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Figure 18 from: Ganjisaffar F, Talamas EJ, Bon MC, Gonzalez L, Brown BV, Perring TM (2018) Trissolcus hyalinipennis Rajmohana & Narendran (Hymenoptera, Scelionidae), a parasitoid of Bagrada hilaris (Burmeister) (Hemiptera, Pentatomidae), emerges in North America. Journal of Hymenoptera Research 65: 111-130. https://doi.org/10.3897/jhr.65.25620

Figure 18 Rooted phylogram depicting the relationships between all specimens analyzed based on the barcode dataset alignment. Bootstrap percentages (BP) ≥ 75 and Posterior Probabilities (PP)≥ 0.90 are indicated at nodes. Each line represents a sequenced specimen with reference to its collection identifier.

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Figures 1-5 from: Li T-J, Carpenter JM (2018) A taxonomic account of the genus Labus de Saussure, 1867 (Hymenoptera, Vespidae, Eumeninae) with descriptions of three new species. Journal of Hymenoptera Research 65: 23-46. https://doi.org/10.3897/jhr.65.26976

Figures 1-5 Labusedentatus sp. n., holotype 1 habitus (dorsal view), ♀ 2 head in frontal view, ♀ 3 frontal fovea, ♀ 4 metasomal petiole, ♀ 5 propodeum in dorsal view, ♀.

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Figures 15-17 from: Ganjisaffar F, Talamas EJ, Bon MC, Gonzalez L, Brown BV, Perring TM (2018) Trissolcus hyalinipennis Rajmohana & Narendran (Hymenoptera, Scelionidae), a parasitoid of Bagrada hilaris (Burmeister) (Hemiptera, Pentatomidae), emerges in North America. Journal of Hymenoptera Research 65: 111-130. https://doi.org/10.3897/jhr.65.25620

Figures 15-17 15Trissolcuserugatus, female (USNMENT01197263), head and mesosoma, ventrolateral view 16Trissolcusbasalis, female (DPI_FSCA 00009651), head and mesosoma, ventrolateral view 17Trissolcusbasalis, female (DPI_FSCA 00009880), head and mesosoma, ventrolateral view. ats: postacetabular sulcus; bs: basiconic sensillum; eps: episternal foveae; nes: netrion sulcus.

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Figure 5 from: Schindler M, Hofmann MM, Wittmann D, Renner SS (2018) Courtship behaviour in the genus Nomada – antennal grabbing and possible transfer of male secretions. Journal of Hymenoptera Research 65: 47-59. https://doi.org/10.3897/jhr.65.24947

Figure 5 Excretory canals at the inner surface of the tyloid-like structures on the antennomere 6 of Nomadafucata ♂ (a1, a2) and antennomere 5 of Nomadalathburiana ♂ (b1, b2). SEM micrographs. Scale unit: 0.03mm (a1), 0,004mm (a2), 0.06 mm (b1), 0.01 mm (b2).

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Figure 4 from: Schindler M, Hofmann MM, Wittmann D, Renner SS (2018) Courtship behaviour in the genus Nomada – antennal grabbing and possible transfer of male secretions. Journal of Hymenoptera Research 65: 47-59. https://doi.org/10.3897/jhr.65.24947

Figure 4 Semi-thin sections of antennomere 9 of Nomadalathburiana ♂ [a=longitudinal, b=cross. Ty=Thyloid, C1=compact epidermal cells, C2= gland cells, type III (Noirot & Quennedey 1991). Scale unit: 0.05 mm (a1, b1, b2), 0.02 mm (a2). Topography: l=lateral, m=medial, v=ventral, d=dorsal] and of antennomere 7 of Nomadafucata ♂ [c=cross. Ty=Tyloid, C1= compact epidermal cells, C2=gland cells, type III, P=porous cuticle (Noirot & Quennedey 1991). Scale unit: 0.05 mm (c1, c2) Topography: l=lateral, m=medial, v=ventral, d=dorsal].

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Figure 3 from: Schindler M, Hofmann MM, Wittmann D, Renner SS (2018) Courtship behaviour in the genus Nomada – antennal grabbing and possible transfer of male secretions. Journal of Hymenoptera Research 65: 47-59. https://doi.org/10.3897/jhr.65.24947

Figure 3 Modifications on the antennae of Nomadafucata ♂ (a) (left antenna, dorsal), N.flavoguttata ♂ (b) (right antenna, ventral) and N.lathburiana ♂ (c) (left antenna, lateral). SEM micrographs. a1 weak elevation on flagellum 6 laterally. Scale unit: 0.1 mm b1 weak elevations on flagellum 4 ventrally. Scale unit: 0.1 mm c1 nodule on flagellum 9. Scale unit: 0.1 mm a2 pores and secretions on the elevation. Scale unit: 0.01 mm b2 pores and setae on the elevations. Scale unit: 0.01 mm c2 nodule covered with secretions. Scale unit: 0.02 mm.

