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Fig. 3 in Movement and longitudinal distribution of a migratory fish (Salminus brasiliensis) in a small reservoir in southern Brazil
Fig. 3. Observed values of individual net displacement for Salminus brasiliensis in the Monjolinho reservoir. Each dot represents a displacement event; more than one record from the same individual may appear in the plot. a) The individual moved a large distance in a very short time, b) the individual moved a small distance in a short time, c) the individual position moved at least 20 km within 60 days and d) the individual may have moved only a small distance in a 60-day period. Note: net displacement based on large time intervals (e.g., events c and d) ignore multiple movements that may have occurred within the time interval (see main text).
Fig. 4 in Movement and longitudinal distribution of a migratory fish (Salminus brasiliensis) in a small reservoir in southern Brazil
Fig. 4. Net displacement of dourados (Salminus brasiliensis) in the Monjolinho reservoir. The numbers above the plots represent the number of individuals. The letters above the plots represent differences or similarities according to Tukey's test, which was performed after a linear mixed effect model (F= 23.57). Circles represent outlier values; the heavy horizontal line crossing the box is the median; the bottom and top of the box are the lower and upper quartiles, respectively; and the whiskers are the minimum and maximum values.
Fig. 1 in Movement and longitudinal distribution of a migratory fish (Salminus brasiliensis) in a small reservoir in southern Brazil
Fig. 1. Map of the study area in the Uruguay river basin located in southern Brazil. Stars = cities; triangles = natural barriers; squares = positions of fixed radio telemetry stations; line with dottes = duct that takes water from the Passo Fundo power house into the Monjolinho reservoir. The confluences of the Passo Fundo and Erechim rivers and of the Passo Fundo and Uruguay rivers have been flooded by the Monjolinho and Foz do Chapecó reservoirs. Dark gray represents the area that was monitored in this study.
Fig. 5. a in Movement and longitudinal distribution of a migratory fish (Salminus brasiliensis) in a small reservoir in southern Brazil
Fig. 5. a. Distance traveled by dourados (Salminus brasiliensis) from the dam in the study area. Numbers above the plots are the number of individuals. Letters above the plots represent differences or similarities according to Tukey's test, which was performed after a linear mixed effect model (F = 16.5; p<0.0001). Circles represent outlier values; the heavy horizontal line crossing the box is the median; the bottom and top of the box are the lower and upper quartiles, respectively; and the whiskers are the minimum and maximum values. b. Inflow (m³/s) and water temperature (°C) in the Monjolinho reservoir during the study period (January to December 2012). c. Rainfall (mm) in the study area, showing measurements taken between January and December 2012 and historical rainfall patterns (1961-1990).
Fig. 6 in Movement and longitudinal distribution of a migratory fish (Salminus brasiliensis) in a small reservoir in southern Brazil
Fig. 6. Line density results showing the movement patterns of dourados (Salminus brasiliensis) in the Monjolinho reservoir. Summer = January to March; Autumn = April to June; Winter = July to September; and Spring = October to December.
Fig. 3 in Age and growth of Zapteryx brevirostris (Elasmobranchii: Rhinobatidae) in southern Brazil
Fig. 3. Von Bertalanffy growth curves (VBGF) according to the Fraser-Lee back-calculation technique. Data for females and males separately: VBGF and VBGF with fixed L0 at 14 cm.
Fig. 2 in Age and growth of Zapteryx brevirostris (Elasmobranchii: Rhinobatidae) in southern Brazil
Fig. 2. Relationship between total length (TL, cm) and radius of the vertebra (cm) for Zapteryx brevirostris with the sexes grouped, using free-swimming adult individuals. The line represents a linear regression (R2 = 0.75).
FIGURE 1 in Three new species of the millipede genus Catharosoma Silvestri, 1897 from southern Brazil, with new records and a clarified identity of Catharosoma intermedium (Carl, 1902) (Diplopoda: Polydesmida: Paradoxosomatidae)
FIGURE 1. Catharosoma intermedium, male (MCN-575), alive in captivity.
FIGURES 42–45 in Mites of the genus Gaeolaelaps (Acari: Laelapidae) from southern Brazil, with description of two new species
FIGURES 42–45. Gaeolaelaps circularis. Female: 42, leg I; 43, leg II; 44, leg III; 45, leg IV.
FIGURES 23–26. Gaeolaelaps cerrii n in Mites of the genus Gaeolaelaps (Acari: Laelapidae) from southern Brazil, with description of two new species
FIGURES 23–26. Gaeolaelaps cerrii n.sp.; Female: 23, leg I; 24, leg II; 25, leg III; 26, leg IV.
