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19 results for “Cycloramphus”
Figure 2 in The tadpole of an insular population of Cycloramphus boraceiensis Heyer, 1983 (Anura: Cycloramphidae) with a review of larval descriptions for species in the genus
Figure 2. External morphological features of a tadpole of Cycloramphus boraceiensis Stage 36 (Gosner, 1960). (A) Dorsal view, (B) Lateral view, (C) Ventral view, (D) close up of oral disc and jaw sheaths; note the smaller size of keratodonts on P3 row, (E) close up of midbody showing spiracle opening and lateral view of the flap, (F) close up of the posterior portion of the body showing the position of the vent opening (the brownish coloration s fecal matter) and the extension of the flap, (G) close up of left side of the head.
Figure 1 in The tadpole of an insular population of Cycloramphus boraceiensis Heyer, 1983 (Anura: Cycloramphidae) with a review of larval descriptions for species in the genus
Figure 1. The tadpole of Cycloramphus boraceiensis (USNM 217933), from Estação Biológica de Boracéia, São Paulo, Brazil. (A) Illustration of the lateral view as originally appeared in Heyer's (1983a) original description, (B) and (C) ventral view and (D) dorsal view of the photographed specimen used in the original description and Illustration presented in A. We highlighted the P3 row, which is made up by smaller keratodonts than the other rows, the spiracle, meniscus, and the bulge on the gill region, that together with the degree of development of the feet are indicative of a tadpole Stage 41 (Gosner, 1960).
FIGURE 7 in A new species of Cycloramphus Tschudi (Anura: Cycloramphidae) from the Parque Nacional da Serra dos Órgãos, Southeastern Brazil
FIGURE 7. Cycloramphus organensis sp. nov. known distribution at the Parque Nacional da Serra dos Órgãos, municipality of Petrópolis, State of Rio de Janeiro (black circle).
FIGURE 6 in A new species of Cycloramphus Tschudi (Anura: Cycloramphidae) from the Parque Nacional da Serra dos Órgãos, Southeastern Brazil
FIGURE 6. Cycloramphus organensis sp. nov. (ZUFRJ 10353). Ventral view of pectoral girdle with the scapulae and suprascapulae deflected laterally (A), ventral view of left hand (B), dorsal view of the column (C), and left side lateral view of the ilium (D). Scale bars=1 mm. Heavily stippled areas correspond to cartilage.
FIGURE 3 in A new species of Cycloramphus Tschudi (Anura: Cycloramphidae) from the Parque Nacional da Serra dos Órgãos, Southeastern Brazil
FIGURE 3. Cycloramphus organensis sp. nov., holotype (ZUFRJ 10354). Left, dorsal view; right, ventral view.
FIGURE 5 in A new species of Cycloramphus Tschudi (Anura: Cycloramphidae) from the Parque Nacional da Serra dos Órgãos, Southeastern Brazil
FIGURE 5. Cycloramphus organensis sp. nov. (ZUFRJ 10353). Dorsal (A), ventral (B), and lateral (C) views of skull; dorsal view of mandibles (D); and ventral view of hyoid plate (E). Scales bars = 1mm. Heavily stippled gray areas correspond to cartilage.
FIGURE 4 in A new species of Cycloramphus Tschudi (Anura: Cycloramphidae) from the Parque Nacional da Serra dos Órgãos, Southeastern Brazil
FIGURE 4. Cycloramphus organensis sp. nov., holotype (ZUFRJ 10354). Dorsal (A) and lateral (B) views of head; palmar view of right hand (C), and plantar view of right foot (D). Scales bars=3 mm.
FIGURE 2 in A new species of Cycloramphus Tschudi (Anura: Cycloramphidae) from the Parque Nacional da Serra dos Órgãos, Southeastern Brazil
FIGURE 2. Cycloramphus organensis sp. nov., live specimen (male from the type series ZUFRJ 10350, 10352, 10354, exact number not matched) from Parque Nacional da Serra dos Órgãos, Rio de Janeiro, Brazil.
FIGURE 1 in A new species of Cycloramphus Tschudi (Anura: Cycloramphidae) from the Parque Nacional da Serra dos Órgãos, Southeastern Brazil
FIGURE 1. Sub-phylogram of the genus Cycloramphus hypothesized from Bayesian analysis using 1717 bp of combined mtDNA (875 bp of 12S + 16S) and nuDNA (841 bp of RAG-1) sequences. For Bayesian analysis we used a partitioned model of evolution combining one model, estimated using Modeltest version 3.7, for 12S, one for 16S and one for each codon position of the RAG-1 fragment (totaling thus 5 partitions). Node supports are indicated with 1. posterior probability (10,000,000 generations sampled every 1000; 10 chains); 2. Maximum Parsimony bootstrap support (n=5000); pp=1 and 0.99 and bootstrap values=100% and 99% are indicated with * and "-" are used to indicate bootstrap support <50%.
