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51 results for “Erythrinidae”
Fig. 3 in Revision of the Neotropical trahiras of the Hoplias lacerdae species-group (Ostariophysi: Characiformes: Erythrinidae) with descriptions of two new species
Fig. 3. Map of South America showing geographic distribution of species of the Hoplias lacerdae group based on material examined in this study. Some symbols may represent more than one lot. Numbers indicate type localities of (1) Hoplias australis (squares); (2) H. brasiliensis (losanges); (3) H. curupira (triangles); (4) H. intermedius (dots); and (5) H. lacerdae (inverted triangles).
Fig. 8. Hoplias intermedius, MZUSP 69370, 169.3 in Revision of the Neotropical trahiras of the Hoplias lacerdae species-group (Ostariophysi: Characiformes: Erythrinidae) with descriptions of two new species
Fig. 8. Hoplias intermedius, MZUSP 69370, 169.3 mm SL, rio Suaçui Pequeno, Minas Gerais State, Brazil.
Fig. 10. Hoplias lacerdae, MZUSP 61748, 150.5 in Revision of the Neotropical trahiras of the Hoplias lacerdae species-group (Ostariophysi: Characiformes: Erythrinidae) with descriptions of two new species
Fig. 10. Hoplias lacerdae, MZUSP 61748, 150.5 mm SL, rio Ribeira de Iguape, São Paulo State, Brazil.
Fig. 9 in Revision of the Neotropical trahiras of the Hoplias lacerdae species-group (Ostariophysi: Characiformes: Erythrinidae) with descriptions of two new species
Fig. 9. Hoplias intermedius (lectotype of Macrodon intermedius) BMNH 1861.5.16.6, 533.4 mm SL, rio Cipó, Minas Gerais State, Brazil.
Fig. 2 in Revision of the Neotropical trahiras of the Hoplias lacerdae species-group (Ostariophysi: Characiformes: Erythrinidae) with descriptions of two new species
Fig. 2. Hoplias australis, holotype, MCP 40175, 220 mm SL, rio das Antas, Formosa do Sul, Santa Catarina State, Brazil.
Fig. 1 in Revision of the Neotropical trahiras of the Hoplias lacerdae species-group (Ostariophysi: Characiformes: Erythrinidae) with descriptions of two new species
Fig. 1. Ventral view of head of (a) Hoplias curupira, MZUSP 24403, 55.5 mm SL; (b) H. curupira, MZUSP 24403, 92.2 mm SL; (c) H. curupira, MZUSP 24403, 162.2 mm SL and (d) H. malabaricus, MZUSP 90416, 101.7 mm SL.
Fig. 6 in Revision of the Neotropical trahiras of the Hoplias lacerdae species-group (Ostariophysi: Characiformes: Erythrinidae) with descriptions of two new species
Fig. 6. Snout width vs. head length for Hoplias curupira (dots) and remaining species of the Hoplias lacerdae group (circles).
Fig. 11 in Revision of the Neotropical trahiras of the Hoplias lacerdae species-group (Ostariophysi: Characiformes: Erythrinidae) with descriptions of two new species
Fig. 11. Hoplias lacerdae, holotype, MNRJ 211, 750.0 mm SL, rio Ribeira de Iguape, São Paulo State, Brazil.
Fig. 4 in Revision of the Neotropical trahiras of the Hoplias lacerdae species-group (Ostariophysi: Characiformes: Erythrinidae) with descriptions of two new species
Fig. 4. Hoplias brasiliensis, neotype, MZUSP 45483, 162.9 mm SL, rio Paraguaçú near Iaçú, Bahia State, Brazil.
Fig. 5 in Revision of the Neotropical trahiras of the Hoplias lacerdae species-group (Ostariophysi: Characiformes: Erythrinidae) with descriptions of two new species
Fig. 5. Hoplias curupira, holotype, MZUSP 45582, 157.9 mm SL, rio Itacaiúnas, Caldeirão, Serra dos Carajás, Pará State, Brazil.
Figure 1 in A new species of the Hoplias malabaricus species complex (Characiformes: Erythrinidae) from the La Plata River basin
Figure 1. – Hoplias misionera sp nov., holotype, UNMDP 574, 164 mm SL, small tributary of the Acaraguá River, Uruguay River Basin, Misiones, Argentina.
Fig. 1 in Pleistocene karyotypic divergence in Hoplias malabaricus (Bloch, 1794) (Teleostei: Erythrinidae) populations in southeastern Brazil
Fig. 1. Lacustrine system of the middle rio Doce. Triangles indicate sampled lakes.
Data from: Landscape evolution drives continental diversification in Neotropical freshwater fishes of the family Erythrinidae (Teleostei, Characiformes)
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FIGURES 10–18. Whittingtonocotyle jeju n. gen. n in Proposal of Whittingtonocotyle n. gen. (Dactylogyroidea: Dactylogyridae), with the description of two new species from the gills of Hoplerythrinus unitaeniatus (Characiformes: Erythrinidae) in Brazil
FIGURES 10–18. Whittingtonocotyle jeju n. gen. n. sp. 10. Whole-mount, composite (ventral). 11. Copulatory complex. 12. Egg. 13. Hook pair 1. 14. Hook pairs 2–7. 15. Dorsal anchor. 16. Ventral anchor. 17. Ventral bar. 18. Dorsal bar. Figs. 10 scale of 100 µm; Figs. 11, 15–18 scale of 25 µm; Fig. 12 scale of 50 µm; Figs. 13–14 scale of 10 µm.
