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Figure 1 from: Corbin LA-J, Awde DN, Richards MH (2021) Phenological and social characterization of three Lasioglossum (Dialictus) species inferred from long-term trapping collections. Journal of Hymenoptera Research 88: 17-38. https://doi.org/10.3897/jhr.88.73220
Figure 1 Bivoltine flight phenologies of L. laevissimum, L. hitchensi and L. ellisiae, inferred from pan trap collections, 2003–2013. The number of bees collected per week represents the average number of bees collected in pan traps, across sites and years, from 2003 to 2013. A total of 52 L. laevissimum bees, 1480 L. hitchensi bees, and 67 L. ellisiae bees were collected. Dark grey bars represent males, white bars represent spring females and light grey bars represent summer females. The red polynomial regression (drawn using the geom_smooth function, Loess method, in R) was used to help visually identify the number of abundance peaks for each species. Black arrows indicate the weeks when L. hitchensi males were collected in pan traps.
Supplementary material 1 from: Corbin LA-J, Awde DN, Richards MH (2021) Phenological and social characterization of three Lasioglossum (Dialictus) species inferred from long-term trapping collections. Journal of Hymenoptera Research 88: 17-38. https://doi.org/10.3897/jhr.88.73220
Figure S1. Right forewing of an L. hitchensi female.
Figure 3 from: Corbin LA-J, Awde DN, Richards MH (2021) Phenological and social characterization of three Lasioglossum (Dialictus) species inferred from long-term trapping collections. Journal of Hymenoptera Research 88: 17-38. https://doi.org/10.3897/jhr.88.73220
Figure 3 Social trait comparisons among spring, early summer and late summer females of L. hitchensi. Spring females were caught in weeks 0 to 8, early summer females in weeks 10 to 15, and late summer females from week 16 onward. Early summer females were larger than late summer females but showed similar signs of wear and ovarian development. See Table 2 for statistical analyses.
Figure 7 from: Catania R, Nobile V, Bella S (2021) The species of Eucera Scopoli, subgenus Tetralonia Spinola from Sardinia (Italy) with new records and E. alticincta gennargentui ssp. n. (Hymenoptera, Apidae). Journal of Hymenoptera Research 88: 1-16. https://doi.org/10.3897/jhr.88.70819
Figure 7 Neighbor-Joining tree showing relationships among Eucera gennargentui sp. nov., and Eucera (Tetralonia) species with Habropoda tarsata used as the outgroup.
Supplementary material 3 from: Corbin LA-J, Awde DN, Richards MH (2021) Phenological and social characterization of three Lasioglossum (Dialictus) species inferred from long-term trapping collections. Journal of Hymenoptera Research 88: 17-38. https://doi.org/10.3897/jhr.88.73220
Figure S3. Scoring systems for ovarian development scores.
Figures 6-9 from: Li T, Chang G-B, Yang Z-H, Sun S-P, Tian Y, Sheng M-L (2021) Two new species of Cymodusa Holmgren (Hymenoptera, Ichneumonidae) with a key to species known from China and Oriental region. Journal of Hymenoptera Research 88: 103-114. https://doi.org/10.3897/jhr.88.75304
Figures 6-9 Cymodusa culaiica Sheng, Li & Sun, sp. nov. Holotype. Female 6 mesosoma, lateral view 7 propodeum, dorsal view 8 first tergite, dorsal view 9 postpetiole and tergites 2 and 3, dorsal view.
Figure 3 from: Catania R, Nobile V, Bella S (2021) The species of Eucera Scopoli, subgenus Tetralonia Spinola from Sardinia (Italy) with new records and E. alticincta gennargentui ssp. n. (Hymenoptera, Apidae). Journal of Hymenoptera Research 88: 1-16. https://doi.org/10.3897/jhr.88.70819
Figure 3 Eucera gennargentui sp. nov., female (A-E) A head, anterior view B habitus, lateral view C dorsal view D mesosoma, dorsal view E metasoma, dorsal view. (Photos by R. Catania).
