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25 results for “Flectonotus”
Fig. 3C in The distribution and conservation status of the Dwarf Marsupial Frog (Flectonotus fitzgeraldi, Anura, Hemiphractidae) in Trinidad, Tobago, and Venezuela
Fig. 3C. Map showing both presence and absence of Flectonotus fitzgeraldi as reported in this study in Venezuela. Location numbers correspond to those in Table 2.
Fig. 2 in The distribution and conservation status of the Dwarf Marsupial Frog (Flectonotus fitzgeraldi, Anura, Hemiphractidae) in Trinidad, Tobago, and Venezuela
Fig. 2. Maximum numbers of frogs calling per 10 minutes during eight transects along the Morne Bleu ridge in 2006 (filled circles: Flectonotus fitzgeraldi; empty circles: Pristimantis urichi).
Fig. 1 in The distribution and conservation status of the Dwarf Marsupial Frog (Flectonotus fitzgeraldi, Anura, Hemiphractidae) in Trinidad, Tobago, and Venezuela
Fig. 1. Best Maximum Likelihood (ML) tree of Flectonotus fitzgeraldi populations from Trinidad, Tobago, and Venezuela. Values at the nodes are comprised of ML posterior probabilities (> 75%) and Bayesian Inference probabilities (> 95%). In the Medium-Joining network, numbers in circles represent the number of sequences with the same haplotype and dashes are number of substitutions.
Fig. 3B in The distribution and conservation status of the Dwarf Marsupial Frog (Flectonotus fitzgeraldi, Anura, Hemiphractidae) in Trinidad, Tobago, and Venezuela
Fig. 3B. Map showing both presence and absence of Flectonotus fitzgeraldi as reported in this study in Tobago. Location numbers correspond to those in Table 2.
Fig. 3A in The distribution and conservation status of the Dwarf Marsupial Frog (Flectonotus fitzgeraldi, Anura, Hemiphractidae) in Trinidad, Tobago, and Venezuela
Fig. 3A. Map showing both presence and absence of Flectonotus fitzgeraldi as reported in this study in Trinidad. Location numbers correspond to those in Table 2.
Fig. S1c in The distribution and conservation status of the Dwarf Marsupial Frog (Flectonotus fitzgeraldi, Anura, Hemiphractidae) in Trinidad, Tobago, and Venezuela
Fig. S1c. Presence and total area of Flectonotus fitzgeraldi occurrence in Venezuela.
Fig. S1b in The distribution and conservation status of the Dwarf Marsupial Frog (Flectonotus fitzgeraldi, Anura, Hemiphractidae) in Trinidad, Tobago, and Venezuela
Fig. S1b. Presence and total area of Flectonotus fitzgeraldi occurrence in Tobago.
Fig. S1a in The distribution and conservation status of the Dwarf Marsupial Frog (Flectonotus fitzgeraldi, Anura, Hemiphractidae) in Trinidad, Tobago, and Venezuela
Fig. S1a. Presence and total area of Flectonotus fitzgeraldi occurrence in Trinidad.
Data from: The phylogenetic relationship of geographically separated "Flectonotus" (Anura: Hemiphractidae), as revealed by molecular, behavioral, and morphological data
Phylogenetic analyses of data derived from one mitochondrial gene and one nuclear gene show that the five species of small marsupial frogs currently recognized as Flectonotus are in fact two distinct and not closely related lineages. This conclusion is strongly supported by reproductive behavior and morphological characters. Thus, we recognize the genus Fritziana Mello-Leitão for the three species in southeastern Brazil and Flectonotus Miranda-Ribeiro for the two species in northern South America.
Fig. 13 in The egg-brooding frogs Fritziana Mello-Leit˜ao, 1937 and Flectonotus Miranda-Ribeiro, 1926 (Amphibia: Anura): osteology and putative synapomorphies for hemiphractid frogs
Fig. 13. Parsimonious optimization onto Echevarría et al. (2021) phylogenetic hypothesis (A) lenght of squamosal zygomatic ramus (B) extension of otic ramus of squamosal. See Supplemental Material for the complete matrix, including outgroups. Gray represents unknown condition.
Fig. 2 in The egg-brooding frogs Fritziana Mello-Leit˜ao, 1937 and Flectonotus Miranda-Ribeiro, 1926 (Amphibia: Anura): osteology and putative synapomorphies for hemiphractid frogs
Fig. 2. Skull (ventral view) of Fritziana and Flectonotus species (A) Fr. goeldii (B) Fr. ohausi (C) Fr. fissilis (D) Fr. tonimi (E) Fr. izecksohni (F) Fr. ulei (G) Fl. pygmaeus; and (H) Fl. fitzgeraldi. Roman typeface is used to label the bones, whereas italics are used to designate a part of a bone (e.g., ramus, process). Scale bar = 1 mm.
