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FIGURES 40–46 in New findings on the Neotropical species Hermetia goncalvensi Albuquerque, 1955 (Diptera: Stratiomyidae): redescription, puparium, and geographical records
FIGURES 40–46. Puparium of Hermetia goncalvensi, thorax and abdomen. 40. Meso- and metathorax, and abdominal segments 1–8, dorsal view. 41. Meso- and metathorax, and abdominal segments 1–8, ventral view. 42. Abdominal segments 7–8, dorsal view. 43. Abdominal segments 7–8, ventral view. 44. Dorsal seta of abdominal segment. 45. Terminal portion of segment 8, ventral view. 46. Detail of tegument of segment 8. Abbreviations: abd spr, abdominal spiracle; AP, apical seta; asl, anal slit; D, dorsal seta; DC, dorsocentral seta; DL, dorsolateral seta; L, lateral seta; pns, pinnate seta; p spr o, posterior spiracular opening; SAP, subapical seta; V, ventral seta; VL, ventrolateral seta.
FIGURES 30–35 in New findings on the Neotropical species Hermetia goncalvensi Albuquerque, 1955 (Diptera: Stratiomyidae): redescription, puparium, and geographical records
FIGURES 30–35. Puparium of Hermetia goncalvensi, head and prothorax, dorsal view. 30. Head and prothorax. 31. Head in detail. 32. Clypeofrontal seta. 33. Antenna. 34. Prothoracic spiracle. 35. Labrum. Abbreviations: ant, antenna; aa, anterior antennomere; AD, anterodorsal seta; ba, basal antennomere; CF, clypeofrontal setae; D, dorsal seta; DL, dorsolateral seta; e, eye; LB, labral seta; prth spr, prothoracic spiracle; sn, sensilla; VL, ventrolateral seta.
FIGURES 14–23 in New findings on the Neotropical species Hermetia goncalvensi Albuquerque, 1955 (Diptera: Stratiomyidae): redescription, puparium, and geographical records
FIGURES 14–23. Male terminalia of Hermetia goncalvensi. 14. Sternite 8, ventral view. 15. Tergite 8, ventral view. 16–17. Genitalia, dorsal and lateral views, respectively. 18. Epandrium, proctiger and cerci, dorsal view. 19–20. Phallus, dorsal and lateral views, respectively. 21. Genitalia with phallus, dorsal view. 22–23. Genitalia with phallus, epandrium, proctiger and cerci removed, dorsal and ventral views, respectively. Scale bar, 0.1 mm. Abbreviations: cerc, cercus; epand, epandrium; goncx apod, gonocoxal apodeme; gonst, gonostylus; mps, median process of systernite; ph, phallus; pm sh, parameral sheath; prct, proctiger; st, sternite; synst, systernite; tg, tergite.
FIGURES 3–13 in New findings on the Neotropical species Hermetia goncalvensi Albuquerque, 1955 (Diptera: Stratiomyidae): redescription, puparium, and geographical records
FIGURES 3–13. Additional details of Hermetia goncalvensi. 3–4. Antenna (3. Male; 4. Female). 5–6. Head, dorsal view (5. Male; 6. Female). 7–8. Head, frontal view (7. Male; 8. Female). 9–10. Head, lateral view (9. Male; 10. Female). 11. Mediotergite, male. 12–13. Wing (12. Male; 13. Female). Scale bar, 1 mm. Abbreviations: A1, first branch of anal vein; al, alula; an lb, anal lobe; bm, basal medial cell; br, basal radial cell; c, costal cell; C, costal vein; Cu, cubital vein or cubitus; CuA, anterior branch of cubital vein; cua, anterior cubital cell; CuA+CuP, anterior branch of cubital vein + posterior branch of cubital vein; CuP, posterior branch of cubital vein; cup, posterior cubital cell; d, discal cell; flg, flagellum; flgm, flagellomere; h, humeral crossvein; M, medial vein or media; M1, first branch of media; m1, first medial cell; M1+2, fused first and second branch of media; M2, second branch of media; m2+3, fused second and third cell of media; M3, third branch of media; M3+4, fused third and fourth branch of media; M4, fourth branch of media; m4, fourth medial cell; m–cu, medial–cubital crossvein; m–m, medial crossvein; ped, pedicel; R1, anterior branch of radius; r1, first radial cell; R2+3, second branch of radius; r2+3, second + third radial cell; r4, fourth radial cell; R4, upper branch of third branch of radius; r5, fifth radial cell; R5, lower branch of third branch of radius; r–m, radial–medial crossvein; Rs, radial sector; sc, subcostal cell; Sc, subcostal vein; scp, scape.
