Fig. 3. Scatter plot and regression line of orbital diameter and snout length on head length, in Pareiorhaphis scutula (dots) and P. nasuta (triangles).Published as part of Pereira, Edson H. L., Vieira, Fábio & Reis, Roberto E., 2010, Pareiorhaphis scutula, a new species of neoplecostomine catfish (Siluriformes: Loricariidae) from the upper rio Doce basin, Southeastern Brazil, pp. 33-38 in Neotropical Ichthyology 8 (1) on page 36, DOI: 10.1590/S1679-62252010000100005, http://zenodo.org/record/542168
Fig. 1. Parotocinclus halbothi, holotype, female, 19.4 mm SL, MCP 48029, Brazil, Pará, Oriximiná, cr...
Fig. 3. Mean and standard deviation (SD) of each growth ring radius in otoliths of Brachyplatystoma ...
Fig. 1. Corydoras tukano, holotype, MZUSP 82100, presumably a female, 40.9 mm SL; Brazil, Amazonas s...
Fig. 10. Bivariate scatterplot and linear regression lines showing relationship between basicaudal p...
Fig. 7. Dermal plates at posterior end of caudal peduncle of Parotocinclus spilurus, topotype, UFRN ...
Fig. 2. Lateral, dorsal, and ventral views of Parotocinclus spilurus, topotype UFRN 1255, 37.2 mm SL...
Fig. 6. Left suspensorium and opercular series of Trichomycterus maracaya (LIRP 4381), 43.9 mm SL, p...
Fig. 1. Lateral, dorsal, and ventral views of Parotocinclus spilurus, holotype ANSP 69403, 28.6 mm S...
Fig. 5. Relationship between minimum orbital diameter (as % of HL) and average capture depth for spe...
Pereira, Edson H. L., Vieira, Fábio, Reis, Roberto E. (2010): Pareiorhaphis scutula, a new species o...
Fig. 2. Isbrueckerichthys epakmos, holotype, MZUSP 79804, male, 103.1 mm SL. Brazil: São Paulo: Tapi...
Fig. 2. Ventral view of abdominal region illustrating the lateral plates and preanal platelets in: (...
Fig. 3. Ontogenetic variation in Parotocinclus spilurus topotypes, UFRN 0321, 0389, UFPB 9989, speci...
Fig. 3. Left lateral view of anal fin pterygiophores in M. pataxo (a) and M. parahybae (b). Abbrevia...
Fig. 4. Orbital diameter as a function of head length for species of Charax.Published as part of Men...
Fig. 1. Parotocinclus halbothi, holotype, female, 19.4 mm SL, MCP 48029, Brazil, Pará, Oriximiná, cr...
Fig. 3. Mean and standard deviation (SD) of each growth ring radius in otoliths of Brachyplatystoma ...
Fig. 1. Corydoras tukano, holotype, MZUSP 82100, presumably a female, 40.9 mm SL; Brazil, Amazonas s...
Fig. 10. Bivariate scatterplot and linear regression lines showing relationship between basicaudal p...
Fig. 7. Dermal plates at posterior end of caudal peduncle of Parotocinclus spilurus, topotype, UFRN ...
Fig. 2. Lateral, dorsal, and ventral views of Parotocinclus spilurus, topotype UFRN 1255, 37.2 mm SL...
Fig. 6. Left suspensorium and opercular series of Trichomycterus maracaya (LIRP 4381), 43.9 mm SL, p...
Fig. 1. Lateral, dorsal, and ventral views of Parotocinclus spilurus, holotype ANSP 69403, 28.6 mm S...
Fig. 5. Relationship between minimum orbital diameter (as % of HL) and average capture depth for spe...
Pereira, Edson H. L., Vieira, Fábio, Reis, Roberto E. (2010): Pareiorhaphis scutula, a new species o...
Fig. 2. Isbrueckerichthys epakmos, holotype, MZUSP 79804, male, 103.1 mm SL. Brazil: São Paulo: Tapi...
Fig. 2. Ventral view of abdominal region illustrating the lateral plates and preanal platelets in: (...
Fig. 3. Ontogenetic variation in Parotocinclus spilurus topotypes, UFRN 0321, 0389, UFPB 9989, speci...
Fig. 3. Left lateral view of anal fin pterygiophores in M. pataxo (a) and M. parahybae (b). Abbrevia...
Fig. 4. Orbital diameter as a function of head length for species of Charax.Published as part of Men...
Fig. 1. Parotocinclus halbothi, holotype, female, 19.4 mm SL, MCP 48029, Brazil, Pará, Oriximiná, cr...
Fig. 3. Mean and standard deviation (SD) of each growth ring radius in otoliths of Brachyplatystoma ...
Fig. 1. Corydoras tukano, holotype, MZUSP 82100, presumably a female, 40.9 mm SL; Brazil, Amazonas s...