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Fig. 5 in New deep-sea Atlantic and Antarctic species of Abyssorchomene De Broyer, 1984 (Amphipoda, Lysianassoidea, Uristidae) with a redescription of A. abyssorum (Stebbing, 1888)
Fig. 5. Abyssorchomene abyssorum (Stebbing, 1888), holotype, ♂, 7.5 mm (BMNH 1889.5.15.23). Most aesthetascs omitted from A1 callynophore. Scale bars = 0.5 mm.
Fig. 6 in New deep-sea Atlantic and Antarctic species of Abyssorchomene De Broyer, 1984 (Amphipoda, Lysianassoidea, Uristidae) with a redescription of A. abyssorum (Stebbing, 1888)
Fig. 6. Abyssorchomene abyssorum (Stebbing, 1888), holotype, ♂, 7.5 mm (BMNH 1889.5.15.23). Scale bar = 0.1 mm.
Fig. 13 in New deep-sea Atlantic and Antarctic species of Abyssorchomene De Broyer, 1984 (Amphipoda, Lysianassoidea, Uristidae) with a redescription of A. abyssorum (Stebbing, 1888)
Fig. 13. Abyssorchomene patriciae sp. nov., holotype, ♀, 10.5 mm (NHM UK 2022.6); allotype, ♂, 7.5 mm (NHM UK 2022.7). Figures with sex not indicated are of female. Scale bars = 0.1 mm.
Fig. 21 in New deep-sea Atlantic and Antarctic species of Abyssorchomene De Broyer, 1984 (Amphipoda, Lysianassoidea, Uristidae) with a redescription of A. abyssorum (Stebbing, 1888)
Fig. 21. Abyssorchomene scotianensis (Andres, 1983), ♀, 12 mm (CMNC 2022-0005); ♂, 12.4 mm (CMNC 2022-0007). Figures with sex not indicated are of female. Scale bars = 0.1 mm.
Fig. 20 in New deep-sea Atlantic and Antarctic species of Abyssorchomene De Broyer, 1984 (Amphipoda, Lysianassoidea, Uristidae) with a redescription of A. abyssorum (Stebbing, 1888)
Fig. 20. Abyssorchomene scotianensis (Andres, 1983), ♀, 12 mm (CMNC 2022-0005). Scale bars = 0.1 mm.
Fig. 8 in New deep-sea Atlantic and Antarctic species of Abyssorchomene De Broyer, 1984 (Amphipoda, Lysianassoidea, Uristidae) with a redescription of A. abyssorum (Stebbing, 1888)
Fig. 8. Abyssorchomene abyssorum (Stebbing, 1888), holotype, ♂, 7.5 mm (BMNH 1889.5.15.23). Setae omitted on merus-propodus outline of Gn2. Scale bars = 1 mm
Fig. 15 in New deep-sea Atlantic and Antarctic species of Abyssorchomene De Broyer, 1984 (Amphipoda, Lysianassoidea, Uristidae) with a redescription of A. abyssorum (Stebbing, 1888)
Fig. 15. Abyssorchomene patriciae sp. nov., holotype, ♀, 10.5 mm (NHM UK 2022.6). Setae omitted on Gn2 propodus outline and dactylus detail. Scale bars = 0.1 mm unless indicated otherwise.
Fig. 18 in New deep-sea Atlantic and Antarctic species of Abyssorchomene De Broyer, 1984 (Amphipoda, Lysianassoidea, Uristidae) with a redescription of A. abyssorum (Stebbing, 1888)
Fig. 18. Abyssorchomene scotianensis (Andres, 1983). Habitus, ♂, size unrecorded (specimen not isolated) (RBINS I.G. 31.070), RV Polarstern ANT XXIII-8 (IPY-CAML), station PS69-706-7, Weddell Sea, off East Peninsula, Larsen B, 65°27′ S, 61°27′ W, 828 m, 15–17 January 2007 (photo taken by Cédric d'Udekem d'Acoz, permission granted).
