂ 35 metasoma (ventral view), ♂ 36 S7, ♂.
Figures 20-28 from: Luo L, Zhang Q-H, Chen B, Li T-J (2020) Additions to the knowledge of the genus Allorhynchium van der Vecht, 1963 from China (Hymenoptera, Vespidae, Eumeninae). Journal of Hymenoptera Research 77: 119-137. https://doi.org/10.3897/jhr.77.52309
Figures 20-28 Allorhynchium diffinis (Giordani Soika, 1986) 20 habitus (dorsal view) ♀ 21 habitus (dorsal view) ♂ 22 genitalia (front view), ♂ 23 clypeus, ♀ 24 clypeus, ♂ 25 apex of antenna, ♂ 26 metasoma (dorsal view), ♀ 27S2, ♂ 28 S7, ♂.
Figure 2 from: Sabbatini-Peverieri G, Giovannini L, Benvenuti C, Madonni L, Hoelmer K, Roversi PF (2020) Characteristics of the meconia of European egg parasitoids of Halyomorpha halys. Journal of Hymenoptera Research 77: 187-201. https://doi.org/10.3897/jhr.77.52904
Figure 2 Exit holes of egg parasitoids of Halyomorpha halys in Europe and hyperparasitoids: Acroclisoides sinicus (A), Trissolcus mitsukurii (B), Anastatus bifasciatus (C), Acroclisoides sinicus partly emerged (D), Trissolcus japonicus (E), Ooencyrtus telenomicida (F, only from sentinel eggs); hatched Halyomorpha halys egg (G).
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.