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175 results for “La Plata basin”
FIGURE 5. A in How many species of Sturisoma (Siluriformes: Loricariinae) inhabit the La Plata Basin?
FIGURE 5. A: Phylogenetic analyses based on COI marker. Bootstrap and posterior probabilities support displayed close to branches. B: Delimitation methods results shown with vertical black bars. C: Haplotypes network is colored according to the species determination as in the tree.
FIGURE 2 in How many species of Sturisoma (Siluriformes: Loricariinae) inhabit the La Plata Basin?
FIGURE 2. Holotype of Loricaria barbata (NMW 46155) in three views. A, counting of left lateral plates; B: dorsal view; C: ventral view. Courtesy images of Naturhistorisches Museum Wien.
FIGURE 1. A in How many species of Sturisoma (Siluriformes: Loricariinae) inhabit the La Plata Basin?
FIGURE 1. A: left lateral view of the holotype of Sturisoma barbatum (=Loricaria barbata Kner, 1853:12, 23, pl. 5. Type locality: Rio Cuiabá, Cujaba - Fluss [Brazil]), NMW 46155; B: Drawing of the holotype of Sturisoma barbatum taken from Kner (1853); C: Drawing of the holotype of Oxyloricaria robusta taken from Regan (1904; reverse image). Arrows indicate plate counting of non-coalescent median series, and the first and last coalescent ones.
FIGURE 4 in How many species of Sturisoma (Siluriformes: Loricariinae) inhabit the La Plata Basin?
FIGURE 4. Distribution map with individuals of Sturisoma reisi (squares, all coordinates localities were taken from LondoñoBurbano & Britto (2022)) and S. barbatum (circles) used in this study. Red star indicates the type locality of S. barbatum. Black symbols indicate specimens with genetic data, white with morphological data, and grey with both data sources.
FIGURE 3. Oxyloricaria robusta Regan, 1904 in How many species of Sturisoma (Siluriformes: Loricariinae) inhabit the La Plata Basin?
FIGURE 3. Oxyloricaria robusta Regan, 1904: 300, pl. 19 (fig. 1). Type locality: Paraguay River. Left lateral views of A: Lectotype: BMNH 1895.5.17.89; B: Paralectotype: BMNH 1895.5.17.90 Lectotype; Paralectotype of O. robusta. C: S. robustum BMNH 1934.8.20.389–391. In this study, all are considered S. barbatum. Arrows indicate plates' series and order number of each one.
FIGURE 6 in How many species of Sturisoma (Siluriformes: Loricariinae) inhabit the La Plata Basin?
FIGURE 6. Anatomical and pigmentation details of Sturisoma barbatum (CFA-IC-5103): A: dorsal view; and B: ventral view.
FIGURE 7 in How many species of Sturisoma (Siluriformes: Loricariinae) inhabit the La Plata Basin?
FIGURE 7. Details of Sturisoma barbatum mature males registered in Argentina. A: lateral view of specimen CFA-IC-3396, Bermejo River basin, in Formosa: B–C: CFA-IC-6380, Pilcomayo River basin, Formosa, in B: lateral view; and C: dorsal view.
Fig. 2 in A new species of Farlowella (Siluriformes: Loricariidae) from the upper Bermejo River, La Plata River basin, northwestern Argentina
Fig. 2. Farlowella azpelicuetae, paratype, CI-FML 7265, 193.9 mm SL. a. detail of the coloration of the snout; b. coloration pattern of caudal fin; c. coloration of live specimen.
Fig. 1 in A new species of Farlowella (Siluriformes: Loricariidae) from the upper Bermejo River, La Plata River basin, northwestern Argentina
Fig. 1. Farlowella azpelicuetae, holotype, Argentina, Salta, Bermejo River, La Plata River basin. CI-FML 7277, 142.4 mm SL, a. lateral, b. dorsal, and c. ventral views.
Fig. 4 in A new species of Farlowella (Siluriformes: Loricariidae) from the upper Bermejo River, La Plata River basin, northwestern Argentina
Fig. 4. Type locality of Farlowella azpelicuetae. Bermejo River at 23°10ʹ56ʺS, 64°12ʹ18.36ʺW, La Plata River basin, Salta, Argentina. September 2016.
Fig. 3 in Geographic variation of Moenkhausia bonita (Characiformes: Characidae) in the rio de la Plata basin, with distributional comments on M. intermedia
Fig. 3. Most discriminant axes obtained from the multivariate analyses of the square-root transformed meristic data of Moenkhausia bonita. a. principal component analysis; b. discriminant canonical analysis.
