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FIGURE 3 in Redescription of species of the Neotropical parasitoid Notiospathius Mathews et Marsh (Braconidae: Doryctinae) based on their nineteenth and early twentieth century types
FIGURE 3. Notiospathius leucacrocera: A) mesosoma, lateral view; B) metasoma, dorsal view. Notiospathius sculpturatus: C) mesosoma, lateral view; D) mesosoma, dorsal view.
FIGURE 2 in Redescription of species of the Neotropical parasitoid Notiospathius Mathews et Marsh (Braconidae: Doryctinae) based on their nineteenth and early twentieth century types
FIGURE 2. Notiospathius fuscipes: A) head, lateral view; B) head, dorsal view; C) mesosoma, lateral view; D) propodeum, dorsal view; E) hind coxa, lateral view; F) metasoma, dorsal view.
FIGURE 17. Haploniscus unicornis complex, female stage V, Type 1, ZMH K-42442 in Description of four new species from the Haploniscus unicornis Menzies, 1956 complex (Isopoda: Asellota: Haploniscidae)
FIGURE 17. Haploniscus unicornis complex, female stage V, Type 1, ZMH K-42442 (A, B) and K-42439 (C, D); A, left and right antenna 2, with lateral view of article 3; B, antenna 1; C, right mandible; D, left mandible. Scale bars 0.1 mm.
FIGURE 19. Haploniscus unicornis complex, female stage V, Type 2, ZMH K-42446 in Description of four new species from the Haploniscus unicornis Menzies, 1956 complex (Isopoda: Asellota: Haploniscidae)
FIGURE 19. Haploniscus unicornis complex, female stage V, Type 2, ZMH K-42446; A, habitus, dorsal view; B, habitus, lateral view; C, posterior body, ventral view; D, operculum. Scale bars 1 mm for A–C and 0.1 mm for D.
FIGURE 20. Haploniscus unicornis complex, female stage V, Type 2, ZMH K-42446 in Description of four new species from the Haploniscus unicornis Menzies, 1956 complex (Isopoda: Asellota: Haploniscidae)
FIGURE 20. Haploniscus unicornis complex, female stage V, Type 2, ZMH K-42446 (A, B) and K-42445 (C, D); A, antenna 1; B, antenna 2; C, left mandible; D, right mandible. Scale bars 0.1 mm.
FIGURE 16. Haploniscus unicornis complex, female stage V, Type 1, ZMH K-42439 in Description of four new species from the Haploniscus unicornis Menzies, 1956 complex (Isopoda: Asellota: Haploniscidae)
FIGURE 16. Haploniscus unicornis complex, female stage V, Type 1, ZMH K-42439; A, habitus, dorsal view; B, habitus, lateral view; C, posterior body, ventral view; D, operculum. Scale bars 1 mm for A–C and 0.1 mm for D.
FIGURE 18. Haploniscus unicornis complex, female stage V, Type 1 ZMH K-42439 in Description of four new species from the Haploniscus unicornis Menzies, 1956 complex (Isopoda: Asellota: Haploniscidae)
FIGURE 18. Haploniscus unicornis complex, female stage V, Type 1 ZMH K-42439; A, maxilla 1; B, maxilla 2; C, maxilliped; D, maxilliped palp. Scale bars 0.1 mm.
FIGURE 21. Haploniscus unicornis complex, female stage V, Type 2, ZMH K-42446 in Description of four new species from the Haploniscus unicornis Menzies, 1956 complex (Isopoda: Asellota: Haploniscidae)
FIGURE 21. Haploniscus unicornis complex, female stage V, Type 2, ZMH K-42446; A, maxilla 1; B, maxilla 2; C, maxilliped. Scale bars 0.1 mm.
FIGURE 6. A–B in Acidiella longipennis Hendel, the type species of Acidiella Hendel (Diptera: Tephritidae: Trypetini), with recognition of two new allied species from Myanmar
FIGURE 6. A–B. Female postabdomen excluding aculeus, ventral and dorsal views (inset at 8x main figure). A. Acidiella longipennis. B. A. kambaitiensis, sp. nov. C–D. Aculeus. C. A. longipennis. D. A. kambaitiensis, sp. nov. E–F. Spermathecae, E. A. longipennis. F. A. kambaitiensis, sp. nov. G. Egg of A. longipennis.
FIGURE 4. A–C in Acidiella longipennis Hendel, the type species of Acidiella Hendel (Diptera: Tephritidae: Trypetini), with recognition of two new allied species from Myanmar
FIGURE 4. A–C. Lateral and caudal view of epandrial complex. A. Acidiella longipennis, holotype. B. A. spinipenis, sp. nov., holotype. C. A. kambaitiensis, sp. nov., holotype.
FIGURE 3. A–D. Wings. A. Acidiella longipennis, holotype male. B. A in Acidiella longipennis Hendel, the type species of Acidiella Hendel (Diptera: Tephritidae: Trypetini), with recognition of two new allied species from Myanmar
FIGURE 3. A–D. Wings. A. Acidiella longipennis, holotype male. B. A. longipennis, Myanmar male; C. A. spinipenis, sp. nov., holotype male. D. A. kambaitiensis, sp. nov., holotype male. E–J. Abdomens. E. A. longipennis, holotype male. F. A. longipennis, Myanmar male; G. A. longipennis, Myanmar female. H. A. spinipenis, sp. nov., holotype male. I. A. kambaitiensis, sp. nov., female. J. A. kambaitiensis, sp. nov., holotype male.