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Figure 1 from: Bogusch P, van Achterberg C, Šilhán K, Astapenková A, Heneberg P (2018) Description of mature larvae and ecological notes on Gasteruption Latreille (Hymenoptera, Evanioidea, Gasteruptiidae) parasitizing hymenopterans nesting in reed galls. Journal of Hymenoptera Research 65: 1-21. https://doi.org/10.3897/jhr.65.26645

Figure 1 Map with occurrence of Gasteruptionassectator (yellow) and Gasteruptionnigrescens (red) in the localities studied. Empty circles represent the localities where these species have not been recorded.

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Figure 2 from: Schindler M, Hofmann MM, Wittmann D, Renner SS (2018) Courtship behaviour in the genus Nomada – antennal grabbing and possible transfer of male secretions. Journal of Hymenoptera Research 65: 47-59. https://doi.org/10.3897/jhr.65.24947

Figure 2 Mating of Nomadafucata (singular images of a video sequence). a ♂ mounts the ♀ and fixes its wings with its mid and hind legs. ♂ lifts the abdomen of the ♀ with its hind legs and tries to insert its genitalia in the female´s genital opening b ♂ entangles the female´s left antenna with its left flagellum c ♂ pulls its left flagellum from medial to apical along the female antenna d ♂ repeatedly entangles the female´s antennae with its left and right flagellum and pulls it off medially to apically. ♂ tries to insert its genitalia.

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Figures 12-18 from: Zu G-H, Zhang X, Li C-D, Zhang Y-Z (2018) A new species of Anagyrus (Hymenoptera, Encyrtidae) from Malaysia, parasitoid of Lanceacoccus sp. (Hemiptera, Pseudococcidae). Journal of Hymenoptera Research 65: 141-148. https://doi.org/10.3897/jhr.65.24872

Figures 12-18 A.minipedicellus sp. n., paratype male: 12 head, frontal view 13 mesosoma, lateral view 14 antenna 15 fore wing 16 hind wing 17 legs 18 genitalia. Scale bars: 100μm.

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Figure 1 from: Schindler M, Hofmann MM, Wittmann D, Renner SS (2018) Courtship behaviour in the genus Nomada – antennal grabbing and possible transfer of male secretions. Journal of Hymenoptera Research 65: 47-59. https://doi.org/10.3897/jhr.65.24947

Figure 1 Mating of Nomadalathburiana (a, b) in the lab and of N.flavoguttata on Taraxacumofficinale s.l.. (c, d). a ♂ mounts the ♀ and fixes its wings with its mid and hind legs and tries to entangle the female´s antennae spirally with its flagella. ♂ lifts the abdomen of the ♀ with its hind legs and tries to insert its genitalia in the female´s genital opening b ♂ repeatedly spirally entangles the female´s antennae with its left and right flagellum and pulls it off medially to apically. ♂ tries to insert its genitalia repeatedly c ♂♂ patrolling at a blossom of T.officinaled Insertion phase of copulation. Antennation of ♂ as described in (b).

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Figure 1 from: Ganjisaffar F, Talamas EJ, Bon MC, Gonzalez L, Brown BV, Perring TM (2018) Trissolcus hyalinipennis Rajmohana & Narendran (Hymenoptera, Scelionidae), a parasitoid of Bagrada hilaris (Burmeister) (Hemiptera, Pentatomidae), emerges in North America. Journal of Hymenoptera Research 65: 111-130. https://doi.org/10.3897/jhr.65.25620

Figure 1 Locations at the Agricultural Operations of the University of California, Riverside that were selected to survey for resident egg parasitoids of Bagradahilaris. Yellow squares show the host fields that included squash: Latitude 33°57'58.08"N, Longitude 117°20'35.37"W; alfalfa: Latitude 33°57'54.20"N, Longitude 117°20'27.01"W; and mixed vegetables: Latitude 33°57'56.32"N, Longitude 117°20'25.48"W. Yellow dots show other locations where mustard weeds were found and sentinel cards were placed. The green dot represents the location where Trissolcushyalinipennis was recovered and the red dots represent the locations where Trissolcusbasalis was recovered.

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Figures 1-3 from: Zu G-H, Zhang X, Li C-D, Zhang Y-Z (2018) A new species of Anagyrus (Hymenoptera, Encyrtidae) from Malaysia, parasitoid of Lanceacoccus sp. (Hemiptera, Pseudococcidae). Journal of Hymenoptera Research 65: 141-148. https://doi.org/10.3897/jhr.65.24872

Figures 1-3 1Lanceacoccus sp.; A.minipedicellus sp. n.: 2 habitus, lateral view (female, paratype) 3 habitus, lateral view (male, paratype). Scale bars: 1mm.

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Figure 8 from: Ronquist F, Nylander JAA, Vårdal H, Nieves-Aldrey JL (2018) Life history of Parnips and the evolutionary origin of gall wasps. Journal of Hymenoptera Research 65: 91-110. https://doi.org/10.3897/jhr.65.24115

Figure 8 Scanning electron micrographs of an intermediate-stage (a) and a mature terminal-instar (b) larva of Parnips sp. B.