Fig. 4 in Geographic variation of Moenkhausia bonita (Characiformes: Characidae) in the rio de la Plata basin, with distributional comments on M. intermedia
Fig. 4. Tukey box plots showing intraspecific variation of Moenkhausia bonita in the most informative counts found through the multivariate analyses. a. circumpeduncular scales; b. maxillary teeth; c. scales below the lateral line; d. number of gill rakers on each limb (upper vs. lower, in the bottom and top parts, respectively). Number of specimens in brackets.
Fig. 2 in Geographic variation of Moenkhausia bonita (Characiformes: Characidae) in the rio de la Plata basin, with distributional comments on M. intermedia
Fig. 2. Most discriminant axes obtained from the size-free multivariate analyses using the adjusted morphometric data of Moenkhausia bonita. a. principal component analysis; b. discriminant canonical analysis.
Fig. 1 in Geographic variation of Moenkhausia bonita (Characiformes: Characidae) in the rio de la Plata basin, with distributional comments on M. intermedia
Fig. 1. Map showing the distributional range of Moenkhausia bonita across the rio de la Plata basin (based on the examined specimens). Black arrow indicates type locality.
Fig. 6 in Geographic variation of Moenkhausia bonita (Characiformes: Characidae) in the rio de la Plata basin, with distributional comments on M. intermedia
Fig. 6. Coloration pattern in alcohol-preserved specimens of Moenkhausia bonita. a. MLP 11244, 31.9 mm SL, Uruguay basin; b. MLP 11241, 33.1 mm SL, Paraná basin.
Fig. 5 in Geographic variation of Moenkhausia bonita (Characiformes: Characidae) in the rio de la Plata basin, with distributional comments on M. intermedia
Fig. 5. Coloration pattern in live of Moenkhausia bonita from different geographic basins. a. CI-FML 7272, unnamed stream between Blanco and Bermejo rivers, Salta, Argentina (by Felipe Alonso); b. CI-FML 5351, El Oculto stream, Bermejo basin, Orán, Salta, Argentina (by Felipe Alonso); c. uncatalogued specimen, Lagoon or Bahia in BR362 next to rio Paraguay in Corumbá, Brazil; d. uncatalogued specimen, Mburucuyá National Park, Paraná basin, Corrientes, Argentina (by Liliana Ciotek); e. uncatalogued specimen, Lagoon at rio Riachuelo, Paraná basin, San Luis del Palmar, Argentina (by Miguel Albarenga).
FIGURE 8 in How many species of Sturisoma (Siluriformes: Loricariinae) inhabit the La Plata Basin?
FIGURE 8. Sturisoma barbatum (CFA-IC-3396): A: dorsal view and B: detail of pectoral spine.
Fig. 9 in Is fish passage technology saving fish resources in the lower La Plata River basin?
Fig. 9. Comparison between fish biomass in the upper and lower chambers across different operation flows over three different months (adapted from Espinach Ros et al., 1997).
Figure 80 from: Perbiche-Neves G, Boxshall GA, Previattelli D, Nogueira MG, da Rocha CEF (2015) Identification guide to some Diaptomid species (Crustacea, Copepoda, Calanoida, Diaptomidae) of "de la Plata" River Basin (South America). ZooKeys 497: 1-111. https://doi.org/10.3897/zookeys.497.8091
Figure 80 - Odontodiaptomus thomseni male, SEM photographs. A Dorsal view of segments 11–16 of A1R (500 µm) B Detail of small chitinous knob on internal margin of left CR (20 µm) C P3, P4 and right P5 (caudal view), showing detail of EnpP5, lateral spine of P5 (200 µm) and were the semi-circular knob in inserted in Exp2P5 in frontal view D Right EnpP5 (2 µm) E Detail of chitinous knob on internal margin of CR (2 µm) F Detail of terminal claw (20 µm).
Figure 79 from: Perbiche-Neves G, Boxshall GA, Previattelli D, Nogueira MG, da Rocha CEF (2015) Identification guide to some Diaptomid species (Crustacea, Copepoda, Calanoida, Diaptomidae) of "de la Plata" River Basin (South America). ZooKeys 497: 1-111. https://doi.org/10.3897/zookeys.497.8091
Figure 79 - Odontodiaptomus thomseni male. A P5 in frontal view B Segment 20 of A1R C Segments 10–16 of A1R.
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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
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.