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Figures 803-814. Hind wings. 803 in Morphology of Baridinae and related groups (Coleoptera, Curculionidae)
Figures 803-814. Hind wings. 803, Centrinus curvirostris; 804, Optatus palmaris, showing 1A and 1A 1 2 defined near wing margin, developed mst, and R3 forming a white line due to loss of sclerotization; 805, Eutoxus sp., showing developed 3A; 806, Parasaldius sp., showing developed rm and 1A and 1A defined 1 2 near wing margin; 807, Buchananius sulcatus; 808, Haplostethops ellipsoidea, showing reduced mst; 809, Linogeraeus viduatus, showing reduced 3A; 810, Plocamus echidna, showing reduced pst; 811, Plocamus clavisetis; 812, Odontocorynus scutellumalbum; 813, Lipancylus brevirostris, showing 1A extending dorsally 2 and merging with A through a -a, developed rm, and developed 3A; 814, Orchidophilus aterrimus, indi1 2 cating absence of rm.
Fig. 7. Wing. A in Description of Sharon gen. nov. for the Chilean species Asaphes amoenus Philippi, 1861 (Coleoptera: Elateridae)
Fig. 7. Wing. A. Sharon amoenus (Philippi, 1861) comb. nov. B. Hemicrepidius memnonius Herbst, 1806. Scale bars = 1 mm.
Fig. 7. Alloxysta semiaperta Fergusson, 1986. A. Fore wing. B in Revision of the types of species of Alloxysta described by Cameron and Fergusson (Hymenoptera: Figitidae: Charipinae) and deposited in the Natural History Museum (London), including a key to the fauna of Great Britain
Fig. 7. Alloxysta semiaperta Fergusson, 1986. A. Fore wing. B. Fore wing radial cell (arrow indicates that the radial cell is partially open). C. Antenna, ♂. D. Antenna, ♀. E. Propodeum. F. Lateral habitus, ♀. G. Pronotum (arrow indicates presence of pronotal carinae).
Fig. 1. Alloxysta abdera Fergusson, 1986. A. Fore wing. B in Revision of the types of species of Alloxysta described by Cameron and Fergusson (Hymenoptera: Figitidae: Charipinae) and deposited in the Natural History Museum (London), including a key to the fauna of Great Britain
Fig. 1. Alloxysta abdera Fergusson, 1986. A. Fore wing. B. Pronotum (arrows indicate pronotal carinae). C. Antenna, ♀. D. Antenna, ♂ (arrow shows curved F2). E. Propodeum. F. Fore wing radial cell (arrow indicates that the radial cell is completely open). G. Lateral habitus, ♀.
- Fore wing with areolet open (a); body and wings colorations variable but usually wings hyaline and body yellow interspersed with black markings (b) …………………………………2 (Epirhyssa) 2. Face smooth to sparsely punctate (A-B), without transverse rugosities ……………………………3 - Face transversely rugulose punctate or transversely striate (a-b) ……………………………………5 in A review of the Afrotropical Rhyssinae (Hymenoptera: Ichneumonidae) with the descriptions of five new species
- Fore wing with areolet open (a); body and wings colorations variable but usually wings hyaline and body yellow interspersed with black markings (b) …………………………………2 (Epirhyssa) 2. Face smooth to sparsely punctate (A-B), without transverse rugosities ……………………………3 - Face transversely rugulose punctate or transversely striate (a-b) ……………………………………5
Fig. 26. Fore wing. A in The genus Enicospilus Stephens, 1835 (Hymenoptera, Ichneumonidae, Ophioninae) in Saudi Arabia, with twelve new species records and the description of five new species
Fig. 26. Fore wing. A. Enicospilus pacificus (Holmgren, 1868). B. E. pallidus (Taschenberg, 1875). C. E. pseudoculator Gadallah & Soliman sp. nov. Scale bars = 2.5 mm.