FIGURES 1–9. Whittingtonocotyle caetei n. gen. n in Proposal of Whittingtonocotyle n. gen. (Dactylogyroidea: Dactylogyridae), with the description of two new species from the gills of Hoplerythrinus unitaeniatus (Characiformes: Erythrinidae) in Brazil
FIGURES 1–9. Whittingtonocotyle caetei n. gen. n. sp. 1. Holotype, whole-mount (ventral). 2. Copulatory complex. 3. Egg. 4. Dorsal bar. 5. Ventral bar. 6. Hook pairs 2–7. 7. Hook pair 1. 8. Ventral anchor. 9. Dorsal anchor. Fig. 1 scale of 100 µm; Figs. 2, 4–5, 8–9 scale of 25 µm; Fig. 3 scale of 50 µm; Figs. 6–7 scale of 10 µm.
FIGURES 20–28 in New species of Anacanthorus (Dactylogyridae: Anacanthorinae) from the gills of Hoplerythrinus unitaeniatus and Erythrinus erythrinus (Characiformes: Erythrinidae) of the coastal drainage in the Eastern Amazon, Brazil
FIGURES 20–28. Anacanthorus cururutuiensis sp. n. 20. Male copulatory organ (MCO); 21. 4A hooks; 22. Hook; Anacanthorus acrophallus sp. n. 23. MCO; 24. 4A hooks; 25. Hook; Anacanthorus circumspatulatus sp. n. 26. MCO; 27. 4A hooks; 28. Hook. Fig. 20 scale of 25µm; Figs. 21–22 scale of 10µm; Figs. 23–25 scale of 10µm; Fig. 26 scale of 25µm; Figs. 27–28 scale of 10µm.
FIGURES 8–15 in New species of Anacanthorus (Dactylogyridae: Anacanthorinae) from the gills of Hoplerythrinus unitaeniatus and Erythrinus erythrinus (Characiformes: Erythrinidae) of the coastal drainage in the Eastern Amazon, Brazil
FIGURES 8–15. Anacanthorus siphonocommus sp. n. 8. Holotype whole-mount (ventral); 9. Hook; 10. Hook 4A; 11. Male copulatory organ (MCO); Anacanthorus maratininguensis sp. n. 12. MCO; 13. Hook; 14. 4A hooks; 15. Holotype whole-mount (ventral). Fig. 8 scale of 50µm; Figs. 9–10 scale of 10µm; Fig. 11 scale of 25µm; Figs. 12–14 scale of 25µm; Fig. 15 scale of 50µm.
FIGURES 16–19 in New species of Anacanthorus (Dactylogyridae: Anacanthorinae) from the gills of Hoplerythrinus unitaeniatus and Erythrinus erythrinus (Characiformes: Erythrinidae) of the coastal drainage in the Eastern Amazon, Brazil
FIGURES 16–19. Anacanthorus lacinimentulatus sp. n. 16. Holotype whole-mount (ventral); 17. Male copulatory organ (MCO); 18. 4A hooks; 19. Hook. Fig. 16 scale of 50µm; Fig. 17 scale of 25µm; Figs. 18–19 scale of 10µm.
FIGURES 1–7 in New species of Anacanthorus (Dactylogyridae: Anacanthorinae) from the gills of Hoplerythrinus unitaeniatus and Erythrinus erythrinus (Characiformes: Erythrinidae) of the coastal drainage in the Eastern Amazon, Brazil
FIGURES 1–7. Anacanthorus scyphophallus sp. n. 1. Holotype whole-mount (ventral); 2. Male copulatory organ (MCO); 3. Hook. Anacanthorus ataidei sp. n. 4. MCO; 5. Hook; 6. 4A hooks; 7. Holotype whole-mount (ventral). Fig. 1 scale of 50µm; Figs. 2–3 scale of 25µm; Fig. 4 scale of 25µm; Figs. 5–6 scale of 10µm; Fig. 7 scale of 50µm.
Figure 4 in Histological biomarkers and biometric data on trahira Hoplias malabaricus (Pisces, Characiformes, Erythrinidae): a bioindicator species in the Mearim river, Brazilian Amazon
Figure 4. Tree of similarity of the branchial lesions observed in the specimens collected in the two studied areas (A1 and A2). Aneu: aneurysm; Hyperp: hyperplasia; Displac epith: displacement of the epithelium; Lamel disorg: lamellar disorganization; Dilat ven sin: dilation of venous sinus; Mucous cells: proliferation of mucus cells; Comp fusion: complete lamellar fusion; and Inc fusion: incomplete lamellar fusion.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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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.