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328 results for “Figitidae”
Figure 4 in Description of the aberrant Leptopilina lasallei n. sp.ı with an updated phylogeny of Leptopilina Förster (Hymenoptera: Figitidae: Eucoilinae)
Figure 4. Phylogeny of Leptopilina based on Bayesian analysis of concatenated nucleotide sequences of Cytochrome Oxidase I (COI) gene 'barcode' region, 28S D2 and ITS2 regions. Taxa denoted by 'DSZ' are newly sequenced for this study; other number/letter designations are those of Genbank sequences. See Table 1 for GenBank accession numbers and references.
FIGURES 1 – 8. Lopheucoila anastrephae. 1 in Eucoilinae species (Hymenoptera: Cynipoidea: Figitidae) parasitoids of fruitinfesting dipterous larvae in Brazil: identity, geographical distribution and host associations
FIGURES 1 – 8. Lopheucoila anastrephae. 1. Head, anterior view (183 x, 100 m); 2. Female antenna (58 x, 250 m); 3. Flagellomerous 1 and 2 of male (170 x, 100 m); 4. Pronotal plate (160 x, 100 m); 5. Head, mesosoma and anterior part of metasoma, lateral view (74 x, 250 m); 6. Mesosoma, dorsal view (172 x, 100 m); 7. Forewing (10 x, 0,5 mm); 8. Metacoxa (163 x, 100 m).
FIGURES 9 – 15. Tropideucoila weldi. 9 in Eucoilinae species (Hymenoptera: Cynipoidea: Figitidae) parasitoids of fruitinfesting dipterous larvae in Brazil: identity, geographical distribution and host associations
FIGURES 9 – 15. Tropideucoila weldi. 9. Head, anterior view (228 x, 100 m); 10. Female antenna (179 x, 100 m); 11. Pronotal plate (391 x, 20 m); 12. Mesosoma and anterior part of metasoma, lateral view (168 x, 100 m); 13. Head and mesosoma, dorsal view (215 x, 100 m); 14. Forewing (10 x, 0,25 mm); 15. Metacoxa (261 x, 100 m).
FIGURES 40 – 47. Trybliographa infuscata. 40 in Eucoilinae species (Hymenoptera: Cynipoidea: Figitidae) parasitoids of fruitinfesting dipterous larvae in Brazil: identity, geographical distribution and host associations
FIGURES 40 – 47. Trybliographa infuscata. 40. Head, anterior view (218 x, 100 m); 41. Female antenna (109 x, 100 m); 42. Flagellomerous 1 and 2 of male (182 x, 100 m); 43. Pronotal plate (568 x, 20 m); 44. Mesosoma and anterior part of metasoma, lateral view (161 x, 100 m); 45. Mesosoma, dorsal view (193 x, 100 m); 46. Forewing (10 x, 0,5 mm); 47. Metacoxa (161 x, 100 m).
FIGURES 32 39. A g anaspis pelleranoi. 32 in Eucoilinae species (Hymenoptera: Cynipoidea: Figitidae) parasitoids of fruitinfesting dipterous larvae in Brazil: identity, geographical distribution and host associations
FIGURES 32 39. A g anaspis pelleranoi. 32. Head, anterior view (170 x, 100 m); 33. Female antenna (97 x, 100 m); 34. Flagellomerous 1 and 2 of male (130 x, 100 m); 35. Pronotal plate (288 x, 100 m); 36. Head, mesosoma and anterior part of metasoma, lateral view (48 x, 250 m); 37. Mesosoma, dorsal view (64 x, 250 m); 38. Forewing (10 x, 0,5 mm); 39. Metacoxa (163 x, 100 m).
FIGURES 24 – 31. Odontosema anastrephae. 24 in Eucoilinae species (Hymenoptera: Cynipoidea: Figitidae) parasitoids of fruitinfesting dipterous larvae in Brazil: identity, geographical distribution and host associations
FIGURES 24 – 31. Odontosema anastrephae. 24. Head, anterior view (201 x, 100 m); 25. Female antenna (135 x, 100 m); 26. Flagellomerous 1 and 2 of male (145 x, 100 m); 27. Pronotal plate (130 x, 100 m); 28. Head, mesosoma and anterior part of metasoma, lateral view (37 x, 250 m); 29. Mesosoma, dorsal view (68 x, 250 m); 30. Forewing (10 x, 0,5 mm); 31. Metacoxa (84 x, 100 m).