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Figure 6 from: Ronquist F, Nylander JAA, Vårdal H, Nieves-Aldrey JL (2018) Life history of Parnips and the evolutionary origin of gall wasps. Journal of Hymenoptera Research 65: 91-110. https://doi.org/10.3897/jhr.65.24115

Figure 6 a Measurements of galls and pupae of Barbotiniaoraniensis and Parnipsnigripes (F = female, M = male). Galls containing females are larger than galls containing males (ANOVA: F = 8.075, df = 1, p = 0.006) but galls attacked by Parnips do not differ in diameter from normal Barbotinia galls (p = 0.51) b Female pupae are heavier than male pupae (F = 18.35, df = 1, p < 0.0001) but Barbotinia pupae do not differ in weight from Parnips pupae (p = 0.90) cBarbotinia galls attacked by Parnips have relatively thicker walls than normal galls (F = 6.98, df = 1, p = 0.01) both in females and males. Barbotinia females n = 20, males n = 18, Parnips females n = 27, males n = 15.

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Figures 4-11 from: Zu G-H, Zhang X, Li C-D, Zhang Y-Z (2018) A new species of Anagyrus (Hymenoptera, Encyrtidae) from Malaysia, parasitoid of Lanceacoccus sp. (Hemiptera, Pseudococcidae). Journal of Hymenoptera Research 65: 141-148. https://doi.org/10.3897/jhr.65.24872

Figures 4-11 A.minipedicellus sp. n., holotype female: 4 head, frontal view 5 mesosoma, dorsal view 6 antenna (A holotype, B paratype) 7 fore wing 8 hind wing 9 legs 10 hypopygium 11 ovipositor. Scale bars: 100μm.

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Figure 7 from: Ronquist F, Nylander JAA, Vårdal H, Nieves-Aldrey JL (2018) Life history of Parnips and the evolutionary origin of gall wasps. Journal of Hymenoptera Research 65: 91-110. https://doi.org/10.3897/jhr.65.24115

Figure 7 Young galls of Iraellahispanica in flowers of Papaverrhoeas and their inhabitants. a Gall b Transverse section of the gall showing gall chambers with larvae of Iraellac Mature terminal-instar larva of Iraella with an ectoparasitic intermediate-stage larva of Parnips sp. B. d Intermediate-stage larva of Parnips sp. B.

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Figures 13-19 from: Li T-J, Carpenter JM (2018) A taxonomic account of the genus Labus de Saussure, 1867 (Hymenoptera, Vespidae, Eumeninae) with descriptions of three new species. Journal of Hymenoptera Research 65: 23-46. https://doi.org/10.3897/jhr.65.26976

Figures 13-19 13–16Labusrobustus sp. n., holotype 13 habitus in dorsal view, ♂ 14 Head in frontal view, ♂ 15 propodeum in lateral view, ♂ 16 metasomal petiole, ♂ 17–19Labuspostpetiolatus Gusenleitner, 1988. 17 habitus in dorsal view, ♀ 18 propodeum in lateral view, ♀ 19 metasomal petiole, ♀.

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Figure 2 from: Yan Z-L, Ma H-F, Mao Y-L, Liu L (2018) Gravid females of Cephalcia chuxiongica (Hymenoptera, Pamphiliidae) are attracted to egg-carrying needles of Pinus yunnanensis. Journal of Hymenoptera Research 65: 157-166. https://doi.org/10.3897/jhr.65.26341

Figure 2 Trend rates of gravid females of Cephalciachuxiongica to volatiles in one-way choice tests. P one pine shoot V one virgin female G one gravid female PGE one pine shoot with one female and her fresh eggs on the needles PE one pine shoot with fresh eggs but no female NE needles' extract EL eggs' eluent. *Indicates a statistically significant difference (P < 0.05) between the trend rates of the gravid females to the odor and to clean air (nonparametric Wilcoxon matched pairs test, two-tailed).

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Figure 5 from: Ronquist F, Nylander JAA, Vårdal H, Nieves-Aldrey JL (2018) Life history of Parnips and the evolutionary origin of gall wasps. Journal of Hymenoptera Research 65: 91-110. https://doi.org/10.3897/jhr.65.24115

Figure 5 Mandibles of the terminal-instar larva of Barbotiniaoraniensis (a) and Parnipsnigripes (b). Barbotinia has a large mandible with two to three strong, blunt teeth. The mandible of Parnips is considerably smaller and has a single, elongate incisor with a weak secondary tooth along its upper margin.

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Figure 3 from: Ronquist F, Nylander JAA, Vårdal H, Nieves-Aldrey JL (2018) Life history of Parnips and the evolutionary origin of gall wasps. Journal of Hymenoptera Research 65: 91-110. https://doi.org/10.3897/jhr.65.24115

Figure 3 Young galls of Barbotiniaoraniensis inside seed capsules of Papaverrhoeas. There may be 1–3, rarely up to 6–7 galls per seed capsule. The galls lie inside the seed capsule and are not connected to the capsule wall (a). A sectioned gall shows the thick layers of plant tissue surrounding the young larva (b).

opencc-by-4.0Sep 2018View details →

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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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record