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Figure 2 from: Pezzini C, Jahnke SM, Köhler A (2017) Morphological characterization of immature stages of Habrobracon hebetor (Hymenoptera, Braconidae) ectoparasitoid of Ephestia kuehniella (Lepidoptera, Pyralidae). Journal of Hymenoptera Research 60: 157-171. https://doi.org/10.3897/jhr.60.20104
Figure 2 - Cephalic capsule (frontal view) of fourth instar larva of Habrobracon hebetor illustrating chaetotaxy (AN antenna, CS clypeal setae, FS frons setae on the antennal region, GN genal setae, HS hypostomal setae, VS vertex setae).
Figure 7 from: Brothers DJ, Lelej AS (2017) Phylogeny and higher classification of Mutillidae (Hymenoptera) based on morphological reanalyses. Journal of Hymenoptera Research 60: 1-97. https://doi.org/10.3897/jhr.60.20091
Figure 7 - Single most-parsimonious tree (raw length = 3822, ci = 0.14, ri = 0.75), of 101 sub/genera of Mutillidae and 4 outgroups (but each duplicated and recoded so as to reflect maximal character-state differences for polymorphisms, and taxa retained as monophyletic collapsed in the figure, see text), both sexes, 230 characters many additive and all with implied weighting (N = 5, k = 169). Group support (GC) values shown for all groups supported by resampling. Names in bold are of "terminals" shown not to be monophyletic.
Figure 15 from: Brothers DJ, Lelej AS (2017) Phylogeny and higher classification of Mutillidae (Hymenoptera) based on morphological reanalyses. Journal of Hymenoptera Research 60: 1-97. https://doi.org/10.3897/jhr.60.20091
Figure 15 - Subtending states for tree reflecting proposed taxa as monophyletic. Blue indicates states found only when most characters were considered additive, red only when all states were considered non-additive, and black under both conditions. Solid hashmarks indicate unique state changes, and open hashmarks are homoplasies. Letters within boxes indicate breaks in branches to enable effective layout.
Figure 11 from: Brothers DJ, Lelej AS (2017) Phylogeny and higher classification of Mutillidae (Hymenoptera) based on morphological reanalyses. Journal of Hymenoptera Research 60: 1-97. https://doi.org/10.3897/jhr.60.20091
Figure 11 - Preferred most-parsimonious tree (see Fig. 5) showing distribution of characters (upper numbers) and states (lower numbers) optimized as in Appendix 2. Asterisks (*) indicate character states unambiguously placed (position not changing under any optimization). Solid hashmarks indicate unique state changes, and open hashmarks are homoplasies. Letters within boxes indicate breaks in branches to enable effective layout. [continued over 5 pages]
Figure 1 from: Pezzini C, Jahnke SM, Köhler A (2017) Morphological characterization of immature stages of Habrobracon hebetor (Hymenoptera, Braconidae) ectoparasitoid of Ephestia kuehniella (Lepidoptera, Pyralidae). Journal of Hymenoptera Research 60: 157-171. https://doi.org/10.3897/jhr.60.20104
Figure 1 - Second instar larva of Habrobracon hebetor (dorsal view) illustrating the terminology used in the text (A1-A9 abdominal segments, AS anal segment, CC cephalic capsule, T1-T3 thoracic segments).
Figure 16 from: Brothers DJ, Lelej AS (2017) Phylogeny and higher classification of Mutillidae (Hymenoptera) based on morphological reanalyses. Journal of Hymenoptera Research 60: 1-97. https://doi.org/10.3897/jhr.60.20091
Figure 16 - Final proposed higher classification of Mutillidae, as related to the rearranged tree (cf. Fig. 1).
Figures 7–14 from: Müller A, Mauss V, Prosi R (2017) Unique nest architecture in the North African osmiine bee Hoplitis (Hoplitis) mucida (Hymenoptera, Megachilidae). Journal of Hymenoptera Research 60: 99-109. https://doi.org/10.3897/jhr.60.20218
Figures 7–14 - Morphological differences in the male sex between Hoplitis mucida (left) and H. stecki (right) (see Table 2): 7–8 Antenna 9–10 Tergum 7 11–12 Membraneous appendage of sternum 6 13–14 Genitalia.
Figure 8 from: Brothers DJ, Lelej AS (2017) Phylogeny and higher classification of Mutillidae (Hymenoptera) based on morphological reanalyses. Journal of Hymenoptera Research 60: 1-97. https://doi.org/10.3897/jhr.60.20091
Figure 8 - Single most-parsimonious tree (raw length = 2024, ci = 0.21, ri = 0.63), of 101 sub/genera of Mutillidae and 4 outgroups both sexes, 198 characters (32 of the original 230 deleted, those found to be polymorphic in at least 10% of terminals) many additive and all with implied weighting (N = 5, k = 81). Group support (GC) values shown for all groups supported by resampling. Terminals in bold are those whose placements differ by more than mere taxonomic level in the classifications of DB and LN (see Appendix 1).