Figure 1 from: Tran TN, Truong LX, Ljubomirov T, Nguyen LTP (2021) First record of the bee genus Bathanthidium (Bathanthidium s. str.) Mavromoustakis (Hymenoptera: Megachilidae) from Vietnam: Description of a new species and a key to species. Journal of Hymenoptera Research 88: 51-60. https://doi.org/10.3897/jhr.88.73969
Figure 1 A–HBathanthidium (Bathanthidium s. str.) paco Tran & Nguyen, sp. nov., holotype, female A head in frontal view B mandible in frontal view C propodeum in lateral view, showing the fovea behind propodeal spiracle D mesoscutum and scutellum in dorsal view E fore wing in dorsal view F habitus in dorsal view G habitus in lateral view H nest entrance. Scale bars: 5 mm (H); 1 mm (A, C, E, F, G); 0.5 mm (B, D).
Figure 5 from: Catania R, Nobile V, Bella S (2021) The species of Eucera Scopoli, subgenus Tetralonia Spinola from Sardinia (Italy) with new records and E. alticincta gennargentui ssp. n. (Hymenoptera, Apidae). Journal of Hymenoptera Research 88: 1-16. https://doi.org/10.3897/jhr.88.70819
Figure 5 Eucera gennargentui sp. nov., genitalia and hidden sterna (A-F) A S6 ventral view B S7 ventral view C S8 ventral view D genitalia, dorsal view E genitalia, lateral view F vision of gonostylus and posterodorsal projection of gonocoxa (Photos by R. Catania).
Figure 6 from: Catania R, Nobile V, Bella S (2021) The species of Eucera Scopoli, subgenus Tetralonia Spinola from Sardinia (Italy) with new records and E. alticincta gennargentui ssp. n. (Hymenoptera, Apidae). Journal of Hymenoptera Research 88: 1-16. https://doi.org/10.3897/jhr.88.70819
Figure 6 Female of Eucera gennargentui sp. nov. Sardinia, Gennargentu Massif, locality of Bruncu Spina (Photos by P. Niolu - R. Catania).
Figure 1 from: Krache F, Boualem M, Fernandez-Triana JL, Bass A, Arnó J, Benourad F (2021) First record in Africa of the parasitoid Dolichogenidea gelechiidivoris (Hymenoptera: Braconidae) on tomato leafminer Tuta absoluta (Lepidoptera: Gelechiidae) from tomato fields in Algeria. Journal of Hymenoptera Research 88: 115-131. https://doi.org/10.3897/jhr.88.75279
Figure 1 Map of the municipality of Stidia, along the Bay of Arzew and 15 km SW from Mostaganem, Algeria.
Figure 2 from: Guiraud M, Cariou B, Henrion M, Baird E, Gérard M (2021) Higher developmental temperature increases queen production and decreases worker body size in the bumblebee Bombus terrestris. Journal of Hymenoptera Research 88: 39-49. https://doi.org/10.3897/jhr.88.73532
Figure 2 The impact of developmental temperature on bumblebee body size. Letters at the top of the boxplots indicate significant differences when the letters are different.
Fig 7 from: Hemp C, Rowell C (2022) A new species of Burttia Dirsh (Caelifera, Acridoidea, Acrididae, Catantopinae) from the Eastern Arc Mountains of Tanzania. Journal of Orthoptera Research 31(1): 1-7. https://doi.org/10.3897/jor.31.70565
Fig 7 Abdominal apex of female Burttia caerulea sp. nov. A. semilateral; B. lateral; C. semilateral view.