FIGURES 16 – 23. Dicerataspis grenadensis. 16 in Eucoilinae species (Hymenoptera: Cynipoidea: Figitidae) parasitoids of fruitinfesting dipterous larvae in Brazil: identity, geographical distribution and host associations
FIGURES 16 – 23. Dicerataspis grenadensis. 16. Head, anterior view (140 x, 100 m); 17. Female antenna (204 x, 100 m); 18. Flagellomerous 1 and 2 of male (280 x, 100 m); 19. Pronotal plate (366 x, 20 m); 20. Head, mesosoma and anterior part of metasoma, lateral view (120 x, 100 m); 21. Mesosoma, dorsal view (130 x, 100 m); 22. Forewing (10 x, 0,5 mm); 23. Metacoxa (130 x, 100 m).
FIGURES 56 – 63. Leptopilina boulardi. 56 in Eucoilinae species (Hymenoptera: Cynipoidea: Figitidae) parasitoids of fruitinfesting dipterous larvae in Brazil: identity, geographical distribution and host associations
FIGURES 56 – 63. Leptopilina boulardi. 56. Head, anterior view (407 x, 20 m); 57. Female antenna (309 x, 20 m); 58. Flagellomerous 1 and 2 of male (267 x, 20 m); 59. Pronotal plate (790 x, 20 m); 60. Head, mesosoma and anterior part of metasoma, lateral view (100 x, 100 m); 61. Mesosoma, dorsal view (335 x, 20 m); 62. Forewing (10 x, 0.14 mm); 63. Metacoxa (230 x, 100 m).
FIGURES 48 – 55. Aganaspis nordlanderi. 48 in Eucoilinae species (Hymenoptera: Cynipoidea: Figitidae) parasitoids of fruitinfesting dipterous larvae in Brazil: identity, geographical distribution and host associations
FIGURES 48 – 55. Aganaspis nordlanderi. 48. Head, anterior view (174 x, 100 m); 49. Female antenna (66 x, 250 m); 50. Flagellomerous 1 and 2 of male (84 x, 100 m); 51. Pronotal plate (105 x, 100 m); 52, Head, mesosoma and anterior part of metasoma, lateral view (35 x, 500 m); 53. Mesosoma, dorsal view (74 x, 250 m); 54. Forewing (10 x, 0,5 mm); 55. Metacoxa (120 x, 100 m).
Fig. 4 in Four new species of Alloxysta (Hym.: Cynipoidea: Figitidae: Charipinae) from Petr Starý's collection
Fig. 4. Alloxysta staryi Ferrer-Suay & Pujade-Villar sp. nov., holotype, ♂ (UB). A. Fore wing. Inset: detail of radial cell; arrow marks the limit of R1 vein. B. Pronotum. C. Body. D. Propodeum. E. Antenna. Scale bars = 50 µ m.
Fig. 3 in Four new species of Alloxysta (Hym.: Cynipoidea: Figitidae: Charipinae) from Petr Starý's collection
Fig. 3. Alloxysta poli Ferrer-Suay sp. nov. A. Female radial cell. B. Male radial cell. C. Pronotum. D. Propodeum. E. Male antenna. F. Female antenna. Arrows mark the limit of R1 vein. Scale bars = 50 µm.
Fig. 1 in Four new species of Alloxysta (Hym.: Cynipoidea: Figitidae: Charipinae) from Petr Starý's collection
Fig. 1. Alloxysta llumae Ferrer-Suay sp. nov., holotype, ♀ (UB). A. Fore wing. B. Pronotum. C. Propodeum. D. Antenna. E. Body. F. Radial cell. Scale bars = 50 µm.
Fig. 2 in Four new species of Alloxysta (Hym.: Cynipoidea: Figitidae: Charipinae) from Petr Starý's collection
Fig. 2. Alloxysta onae Ferrer-Suay sp. nov. A. Female radial cell. B. Paratype, ♂ (UB), radial cell. C. Pronotum. D. Paratype, ♂ (UB), antenna. E. Female antenna. F. Propodeum. G. Body. Arrows mark the limit of R1 vein, which determine the partially open radial cell. Scale bars = 50 µm.
