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8 results for “Amblyrhynchus”
Fig. 2 in Feeding aspects of Leporinus amblyrhynchus (Characiformes: Anostomidae) in the first stages of formation of a Neotropical reservoir, Brazil
Fig. 2. Variations in the feeding activity of L. amblyrhynchus during formation of the reservatório de Corumbá, Goiás, Brazil. Frequency (%) = stomachs with food; MFd = medium fullness degree; n/m = nocturne matutinal; d = diurnal; v/n = vespertine nocturne.
Fig. 1 in Feeding aspects of Leporinus amblyrhynchus (Characiformes: Anostomidae) in the first stages of formation of a Neotropical reservoir, Brazil
Fig. 1. Location of the study area in the rio Corumbá (a) and reservatório de Corumbá (b), GO.
Figure 5. a in Morphological and performance modifications in the world's only marine lizard, the Galápagos marine iguana, Amblyrhynchus cristatus
Figure 5. a, LD function for variation in stride kinematics between iguanids, two of the fastest runs for each individual were retained (marine iguana N = 65, black spiny-tailed iguana N = 35, green iguana N = 22). Kernel density ellipses for each species illustrate 90% and 70% of the data distribution. b, loadings for iguanid stride kinematics in (a). c, LD function for variation in stride kinematics between subspecies of marine iguana. d, Loadings for iguanid stride kinematics in (c).
Figure 4. a, linear regression illustrating the relationship between log10 stride length and log10 stride speed. b in Morphological and performance modifications in the world's only marine lizard, the Galápagos marine iguana, Amblyrhynchus cristatus
Figure 4. a, linear regression illustrating the relationship between log10 stride length and log10 stride speed. b, linear regression illustrating the relationship between and log10 stride frequency and log10 stride speed for iguanids.
Figure 3. a, linear discriminant function illustrating shape variation between iguanids. Kernel density ellipses for each species illustrate 90 in Morphological and performance modifications in the world's only marine lizard, the Galápagos marine iguana, Amblyrhynchus cristatus
Figure 3. a, linear discriminant function illustrating shape variation between iguanids. Kernel density ellipses for each species illustrate 90% and 70% of the data distribution. b, graph of morphometric trait loadings from LD analysis.
Figure 1. a in Morphological and performance modifications in the world's only marine lizard, the Galápagos marine iguana, Amblyrhynchus cristatus
Figure 1. a, morphological measurements and landmarks used in video digitization. Also illustrated are the three movements of the femur relative to the pelvis including (b) femur protraction, (c) femur rotation and (d) femur adduction (Supporting Information, Table S15).
Figure 2. a in Morphological and performance modifications in the world's only marine lizard, the Galápagos marine iguana, Amblyrhynchus cristatus
Figure 2. a, body shape and size variation between the marine iguana, green iguana and black spiny-tailed iguana. b, body size and shape variation in subspecies of marine iguana (juveniles excluded). Residual means of morphometric traits are expressed on the iguanid bodies. The ancestral state estimates for body mass are shown along phylogenetic trees. Morphometrics represented include head-neck length (HN), forelimb length (FL), hindlimb length (HL) and tail length (tailL). Iguanid bodies are scaled according to mean weight.
Fig. 4. a. Leporinus amblyrhynchus, 97.5 in Peixes da planície de inundação do alto rio Paraná e áreas adjacentes: revised, annotated and updated
Fig. 4. a. Leporinus amblyrhynchus, 97.5 mm SL, uncat. b. Leporinus friderici, 189.2 mm SL, fresh specimen, uncat. c. Leporinus lacustris, NUP 3308, 210.0 mm SL, ressaco do Pau Veio, tributary of the rio Paraná, Porto Rico, State of Paraná. d. Leporinus octofasciatus, NUP 281, 148.9 mm SL, rio São Francisco Falso, Santa Helena, State of Paraná. e. Leporinus striatus, 69.2 mm SL, uncat. f. Leporinus tigrinus, NUP 17488, 180.1 mm SL, rio Paraná, Querência do Norte, State of Paraná.
ScienceDex guides
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OpenNeuro
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