Fig. 25. Fore wing. A. Enicospilus oculator Seyrig, 1935. B. E in The genus Enicospilus Stephens, 1835 (Hymenoptera, Ichneumonidae, Ophioninae) in Saudi Arabia, with twelve new species records and the description of five new species
Fig. 25. Fore wing. A. Enicospilus oculator Seyrig, 1935. B. E. odax Gauld & Mitchell, 1978. C. E. oweni Gauld & Mitchell, 1978. Scale bars = 2.5 mm.
Fig. 23. Fore wing. A in The genus Enicospilus Stephens, 1835 (Hymenoptera, Ichneumonidae, Ophioninae) in Saudi Arabia, with twelve new species records and the description of five new species
Fig. 23. Fore wing. A. Enicospilus capensis (Thunberg, 1822). B. E. divisus (Seyrig, 1935). C. E. dubius (Tosquinet, 1896). Scale bars = 2.5 mm.
Fig. 27. Fore wing. A. Enicospilus rundiensis Bischoff, 1915. B. E in The genus Enicospilus Stephens, 1835 (Hymenoptera, Ichneumonidae, Ophioninae) in Saudi Arabia, with twelve new species records and the description of five new species
Fig. 27. Fore wing. A. Enicospilus rundiensis Bischoff, 1915. B. E. senescens (Tosquinet, 1896). C. E. shadaensis Gadallah & Soliman sp. nov. Scale bars = 2.5 mm.
Fig. 24. Fore wing. A in The genus Enicospilus Stephens, 1835 (Hymenoptera, Ichneumonidae, Ophioninae) in Saudi Arabia, with twelve new species records and the description of five new species
Fig. 24. Fore wing. A. Enicospilus grandiflavus Townes & Townes, 1973. B. E. mirabilis Soliman & Gadallah sp. nov. C. E. nervellator Aubert, 1966. Scale bars = 2.5 mm.
Fig. 2. Fore wing discosubmarginal cell. A in The British species of Enicospilus (Hymenoptera: Ichneumonidae: Ophioninae)
Fig. 2. Fore wing discosubmarginal cell. A. Enicospilus undulatus (Gravenhorst, 1829). B. E. ramidulus (Linnaeus, 1758). C. E. merdarius (Gravenhorst, 1829). D. E. repentinus (Holmgren, 1860).
Fig. 1. Wing venation. A in The genus Prorops Waterson, 1923 (Hymenoptera, Bethylidae) from Madagascar
Fig. 1. Wing venation. A. Prorops sparsa sp. nov. Forewing, ♀. B. Prorops impotens sp. nov. Forewing, ♀. – Scale = 0.2 mm.
Supplementary files for Crane et al., "On a wing and a prayer": R Code, data and figures
<p>Datasets, R code and figures pertaining to the manuscript: Crane M, Silva I, Grainger MJ, & Gale GA.<em> On a wing and a prayer: limitations and gaps in global bat wing morphology trait data</em></p>
Data from: Species distribution models of the Spotted Wing Drosophila (Drosophila suzukii, Diptera: Drosophilidae) in its native and invasive range reveal an ecological niche shift
<p>The Spotted Wing Drosophila (<em>Drosophila</em> <em>suzukii</em>) is native to Southeast Asia. Since its first detection in 2008 in Europe and North America, it has been a pest to the fruit production industry as it feeds and oviposits on ripening fruit. Here we aim to model the potential geographical distribution of <em>D. suzukii</em>. We performed an extensive literature review to map the current records. In total, 517 documented occurrences (96 native and 421 invasive) were identified spanning 52 countries. Next, we constructed three species distribution models (SDMs) based on occurrence records in: 1) the native range (SDMnative), 2) the invasive range in Europe (SDMEurope) and 3) a global model of all records (SDMglobal). The models aimed to investigate, whether this species will be able to occupy additional ecological niches beyond its native range and expand its current geographic distribution both globally and in Europe. The SDMs were generated using Maximum Entropy algorithms (Maxent) based on present occurrence records and bioclimatic variables (WorldClim). Predictions