FIGURE 3 in The endotrophic nidicolous tadpole of Cycloramphus eleutherodactylus (Miranda-Ribeiro) (Anura: Cycloramphidae)
FIGURE 3. Oral disc of a stage 31 Gosner (1960) terrestrial tadpole of Cycloramphus eleutherodactylus. Scale bar 0.5mm. A1: anterior labial ridge 1, A2: anterior labial ridge 2, P1: posterior labial ridge 1, P2: posterior labial ridge 2, Kr: barely seen unpigmented keratodonts, js: unpigmented jaw sheats.
FIGURE 2 in The endotrophic nidicolous tadpole of Cycloramphus eleutherodactylus (Miranda-Ribeiro) (Anura: Cycloramphidae)
FIGURE 2. Lateral (A), dorsal (B), and ventral (C) views of the terrestrial tadpole of Cycloramphus eleutherodactylus (ZUFABC 228) stage 31 Gosner (1960). Scale bar: 1mm.
FIGURE 1 in The endotrophic nidicolous tadpole of Cycloramphus eleutherodactylus (Miranda-Ribeiro) (Anura: Cycloramphidae)
FIGURE 1. Clutch and live larvae of Cycloramphus eleutherodactylus from Estaç"o Biológica de Boracéia, Salesópolis, S"o Paulo State, Brazil. Egg diameter approximately 5mm, tadpoles body length approximately 6.5mm; arrows indicate the middorsal spot on the dorsum of tadpoles.
FIGURE 3. Cycloramphus eleutherodactylus var. variegata A. Lutz, 1929 in Type specimens of the species of Cycloramphus Tschudi, 1838 (Anura, Cycloramphidae) in the collections of the Museu Nacional, Rio de Janeiro, Brazil
FIGURE 3. Cycloramphus eleutherodactylus var. variegata A. Lutz, 1929. Lectotype, AL-MN 908 (SVL 35.8 mm).
FIGURE 2. Cycloramphus eleutherodactylus var. strigillata A. Lutz, 1929 in Type specimens of the species of Cycloramphus Tschudi, 1838 (Anura, Cycloramphidae) in the collections of the Museu Nacional, Rio de Janeiro, Brazil
FIGURE 2. Cycloramphus eleutherodactylus var. strigillata A. Lutz, 1929. Holotype, AL-MN 712 (SVL 40.8 mm).
FIGURE 1. Cycloramphus distinctus A. Lutz, 1932 in Type specimens of the species of Cycloramphus Tschudi, 1838 (Anura, Cycloramphidae) in the collections of the Museu Nacional, Rio de Janeiro, Brazil
FIGURE 1. Cycloramphus distinctus A. Lutz, 1932. Lectotype, AL-MN 2180 (SVL 33.2 mm).
FIGURE 5 in Type specimens of the species of Cycloramphus Tschudi, 1838 (Anura, Cycloramphidae) in the collections of the Museu Nacional, Rio de Janeiro, Brazil
FIGURE 5. Iliodiscus lutzi Miranda-Ribeiro, 1929. Lectotype, AL-MN 1494 (SVL 54.5 mm).
FIGURE 4. Cycloramphus granulosus A. Lutz, 1929 in Type specimens of the species of Cycloramphus Tschudi, 1838 (Anura, Cycloramphidae) in the collections of the Museu Nacional, Rio de Janeiro, Brazil
FIGURE 4. Cycloramphus granulosus A. Lutz, 1929. Lectotype, AL-MN 1537 (SVL 24.2 mm).
Figure 3 in The tadpole of an insular population of Cycloramphus boraceiensis Heyer, 1983 (Anura: Cycloramphidae) with a review of larval descriptions for species in the genus
Figure 3. Aspect of the river on the beach of Longa, at Ilha Grande, Angra dos Reis, Rio de Janeiro. (A) An overview of the macrohabitat, (B) detail of the mesohabitat, and (C) close up of microhabitat were tadpoles of Cycloramphus boraceiensis are found.
FIGURE 6 in Type specimens of the species of Cycloramphus Tschudi, 1838 (Anura, Cycloramphidae) in the collections of the Museu Nacional, Rio de Janeiro, Brazil
FIGURE 6. Grypiscus lutzi Miranda-Ribeiro, 1935, Lectotype, MZUSP 1008 (SVL 58.0 mm). Currently also the holotype of Iliodiscus pinderi Miranda-Ribeiro, 1920.
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