Figure 3 from: Trietsch C, Mikó I, Ulmer JM, Deans AR (2017) Translucent cuticle and setiferous patches in Megaspilidae (Hymenoptera, Ceraphronoidea). Journal of Hymenoptera Research 60: 135-156. https://doi.org/10.3897/jhr.60.13692
Figure 3 - Images of the synsternal translucent and setiferous patches in the metasoma of different Ceraphronoidea. A Brightfield image of a Ceraphron sp. (Hymenoptera: Ceraphronidae) (identifier: PSUC_FEM 27234) B SEM image of Masner lubomirus Deans & Mikó, 2015 (Hymenoptera: Ceraphronidae) (identifier: PSUC_FEM 470955) C SEM image of Trichosteresis glabra Boheman, 1832 (Hymenoptera: Megaspilidae) (identifier: IM 1512) D Brightfield image of a Trassedia sp. (Hymenoptera: Ceraphronidae) (identifier: IM 1109/ NCSU 71196) Abbreviations: smp = synsternal setiferous patch; stp = synsternal translucent patch.
Figure 7 from: Trietsch C, Mikó I, Ulmer JM, Deans AR (2017) Translucent cuticle and setiferous patches in Megaspilidae (Hymenoptera, Ceraphronoidea). Journal of Hymenoptera Research 60: 135-156. https://doi.org/10.3897/jhr.60.13692
Figure 7 - CLSM image of the synsternal translucent patch and setiferous patch in a male (A identifier: PSUC_FEM 86236) and female (B identifier PSUC_FEM 86240) Megaspilus armatus Say, 1836 specimen (Hymenoptera: Megaspilidae), viewed externally. Abbreviations: smp = synsternal setiferous patch; stp = synsternal translucent patch.
Figure 1 from: Pérez-de-Heredia I, Darrouzet E, Goldarazena A, Romón P, Iturrondobeitia J-C (2017) Differentiating between gynes and workers in the invasive hornet Vespa velutina (Hymenoptera, Vespidae) in Europe. Journal of Hymenoptera Research 60: 119-133. https://doi.org/10.3897/jhr.60.13505
Figure 1 - MW histograms. Histograms showing MW (mesoscutum width) from eight different colonies, sorted by collection date.
Figure 2 from: Pérez-de-Heredia I, Darrouzet E, Goldarazena A, Romón P, Iturrondobeitia J-C (2017) Differentiating between gynes and workers in the invasive hornet Vespa velutina (Hymenoptera, Vespidae) in Europe. Journal of Hymenoptera Research 60: 119-133. https://doi.org/10.3897/jhr.60.13505
Figure 2 - GMMs of hornet size, WW and DW. Vespa velutina size (A), wet weight (B), and dry weight (C) distribution using a Gaussian Mixture Model. Two-dimensional distribution is represented by continuous line A workers < 4.5 mm, gynes ≥4.5mm B workers < 0.618 g, gynes ≥ 0.618 g and C workers < 0.225 g, gynes ≥ 0.225 g. The dashed lines represent group densities. The 5% level of uncertainty is shown by dotted lines A 4.4 mm–4.58 mm B 0.445 g–0.797 g and C 0.202 g–0.247 g. 4 colonies: Colony 1, N= 30; Colony 2, N= 30; Colony 10, N= 240; Colony 11, N=50.
Figures 6-11 from: Zhang YM, Gates MW, Shorthouse JD (2017) Revision of Canadian Eurytomidae (Hymenoptera, Chalcidoidea) associated with galls induced by cynipid wasps of the genus Diplolepis Geoffroy (Hymenoptera, Cynipidae) and description of a new species. Journal of Hymenoptera Research 61: 1-29. https://doi.org/10.3897/jhr.61.13466
Figures 6-11 Tenuipetiolus ruber 6 Female habitus. Eurytoma iniquus 7 Female habitus. E. longavena 8 Female habitus. E. discordans 9 Female habitus. E. imminuta 10 Female habitus (length 2.0 mm). E. spongiosa 11 Female habitus (length 3.2 mm), arrow pointing to precoxal tooth formed by the adscrobal carina.
Figures 18-23 from: Zhang YM, Gates MW, Shorthouse JD (2017) Revision of Canadian Eurytomidae (Hymenoptera, Chalcidoidea) associated with galls induced by cynipid wasps of the genus Diplolepis Geoffroy (Hymenoptera, Cynipidae) and description of a new species. Journal of Hymenoptera Research 61: 1-29. https://doi.org/10.3897/jhr.61.13466
Figures 18-23 Eurytoma obtusilobae 18 Propodeum 20 Petiole, lateral view. E. shorthousei sp. n. 19 Propodeal spiracle 21 Petiole, dorsal view. E. discordans: 22 Head, anterior view 23 Head, posterior view.