of habitat suitability vary greatly depending on the origins of occurrence records. According to all models, precipitation and low temperatures were key limiting factors for the distribution of <em>D. suzukii</em>, which suggests that this species requires a humid environment with mild winters in order to establish a permanent population in its invasive range. Several regions in the invasive range, not presently occupied by this species, were predicted highly suitable, especially in northern Europe, suggesting that <em>D. suzukii</em> is not occupying its full fundamental niche yet. Synthesis and applications. Based on these models of potential geographic distribution of the Spotted Wing Drosophila (<em>Drosophila</em> <em>suzukii</em>), we show a shift in the ecological niche in <em>D. suzukii</em> populations, emphasizing the importance of using presence and local environmental data. Further investigation regarding new occurrences is recommended to secure optimal pest management. Despite a continuing expansion, many countries still lack proper surveillance schemes, and we urge policymakers to initiate appropriate management programs.</p>
FIGURES 11 12. Elephantomyia primogenia Alexander. Allotype, female. 11. Wing. 12 in A review of the genus Elephantomyia Osten Sacken in Brazil, with description of two new species (Diptera: Tipulomorpha, Limoniidae)
FIGURES 11 12. Elephantomyia primogenia Alexander. Allotype, female. 11. Wing. 12. Terminalia, dorsolateral view. Abbreviations; cerc, cercus; hyp vlv, hypogynial valve; tg 8, tergite 8; tg 9, tergite 9; tg 10, tergite 10.
FIGURES 1 – 4. Tapantia bicasa new species. 1. Head. 2. Wing. 3. Male terminalia, left side. 4 in Two new genera of Phoridae (Insecta: Diptera) from the Neotropical Region
FIGURES 1 – 4. Tapantia bicasa new species. 1. Head. 2. Wing. 3. Male terminalia, left side. 4. Male terminalia, right side.
FIGURES 5 – 8. Tayrona nitifrons new species. 5. Head. 6. Foretibia and tarsomeres. 7. Wing. 8 in Two new genera of Phoridae (Insecta: Diptera) from the Neotropical Region
FIGURES 5 – 8. Tayrona nitifrons new species. 5. Head. 6. Foretibia and tarsomeres. 7. Wing. 8. Male terminalia, left side.
FIGURES 8 – 10. Hind wing. 8 — Proteros sempiternus gen. n in Phylogeny of the tribe Erotini (Coleoptera, Lycidae), with descriptions of new taxa
FIGURES 8 – 10. Hind wing. 8 — Proteros sempiternus gen. n., sp. n.; 9 — Flagrax auberti (Bourgeois); 10 — Aferos sp.
FIGURES 11 – 13. Hind wing. 11 in Phylogeny of the tribe Erotini (Coleoptera, Lycidae), with descriptions of new taxa
FIGURES 11 – 13. Hind wing. 11 — Eros humeralis (Fabricius); 12 — Platycis minuta (Fabricius); 13 — Eropterus arculus Green.
FIGURES 16 – 23. Mythenteles wings. 16. M in World revision of the microbombyliid genus Mythenteles Hall & Evenhuis (Diptera: Mythicomyiidae)
FIGURES 16 – 23. Mythenteles wings. 16. M. coptopheles Evenhuis, sp. n.; 17. M. deemingi Evenhuis, sp. n.; 18. M. freidbergi Evenhuis, sp. n.;, anal lobe folded over 19. M. hellenicae Evenhuis, sp. n.; 20. M. hispanicola Evenhuis & BlascoZumeta, sp. n.; 21. M. infrequens Evenhuis & Blasco Zumeta, sp. n., anal lobe folded over; 22. M. silus Evenhuis, sp. n.; 23. M. wadimurri Evenhuis & Theodor, sp. n.
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Allen Brain Atlas
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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
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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.
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