FIGURE 5 in New finding of Rhadinoloricaria macromystax (Siluriformes: Loricariidae) redescription of the genus and description of a new species from Ecuador
FIGURE 5. Buccal ornamentation in Rhadinoloricaria stewarti, a) MEPN 15094, 108.7 mm SL, holotype. b) MEPN 14710, 114.6 mm SL, paratype.
FIGURE 7 in New finding of Rhadinoloricaria macromystax (Siluriformes: Loricariidae) redescription of the genus and description of a new species from Ecuador
FIGURE 7. Detail of maxillary barbel length, abdomen cover and buccal ornamentation. a) Crossoloricaria rhami, 127.0 mm SL, holotype, taken from ACSI image data base. b) Crossoloricaria bahuaja. MUSM 9916, 115.9 mm SL, holotype, photograph by L. Chumbe Nolasco. c) Apistoloricaria condei, MEPN 3041, 140.1 mm SL, paratype. d) Apistoloricaria laani MBUCV-V- 19332, 116.7 mm SL.
FIGURE 17 in European Lepidocyrtus lignorum-group, new findings and redescritpion of Lepidocyrtus pulchellus Denis, 1926 (Collembola, Entomobryidae)
FIGURE 17. Lepidocyrtus lignorum-group, lateral habitus of all European species currently included in the group. On the left side of the figure, species without body pigmentation are represented, in the center species with pigment forming dots or bands, on the right side species with pigment spread on the thorax and abdomen (above—less pigmented species, below—more pigmented species). Image of L. vexillosus extracted from http://v3.boldsystems.org/index.php/Taxbrowser_Taxonpage?taxid=398041. Image of L. instratus extracted from Handschin (1924). The image of L. pulchellus correspond to one specimen of sample LP389 (from Rapallo, Italy).
FIGURE 14. Lepidocyrtus pulchellus, abd.IV in European Lepidocyrtus lignorum-group, new findings and redescritpion of Lepidocyrtus pulchellus Denis, 1926 (Collembola, Entomobryidae)
FIGURE 14. Lepidocyrtus pulchellus, abd.IV chaetotaxy, broad black circles—broad ciliated macrochaetae, small black circles—thin ciliated macrochaetae, psp—pseudoporus.
FIGURES 12–13. Lepidocyrtus pulchellus. 12, abd.II in European Lepidocyrtus lignorum-group, new findings and redescritpion of Lepidocyrtus pulchellus Denis, 1926 (Collembola, Entomobryidae)
FIGURES 12–13. Lepidocyrtus pulchellus. 12, abd.II chaetotaxy (left side), black circles—broad ciliated macrochaetae, psppseudoporus; 13, abd.III chaetotaxy (left side), broad black circles—broad ciliated macrochaetae, small black circles—thin ciliated macrochaetae, psp—pseudoporus.
FIGURE 2. Lepidocyrtus pulchellus, habitus lateral. A and B in European Lepidocyrtus lignorum-group, new findings and redescritpion of Lepidocyrtus pulchellus Denis, 1926 (Collembola, Entomobryidae)
FIGURE 2. Lepidocyrtus pulchellus, habitus lateral. A and B specimens from the type locality (Campigna, see « Material examined »); C and D specimens from Bertinoro (see « Material examined »); E specimen from Viterbo (sample LP521), scale bar = 1 mm.
Figure 13. Cleveland tyrannosaur skull, CMNH 7541 in The Cleveland tyrannosaur skull (Nanotyrannus or Tyrannosaurus): new findings based on CT scanning, with special reference to the braincase
Figure 13. Cleveland tyrannosaur skull, CMNH 7541. Volume renderings of digitally extracted vomer derived from CT data in A, dorsal; B, left lateral views. Note that rostral portion of the bone is primitive in being lanceolate and forked. Dotted lines represent restored portions in the area corresponding to the transverse oblique plane of fracture (see Figure 4C). Scale bar equals 5 cm. See Appendix for abbreviations.