Figs 5–14 in Revision of Alloxysta from the north-western Balkan Peninsula with description of two new species (Hymenoptera: Figitidae: Charipinae)
Figs 5–14. Types of radial cell in forewing of Alloxysta species. 5 – A. castanea (Hartig, 1841); 6 – A. macrophadna (Hartig, 1841); 7 – A. pleuralis (Cameron, 1879); 8 – A. mullensis (Cameron, 1883); 9 – A. victrix (Westwood, 1833); 10 – A. fracticornis (Thomson, 1862); 11 – A. arcuata (Kieffer, 1902); 12 – A. brevis (Thomson, 1862); 13 – A. fuscicornis (Hartig, 1841); 14 – A. salicicola Belizin, 1973.
Figs 1–4 in Revision of Alloxysta from the north-western Balkan Peninsula with description of two new species (Hymenoptera: Figitidae: Charipinae)
Figs 1–4. General features of Alloxysta species. 1 – mesosoma, lateral view; 2 – metasoma, lateral view; 3 – mesoscutum, dorsal view; 4 – head, frontal view.
Figs 25–28 in Revision of Alloxysta from the north-western Balkan Peninsula with description of two new species (Hymenoptera: Figitidae: Charipinae)
Figs 25–28. Types of propodeum and pronotum in Alloxysta species. 25 – propodeum of A. arcuata (Kieffer, 1902); 26 – propodeum of A. victrix (Westwood, 1833); 27 – pronotum of A. arcuata; 28 – pronotum of A. brevis (Thomson, 1862).
Figs 34–38 in Revision of Alloxysta from the north-western Balkan Peninsula with description of two new species (Hymenoptera: Figitidae: Charipinae)
Figs 34–38. Alloxysta slovenica Ferrer-Suay & Pujade-Villar sp. nov. 34 – forewing; 35 – radial cell; 36 – antenna; 37 – propodeum; 38 – pronotum.
Figs 15–24 in Revision of Alloxysta from the north-western Balkan Peninsula with description of two new species (Hymenoptera: Figitidae: Charipinae)
Figs 15–24. Antenna of Alloxysta species. 15 – A. castanea (Hartig, 1841); 16 – A. macrophadna (Hartig, 1841); 17 – A. mullensis (Cameron, 1883); 18 – A. victrix (Westwood, 1833); 19 – A. arcuata (Kieffer, 1902); 20 – A. fracticornis (Thomson, 1862); 21 – A. brevis (Thomson, 1862); 22 – A. fuscicornis (Hartig, 1841); 23 – A. pleuralis (Cameron, 1879); 24 – A. salicicola Belizin, 1973.
Fig. 3. a. Aegilips ustulatus Belizin, 1973 in Revision of the Eurasian species of Aegilips Haliday, 1835 (Hymenoptera: Figitidae: Anacharitinae)
Fig. 3. a. Aegilips ustulatus Belizin, 1973, mesosoma in lateral view. b. A. longicellus Belizin, 1951, mesosoma in dorsal-lateral view. c. A. flavidicornis (Kieffer, 1911), mesosoma in dorsal view. d. A. atricornis Fergusson, 1985, mesosoma in dorsal view. e. A. atricornis, mesoscutum in lateral view. f. A. paucus Belizin, 1961, mesosoma in dorsal view. g. A. paucus, mesoscutum in lateral view.
Fig. 1. a in Revision of the Eurasian species of Aegilips Haliday, 1835 (Hymenoptera: Figitidae: Anacharitinae)
Fig. 1. a. Pronotal plate of Acanthaegilopsis sp. in anterior view. b. Xyalaspis sp., mesoscutum in lateral view. c. Aegilips sp., mesoscutum in lateral view. d. Aegilips zaitzevi Kovalev, 1974, head in anterior view. e. Aegilips nitidulus Dalman, 1823, forewing venation. f. Aegilips romseyensis Fergusson, 1985, head in anterior view. g. Aegilips zaitzevi Kovalev, 1974, forewing venation.
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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.
Annotated Behaviour and Observability Dataset (ABODe)
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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.