FIGURES 10–13. Gaeolaelaps azul n in Mites of the genus Gaeolaelaps (Acari: Laelapidae) from southern Brazil, with description of two new species
FIGURES 10–13. Gaeolaelaps azul n.sp. Female: 10, leg I; 11, leg II; 12, leg III; 13, leg IV.
Figure 11 in Two new Geoplaninae species (Platyhelminthes: Continenticola) from Southern Brazil based on an integrative taxonomic approach
Figure 11. Obama maculipunctata sp. nov. (A) Copulatory apparatus of the holotype in sagittal section. (B) Copulatory apparatus of paratype MZU PL.00195 in horizontal section.
Figure 9 in Two new Geoplaninae species (Platyhelminthes: Continenticola) from Southern Brazil based on an integrative taxonomic approach
Figure 9. Obama maculipunctata sp. nov., holotype, in transverse (A–F) or sagittal (G, H) sections. (A) Anterior region of the body. (B) Detail of the anterior region of the body. (C) Pre-pharyngeal region. (D) Detail of body margin in the pre-pharyngeal region. (E) Detail of a dorsal portion of the prepharyngeal region. (F) Detail of a ventral portion of the pre-pharyngeal region. (G) Pharynx. (H) Ovary. In (H), the anterior portion of the ovary is not visible.
Figure 10 in Two new Geoplaninae species (Platyhelminthes: Continenticola) from Southern Brazil based on an integrative taxonomic approach
Figure 10. Obama maculipunctata sp. nov. (A) Sagittal composite reconstruction of the copulatory apparatus of the holotype. (B) Diagrammatic horizontal composite reconstruction of the copulatory apparatus of paratype MZU PL.00195.
Figure 7 in Two new Geoplaninae species (Platyhelminthes: Continenticola) from Southern Brazil based on an integrative taxonomic approach
Figure 7. Cratera ochra sp. nov. (A) Detail of prostatic vesicle of paratype MZU PL.00189 in horizontal section. (B) Detail of tip of the penis papilla of the holotype in sagittal section.
Figure 4 in Two new Geoplaninae species (Platyhelminthes: Continenticola) from Southern Brazil based on an integrative taxonomic approach
Figure 4. Cratera ochra sp. nov., holotype, in transverse (A–F) or sagittal (G, H) sections. (A) Anterior region of the body. (B) Detail of the anterior region of the body. (C) Pre-pharyngeal region. (D) Detail of body margin of the pre-pharyngeal region. (E) Detail of a dorsal portion of the pre-pharyngeal region. (F) Detail of a ventral portion of the pre-pharyngeal region. (G) Pharynx. (H) Ovary.
Figure 5 in Two new Geoplaninae species (Platyhelminthes: Continenticola) from Southern Brazil based on an integrative taxonomic approach
Figure 5. Cratera ochra sp. nov. (A) Sagittal composite reconstruction of the copulatory apparatus of the holotype. (B) Diagrammatic horizontal composite reconstruction of the copulatory apparatus of paratype MZU PL.00189.
Figure 6 in Two new Geoplaninae species (Platyhelminthes: Continenticola) from Southern Brazil based on an integrative taxonomic approach
Figure 6. Cratera ochra sp. nov. (A) Copulatory apparatus of the holotype in sagittal section. (B) Copulatory apparatus of paratype MZU PL.00189 in horizontal section.
Figure 3 in Two new Geoplaninae species (Platyhelminthes: Continenticola) from Southern Brazil based on an integrative taxonomic approach
Figure 3. Cratera ochra sp. nov. in dorsal view. (A) Detail of the anterior extremity of the holotype. (B) Detail of the median third of the body of the holotype. (C) Detail of eye pattern at the anterior extremity of the holotype. (D) Eye pattern of a fixed specimen (paratype MZU PL.00187).
Figure 4 from: Rojas-Padilla O, Menezes VQ, Dias IR, Argôlo AJS, Solé M, Orrico VGD (2020) Amphibians and reptiles of Parque Nacional da Serra das Lontras: an important center of endemism within the Atlantic Forest in southern Bahia, Brazil. ZooKeys 1002: 159-185. https://doi.org/10.3897/zookeys.1002.53988
Figure 4 Amphibians and reptiles recorded in the Parque Nacional da Serra das Lontras. ADendropsophus branneriBDendropsophus aff. bromeliaceusCD. elegansDD. haddadiEOlolygon strigilataFPhyllodytes sp. 1 GScinax cf. x-signatusHCrossodactylus sp. IAdenomera clade M JCrossodactylodes septentrionalisKLeptodactylus cf. latransLPhasmahyla spectabilisMPhyllomedusa burmeisteriNCorallus hortulanusOChironius fuscusPDipsas catesbyiQDipsas neuwiediRErythrolamprus reginae, SImantodes cenchoaTOxybelis aeneus.
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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OpenNeuro
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