Figure 14. Cleveland tyrannosaur skull, CMNH 7541. A–D in The Cleveland tyrannosaur skull (Nanotyrannus or Tyrannosaurus): new findings based on CT scanning, with special reference to the braincase
Figure 14. Cleveland tyrannosaur skull, CMNH 7541. A–D, progressively more caudal CT slices through the snout at the position shown in E, showing structures interpretable as respiratory turbinates (arrows). Note that some symmetry is preserved in A and B. In C, a structure (arrow) can be seen to cross a crack. D shows a series of structures associated with the maxilla. Scale bar equals 1 cm.
Figure 8. Cleveland tyrannosaur skull, CMNH 7541 in The Cleveland tyrannosaur skull (Nanotyrannus or Tyrannosaurus): new findings based on CT scanning, with special reference to the braincase
Figure 8. Cleveland tyrannosaur skull, CMNH 7541. Surface renderings of digitally extracted braincase derived from CT data in A, rostral; B, rostroventral; C, ventral views. Figure 7A–C shows corresponding stereopairs of volume renderings. Scale bar equals 10 cm. See Appendix for abbreviations.
Figure 10. Cleveland tyrannosaur skull, CMNH 7541 in The Cleveland tyrannosaur skull (Nanotyrannus or Tyrannosaurus): new findings based on CT scanning, with special reference to the braincase
Figure 10. Cleveland tyrannosaur skull, CMNH 7541. Volume (A) and surface (B) renderings of digitally extracted left quadrate derived from CT data in medial view. Volume renderings (A) are stereopairs; arrow points to the pneumatic foramen. Surface rendering (B) is partially transparent to reveal the internal pneumatic sinus. Scale bar equals 5 cm. See Appendix for abbreviations.
Figure 7. Cleveland tyrannosaur skull, CMNH 7541 in The Cleveland tyrannosaur skull (Nanotyrannus or Tyrannosaurus): new findings based on CT scanning, with special reference to the braincase
Figure 7. Cleveland tyrannosaur skull, CMNH 7541. Volume renderings (stereopairs) of digitally extracted braincase derived from CT data in A, rostral; B, rostroventral; C, ventral views. Figure 8A–C provides corresponding labeled views. Scale bar equals 10 cm.
Figure 5. Cleveland tyrannosaur skull, CMNH 7541 in The Cleveland tyrannosaur skull (Nanotyrannus or Tyrannosaurus): new findings based on CT scanning, with special reference to the braincase
Figure 5. Cleveland tyrannosaur skull, CMNH 7541. Volume renderings (stereopairs) of digitally extracted braincase derived from CT data in A, left lateral; B, left rostroventrolateral; C, caudal views. Figure 6A–C provides corresponding labeled views. Scale bar equals 10 cm.
Figure 3. Cleveland tyrannosaur skull, CMNH 7541 in The Cleveland tyrannosaur skull (Nanotyrannus or Tyrannosaurus): new findings based on CT scanning, with special reference to the braincase
Figure 3. Cleveland tyrannosaur skull, CMNH 7541. Stereophotographs of A, skull in dorsal view; B, skull in caudal view; C, close-up of cranial base in ventral view. Orientations reflect posture with lateral semicircular canal horizontal. Scale bars equal 10 cm.
Figure 1. Cleveland tyrannosaur skull, CMNH 7541 in The Cleveland tyrannosaur skull (Nanotyrannus or Tyrannosaurus): new findings based on CT scanning, with special reference to the braincase
Figure 1. Cleveland tyrannosaur skull, CMNH 7541. Stereophotographs of skull in A, left lateral view; B, right lateral view. Orientations reflect posture with lateral semicircular canal horizontal. Scale bars equal 10 cm.
FIGURE 2. A in New find of Dactylophrya-stage of parasitic suctorian of genus Tachyblaston Martin, 1909 (Ciliophora, Suctorea) with comments on genus taxonomy
FIGURE 2. A—localization of Tachyblaston reversum on the host body; B—stalk of T. revetsum: C, D—magnified view on T. revetsum (c—lorica aperture cleft).
FIGURE 2. Jurodes ignoramus Ponomarenko, 1985 in Jurodidae (Coleoptera: Archostemata) from Transbaikalia: new findings and redescription of type material
FIGURE 2. Jurodes ignoramus Ponomarenko, 1985. А and В, Specimens PIN, 5026/957 and 5026/956 respectively, wetted with 96% ethanol. Scale bars = 1 mm.
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.