FIGURE 1. A–C in Acidiella longipennis Hendel, the type species of Acidiella Hendel (Diptera: Tephritidae: Trypetini), with recognition of two new allied species from Myanmar
FIGURE 1. A–C. Myanmar specimens in lateral and dorsal views. A. Acidiella longipennis, male. B. A. spinipenis, sp. nov., male. C. A. kambaitiensis, sp. nov., male.
FIGURE 2. A–C in Acidiella longipennis Hendel, the type species of Acidiella Hendel (Diptera: Tephritidae: Trypetini), with recognition of two new allied species from Myanmar
FIGURE 2. A–C. Heads in lateral and frontal views. A. Acidiella longipennis, holotype male. B. A. spinipenis, sp. nov., holotype male. C. A. kambaitiensis, sp. nov., holotype male.
FIGURE 5. A–D in Acidiella longipennis Hendel, the type species of Acidiella Hendel (Diptera: Tephritidae: Trypetini), with recognition of two new allied species from Myanmar
FIGURE 5. A–D. Glans (inset at 8x main figure). A. Acidiella longipennis, holotype. B. A. longipennis, Myanmar specimen; C. A. spinipenis, sp. nov., holotype. D. A. kambaitiensis, sp. nov., holotype. E. Ejeculatory apodeme of A. longipennis, Myanmar male.
FIGURE 46 in Molecular and morphological description of a new species of Halisarca (Demospongiae: Halisarcida) from Mediterranean Sea and a redescription of the type species Halisarca dujardini
FIGURE 46. Phylogenetic position of Halisarca harmelini in demosponge phylogeny. Posterior majority-rule consensus tree obtained from the analysis of 3411 aligned amino acid positions from 33 taxa under the CAT+GTR+Γ model is shown. Phylogenetic analysis was conducted with the PhyloBayes 2.3d program with four independent chains running in parallel until convergence (maxdiff = 0.06). The numbers at each node are Bayesian posterior probabilities. Fungi, Homoscleromorpha, and major clades of demosponges are collapsed for clarity. The two species of Halisarca are in bold. The complete tree is shown as supplementary data.
FIGURE 45. Cox1 in Molecular and morphological description of a new species of Halisarca (Demospongiae: Halisarcida) from Mediterranean Sea and a redescription of the type species Halisarca dujardini
FIGURE 45. Cox1 divergence between Halisarca harmelini and Halisarca dujardini in comparison to cox1 polymorphism within Chondrilla nucula. Neighbor-joining tree was computed using uncorrected "p" distances for nucleotide data.
FIGURES 36–43 in Molecular and morphological description of a new species of Halisarca (Demospongiae: Halisarcida) from Mediterranean Sea and a redescription of the type species Halisarca dujardini
FIGURES 36–43. Micrographs of secretive cells (36–40) and symbiotic bacteria (41–43) of Halisarca harmelini sp. nov. 36— Spherulous cell; 37—Vacuolar cell; 38—Microgranular cell; 39—Granular cell; 40—Rhabdiferous cell; 41, 42—Symbiotic bacteria Type B1; 43—Symbiotic bacteria Type B2. Abbreviations: B1—symbiotic bacteria type 1; G—granules; GC—Golgi complex; N—nucleus; R—rhabdite-like inclusions; S—spherule; V—vacuole. Scale bars: 36—3 µm; 37—7 µm; 38—2 µm; 39—1.5 µm; 40—2 µm; 41—0.5 µm; 42—1 µm; 43—0.5 µm.
FIGURE 27–29 in Molecular and morphological description of a new species of Halisarca (Demospongiae: Halisarcida) from Mediterranean Sea and a redescription of the type species Halisarca dujardini
FIGURE 27–29. Anatomy of Halisarca harmelini sp. nov. 27—General view (semi-thin section); 28 – choanocyte chamber (TEM); 29—basal part (TEM). Abbreviations: Ar, archaeocyte; B2, bacteria type 2; C, cuticle; CC, choanocyte chambers; Ch, choanocytes; SC, spherulous cell; VC, vacuolar cell. Scale bars: 27—100 µm; 28—10 µm; 29—5 µm.
FIGURES 30–35 in Molecular and morphological description of a new species of Halisarca (Demospongiae: Halisarcida) from Mediterranean Sea and a redescription of the type species Halisarca dujardini
FIGURES 30–35. TEM micrographs of the cells of Halisarca harmelini sp. nov. 30—exopinacocyte; 31—choanocytes; 32— endopinacocyte; 33—basopinacocyte; 34—nucleolate amoebocyte; 35—lophocyte. Abbreviations: B1—bacteria type 1; Ccuticle; CB—cytoplasmic bridge; EC—external cytoplasmic part; F—flagellum; Mv—microvilli; N—nucleus; T—cell's "tail". Scale bars: 30–2.5 µm; 31—2 µm; 32—2.5 µm; 33—2 µm; 34—1 µm; 35—2 µm.
FIGURE 20 in Molecular and morphological description of a new species of Halisarca (Demospongiae: Halisarcida) from Mediterranean Sea and a redescription of the type species Halisarca dujardini
FIGURE 20. Halisarca dujardini. Comparative TEM micrographs of mesohylar cells with inclusions and symbiotic bacteria of Halisarca dujardini from different seas. Abbreviations: G—granules; N—nucleus; Ph—phagosomes; S—spherulous inclusions; V—vacuoles.
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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)
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.