Fig 6 from: Hemp C, Rowell C (2022) A new species of Burttia Dirsh (Caelifera, Acridoidea, Acrididae, Catantopinae) from the Eastern Arc Mountains of Tanzania. Journal of Orthoptera Research 31(1): 1-7. https://doi.org/10.3897/jor.31.70565
Fig 6 A, C, E, F, and I are Burttia sylvatica; B, D, G, H, J, and K are B. caerulea sp. nov. A.Burttia sylvatica, male terminalia in dorsal and lateral views; B as A but B. caerulea sp. nov.; C. (B. sylvatica); and D. (B. caerulea sp. nov.). Oblique dorso-lateral view of entire phallic complexes. Membrane is shown dotted. The shaded sclerites are the epiphallus and its lateral "oval" sclerites (unlabelled, at the right-hand edge of each figure), the paired post-epiphallic sclerites (PEpSc), the right-hand side ectophallic ramus (R) in C only, and the aedeagal valves (EcV, ectophallic (dorsal) aedeagal valve; EnV, endophallic (ventral) aedeagal valve; EcS, fragment of ectophallic sheath left adhering to ventral valve during dissection). The remaining sclerites are indicated only by outlines, indistinctly visible through the membrane (A, arch; CAp, cingular apodemes; EnAp, endophallic (basal) apodemes). E, F.Burttia sylvatica, epiphallus; E. dorsal view; F. axial view. Note trilobed lophal ridge (LR), divided epiphallic bridge, and large irregularly shaped "oval" sclerites and inwardly directed ancorae (Anc). G and H as E and F but B. caerulea sp. nov. Phallic complex with ectophallic membrane, zygoma, cingulum, and rami removed to expose the arch and the endophallic flexure. Arch and LHS ectophallic valve shaded. J.Burttia caerulea sp. nov. Phallic complex with ectophallic membrane removed, showing endophallus, cingulum with LHS ramus and LHS ectophallic valve. Endophallus shaded. K as J but dorsal view. Ectophallic elements shaded.
Fig 5 from: Hemp C, Rowell C (2022) A new species of Burttia Dirsh (Caelifera, Acridoidea, Acrididae, Catantopinae) from the Eastern Arc Mountains of Tanzania. Journal of Orthoptera Research 31(1): 1-7. https://doi.org/10.3897/jor.31.70565
Fig 5 Anterior axial view as epiphallus as situated when looking at opened apex of abdomen. A.Burttia sylvatica; B.B. caerulea sp. nov.
Fig 1 from: Hemp C, Rowell C (2022) A new species of Burttia Dirsh (Caelifera, Acridoidea, Acrididae, Catantopinae) from the Eastern Arc Mountains of Tanzania. Journal of Orthoptera Research 31(1): 1-7. https://doi.org/10.3897/jor.31.70565
Fig 1 Burttia species. A.B. caerulea sp. nov. from the Nguru Mountains; B.B. sylvatica from the Uluguru Mountains.
Fig 2 from: Hemp C, Rowell C (2022) A new species of Burttia Dirsh (Caelifera, Acridoidea, Acrididae, Catantopinae) from the Eastern Arc Mountains of Tanzania. Journal of Orthoptera Research 31(1): 1-7. https://doi.org/10.3897/jor.31.70565
Fig 2 Male of Burttia species. Left: B. caerulea sp. nov.; right: B. sylvatica. B. caerulea sp. nov. is larger and stouter than B. sylvatica.
Figure 7 from: Tan MK, Robillard T (2022) Rugabinthus, a new genus of Lebinthina (Orthoptera, Gryllidae, Eneopterinae) from New Guinea. Journal of Orthoptera Research 31(1): 9-40. https://doi.org/10.3897/jor.31.73800
Figure 7 Male FW in dorsal views: A.R. leopoldi (Chopard, 1931) comb. nov.; B.R. mamberamosp. nov.; C.R. yayukaesp. nov.; D.R. faowisp. nov.; E.R. kencanasp. nov.; F.R. manokwarisp. nov.; G.R. maokesp. nov.; H.R. biakissp. nov.; I.R. nabiresp. nov.; J.R. tarikusp. nov.; K.R. albatrossp. nov.; L.R. karimuisp. nov. Scale bar: 2 mm.
Figure 23 from: Tan MK, Robillard T (2022) Rugabinthus, a new genus of Lebinthina (Orthoptera, Gryllidae, Eneopterinae) from New Guinea. Journal of Orthoptera Research 31(1): 9-40. https://doi.org/10.3897/jor.31.73800
Figure 23 R. albatrossp. nov. male (A, B) and female (C, D) habitus in dorsal (A, C) and lateral (B, D) views. Scale bar: 10 mm.
Figure 26 from: Tan MK, Robillard T (2022) Rugabinthus, a new genus of Lebinthina (Orthoptera, Gryllidae, Eneopterinae) from New Guinea. Journal of Orthoptera Research 31(1): 9-40. https://doi.org/10.3897/jor.31.73800
Figure 26 R. karimuisp. nov. male (A, B) and female (D, E) habitus in dorsal (A, D) and lateral (B, E) views; and male subgenital plate in ventral view (C). Scale bars: 10 mm (all except C); 1 mm (C).
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.