Fig. 14 in New deep-sea Atlantic and Antarctic species of Abyssorchomene De Broyer, 1984 (Amphipoda, Lysianassoidea, Uristidae) with a redescription of A. abyssorum (Stebbing, 1888)
Fig. 14. Abyssorchomene patriciae sp. nov., holotype, ♀, 10.5 mm (NHM UK 2022.6); allotype, ♂, 7.5 mm (NHM UK 2022.7). Setae omitted on Gn1–2 details. Figures with sex not indicated are of female. Scale bars = 0.5 mm unless indicated otherwise.
Fig. 17 in New deep-sea Atlantic and Antarctic species of Abyssorchomene De Broyer, 1984 (Amphipoda, Lysianassoidea, Uristidae) with a redescription of A. abyssorum (Stebbing, 1888)
Fig. 17. Abyssorchomene patriciae sp. nov., holotype, ♀, 10.5 mm (NHM UK 2022.6); allotype, ♂, 7.5 mm (NHM UK 2022.7). Figures with sex not indicated are of female. Scale bars = 0.5 mm unless indicated otherwise.
Fig. 7 in New deep-sea Atlantic and Antarctic species of Abyssorchomene De Broyer, 1984 (Amphipoda, Lysianassoidea, Uristidae) with a redescription of A. abyssorum (Stebbing, 1888)
Fig. 7. Abyssorchomene abyssorum (Stebbing, 1888), holotype, ♂, 7.5 mm (BMNH 1889.5.15.23). Setae omitted on Mxpd. Scale bars = 0.1 mm.
Fig. 12 in New deep-sea Atlantic and Antarctic species of Abyssorchomene De Broyer, 1984 (Amphipoda, Lysianassoidea, Uristidae) with a redescription of A. abyssorum (Stebbing, 1888)
Fig. 12. Abyssorchomene patriciae sp. nov., holotype, ♀, 10.5 mm (NHM UK 2022.6); allotype, ♂, 7.5 mm (NHM UK 2022.7). Setae omitted on female left Md palp. Figures with sex not indicated are of female. Scale bars = 0.1 mm.
Fig. 11 in New deep-sea Atlantic and Antarctic species of Abyssorchomene De Broyer, 1984 (Amphipoda, Lysianassoidea, Uristidae) with a redescription of A. abyssorum (Stebbing, 1888)
Fig. 11. Abyssorchomene patriciae sp. nov., holotype, ♀, 10.5 mm (NHM UK 2022.6); allotype, ♂, 7.5 mm (NHM UK 2022.7), RRS James Cook (2011), station JC 062-063, Northeast Atlantic, Porcupine Abyssal Plain, depth 4848 m, 8 August 2011. Aesthetascs omitted from A1 callynophore. End of flagellar articles missing on male and female A1. Scale bars = 0.5 mm unless indicated otherwise.
Fig. 3 in New deep-sea Atlantic and Antarctic species of Abyssorchomene De Broyer, 1984 (Amphipoda, Lysianassoidea, Uristidae) with a redescription of A. abyssorum (Stebbing, 1888)
Fig. 3. Abyssorchomene abyssorum (Stebbing, 1888), ♀, 9.5 mm (ZMH K-61206). Rows of pectinate setae omitted on propodus of Gn2 detail. Scale bars = 0.5 mm unless indicated otherwise.
Fig. 10 in New deep-sea Atlantic and Antarctic species of Abyssorchomene De Broyer, 1984 (Amphipoda, Lysianassoidea, Uristidae) with a redescription of A. abyssorum (Stebbing, 1888)
Fig. 10. Abyssorchomene patriciae sp. nov., habitus, ♂, size unknown, RRS James Cook (2007), Northwest Atlantic, Mid-Atlantic Ridge, north of Charlie-Gibbs Fracture Zone, station JC 011-079, 53°56.44′ N, 36°11.56′ W, depth 2564 m, trap deployed 5 August 2007 (photo taken August 7, 2007 by David Shale, permission granted).