Figures 12-17 from: Zhang YM, Gates MW, Shorthouse JD (2017) Revision of Canadian Eurytomidae (Hymenoptera, Chalcidoidea) associated with galls induced by cynipid wasps of the genus Diplolepis Geoffroy (Hymenoptera, Cynipidae) and description of a new species. Journal of Hymenoptera Research 61: 1-29. https://doi.org/10.3897/jhr.61.13466
Figures 12-17 Eurytoma shorthousei sp. n. 12 Female habitus 13 Male habitus, arrow pointing to tegula 14 Clypeus 17 Female funicular segment 1. E. obtusilobae 15 Clypeus 16 Female funicular segment 1, arrow pointing to multiporous plate sensilla (MPS).
Figure 24-28 from: Zhang YM, Gates MW, Shorthouse JD (2017) Revision of Canadian Eurytomidae (Hymenoptera, Chalcidoidea) associated with galls induced by cynipid wasps of the genus Diplolepis Geoffroy (Hymenoptera, Cynipidae) and description of a new species. Journal of Hymenoptera Research 61: 1-29. https://doi.org/10.3897/jhr.61.13466
Figure 24-28 Eurytoma shorthousei 24 Face in lateral view. E. longavena 25 Propodeum 28 Female metasoma, lateral view. E. discordans 26 Female antenna 27 Female metasoma.
Figures 6-28 from: Prous M, Kramp K, Vikberg V, Liston A (2017) North-Western Palaearctic species of Pristiphora (Hymenoptera, Tenthredinidae). Journal of Hymenoptera Research 59: 1-190. https://doi.org/10.3897/jhr.29.12656
Figures 6-28 - External characters used to identify Pristiphora species. 6 albitibia DEI-GISHym31514 7 testacea DEI-GISHym19770 8 pallida DEI-GISHym20845 9 bifida DEI-GISHym31512 10 groenblomi DEI-GISHym31602 11 retusa DEI-GISHym20965 12 abietina DEI-GISHym31225 13 malaisei DEI-GISHym19772 14 luteipes DEI-GISHym80038, flagellum 15 ruficornis DEI-GISHym31185, flagellum 16 armata DEI-GISHym11092 17 frigida NHRS-HEVA000005006, flagellum with barely visible stout black setae (arrows) 18 pusilla DEI-GISHym80050, flagellum with clearly visible stout black setae 19 appendiculata DEI-GISHym31500, smooth mesopostnotum (arrow) 20 albitibia DEI-GISHym31516, matt mesopostnotum (arrow) 21 appendiculata DEI-GISHym31500, claw 22 opaca holotype 23 geniculata DEI-GISHym20961 24 depressa DEI-GISHym11043 25 bifida DEI-GISHym31507 26 robusta http://id.luomus.fi/GL.5197 27 biscalis DEI-GISHym11088 28 subbifida DEI-GISHym11332.
Figures 320-329 from: Prous M, Kramp K, Vikberg V, Liston A (2017) North-Western Palaearctic species of Pristiphora (Hymenoptera, Tenthredinidae). Journal of Hymenoptera Research 59: 1-190. https://doi.org/10.3897/jhr.29.12656
Figures 320-329 - Pristiphora dedeara Liston & Prous, sp. n. 320, 322–326 female holotype DEI-GISHym80053 321, 327–329 male paratype DEI-GISHym80258.
Figures 293-302 from: Prous M, Kramp K, Vikberg V, Liston A (2017) North-Western Palaearctic species of Pristiphora (Hymenoptera, Tenthredinidae). Journal of Hymenoptera Research 59: 1-190. https://doi.org/10.3897/jhr.29.12656
Figures 293-302 - Penis valves of Pristiphora. 293 amphibola DEI-GISHym80051 294 nigella PR.523VV 295 parva DEI-GISHym80061 296 paralella 15-269 297 dasiphorae DEI-GISHym20587 298 malaisei DEI-GISHym80112 (arrow indicates a notch) 299 fausta DEI-GISHym31714 300 mollis DEI-GISHym31040 301 tetrica DEI-GISHym20946 302 tenuiserra 15-300.
Figures 263-272 from: Prous M, Kramp K, Vikberg V, Liston A (2017) North-Western Palaearctic species of Pristiphora (Hymenoptera, Tenthredinidae). Journal of Hymenoptera Research 59: 1-190. https://doi.org/10.3897/jhr.29.12656
Figures 263-272 - Penis valves of Pristiphora. 263 armata PR.465VV 264 melanocarpa PR.425VV 265 leucopus GBIF-GISHym3246, syntype of Nematus crassicornis Hartig 266 ruficornis PR.462VV 267 bifida DEI-GISHym80000 (arrow indicates a dorsal depression of the pseudoceps) 268 confusa DEI-GISHym31265 269 subopaca DEI-GISHym80030, left penis valve 270 opaca PR.459VV 271 pusilla DEI-GISHym80029, left penis valve with strong dorsal depression of the pseudoceps (arrow) 272 staudingeri PR.352VV.
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.