FIG. 3 in Redescription and phylogenetic assessment of Helicometra antarcticae Holloway & Bier, 1968 (Trematoda, Opecoelidae), with evidence of non-monophyletic status of the genus Helicometra Odhner, 1902
FIG. 3.. — Helicometra fasciata (Rudolphi, 1819) Odhner, 1902 sensu lato from intestine of black scorpionfish, Scorpaena porcus Linnaeus, 1758, Black Sea; whole mount, ventral view. Scale bar: 0.5 mm.
FIG. 2 in Redescription and phylogenetic assessment of Helicometra antarcticae Holloway & Bier, 1968 (Trematoda, Opecoelidae), with evidence of non-monophyletic status of the genus Helicometra Odhner, 1902
FIG. 2. — Helicometra sp. from intestine of tawnystripe eelpout, Lycodes cf. brunneofasciatus Suvorov, 1935, Northwest Pacific; whole mount, ventral view. Scale bar: 1 mm.
FIG. 1 in Redescription and phylogenetic assessment of Helicometra antarcticae Holloway & Bier, 1968 (Trematoda, Opecoelidae), with evidence of non-monophyletic status of the genus Helicometra Odhner, 1902
FIG. 1. — Helicometra antarcticae Holloway & Bier, 1968 from intestine of the Antarctic toothfish, Dissostichus mawsoni Norman, 1937, Ross Sea: A, whole mount, ventral view; B, terminal genitalia, lateral view; C, ovarian complex, ventral view. Abbreviations: С, cirrus everted through genital atrium; ej, ejaculatory duct; ga, genital atrium; isv, internal seminal vesicle; lc, Laurer's canal; mg, Mehlis' gland cells; mt, metraterm; oc, ovicapt; oo, oÖtype; ov, ovary; pc, prostatic cells; pp, pars prostatica; sr, seminal receptacle; vr, common vitelline reservoir. Scale bars: A, 1 mm; B, 0.2 mm; C, 0.08 mm.
Fig. 2 in Croton sertanejus, a new species from Seasonally Dry Tropical Forest in Brazil, and redescription of C. echioides (Euphorbiaceae)
Fig. 2. Croton sertanejus Sodré & M.J.Silva sp. nov. A–B. Habit. C. Flowering branch showing ramifying in alternate branches. D. Inflorescence showing pistillate flowers and staminate buds. E. Pistillate flowers. F. Unisexual staminate inflorescence. G. Fruit. H–I. Fruit columella. J. Apex of columella with irregular and plane tips. K. Seed, dorsal side. L. Seed, ventral surface. A–F = Population from Oliveira dos Brejinhos, Bahia (R.C. Sodré et al. 3350, holotype; BOTU); G–L = K.N.C. Castro & J.B.A. Souza 471 (CEN). Photographs: R.C. Sodré.
Fig. 7 in Croton sertanejus, a new species from Seasonally Dry Tropical Forest in Brazil, and redescription of C. echioides (Euphorbiaceae)
Fig. 7. Cross sections of the petiole of Croton echioides Baill. and C. sertanejus Sodré & M.J.Silva sp. nov. A–E. Croton echioides. A. Median portion of the petiole. B. Detail of accessory vascular bundles. C. Detail of the epidermis, cortex and vascular cylinder. D–E. Detail of vascular cylinder, laticifers, gelatinous fibers and druses. – F–J. C. sertanejus sp. nov. F. Median portion of the petiole. G. Detail of accessory vascular bundles. H. Detail of the epidermis and cortex. I–J. Detail of vascular cylinder, gelatinous fibers and druses. Asterisks indicate laticifers. Abbreviations: av = accessory vascular bundles; cl = collenchyma; co = cortex; d = druses; ep = epidermis; f = gelatinous fibers; p = pericycle; pa = ground parenchyma; ph = phloem; pi = pith; stt = stellate trichome; vc = vascular cylinder; xy = xylem. A–E = R.C. Sodré et al. 3284 (BOTU); F–J = R.C. Sodré et al. 3350, holotype (BOTU). Scale bars: A, F = 300 µm; B–D, G–H, J = 50 µm; C = 200 µm; E, I = 20 µm.
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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.