Fig. 5 in The egg-brooding frogs Fritziana Mello-Leit˜ao, 1937 and Flectonotus Miranda-Ribeiro, 1926 (Amphibia: Anura): osteology and putative synapomorphies for hemiphractid frogs
Fig. 5. Vertebral column (dorsal view) of Fritziana and Flectonotus species represented by (A) Fr. tonimi; and (B) Fl. fitzgeraldi. Roman typeface is used to label the bones, whereas italics are used to designate a part of a bone. Scale bar = 1 mm.
Fig. 6 in The egg-brooding frogs Fritziana Mello-Leit˜ao, 1937 and Flectonotus Miranda-Ribeiro, 1926 (Amphibia: Anura): osteology and putative synapomorphies for hemiphractid frogs
Fig. 6. Pectoral girdle (ventral view) of Fritziana and Flectonotus species represented by Fr. tonimi and Fr. goeldii. Scale bar = 1 mm.
Fig. 9 in The egg-brooding frogs Fritziana Mello-Leit˜ao, 1937 and Flectonotus Miranda-Ribeiro, 1926 (Amphibia: Anura): osteology and putative synapomorphies for hemiphractid frogs
Fig. 9. Parsimonious optimization onto Echevarría et al. (2021) phylogenetic hypothesis (A) anterolateral extent of anterior process of vomer (B) lenght of postchoanal process of vomer. See Supplemental Material for the complete matrix, including outgroups. Gray represents unknown condition.
Fig. 4 in The egg-brooding frogs Fritziana Mello-Leit˜ao, 1937 and Flectonotus Miranda-Ribeiro, 1926 (Amphibia: Anura): osteology and putative synapomorphies for hemiphractid frogs
Fig. 4. Mandible and Hyolaryngeal apparatus (dorsal view) of Fritziana and Flectonotus species represented by (A) Fr. goeldii; and (B) Fl. fitzgeraldi. Roman typeface is used to label the bones, whereas italics are used to designate a part of a bone. Scale bar = 1 mm.
Fig. 3 in The egg-brooding frogs Fritziana Mello-Leit˜ao, 1937 and Flectonotus Miranda-Ribeiro, 1926 (Amphibia: Anura): osteology and putative synapomorphies for hemiphractid frogs
Fig. 3. Skull (lateral view) of Fritziana and Flectonotus species (A) Fr. goeldii (B) Fr. ohausi (C) Fr. fissilis (D) Fr. tonimi (E) Fr. izecksohni (F) Fr. ulei (G) Fl. pygmaeus; and (H) Fl. fitzgeraldi. Roman typeface is used to label the bones, whereas italics are used to designate a part of a bone (e.g., ramus, process). Scale bar = 1 mm.
Fig. 15 in The egg-brooding frogs Fritziana Mello-Leit˜ao, 1937 and Flectonotus Miranda-Ribeiro, 1926 (Amphibia: Anura): osteology and putative synapomorphies for hemiphractid frogs
Fig. 15. Parsimonious optimization onto Echevarría et al. (2021) phylogenetic hypothesis (A) ossification extension of sternum (B) relative length of Fingers II See Supplemental Material for the complete matrix, including outgroups. Gray represents unknown condition.
Fig. 14 in The egg-brooding frogs Fritziana Mello-Leit˜ao, 1937 and Flectonotus Miranda-Ribeiro, 1926 (Amphibia: Anura): osteology and putative synapomorphies for hemiphractid frogs
Fig. 14. Parsimonious optimization onto Echevarría et al. (2021) phylogenetic hypothesis (A) clavicules orientation (B) shape of omostermum. See Supplemental Material for the complete matrix, including outgroups. Gray represents unknown condition.
Fig. 8 in The egg-brooding frogs Fritziana Mello-Leit˜ao, 1937 and Flectonotus Miranda-Ribeiro, 1926 (Amphibia: Anura): osteology and putative synapomorphies for hemiphractid frogs
Fig. 8. Parsimonious optimization onto Echevarría et al. (2021) phylogenetic hypothesis: extension of anterior terminus of cultriform process of parasphenoid. See Supplemental Material for the complete matrix, including outgroups. Gray represents unknown condition.
Fig. 7 in The egg-brooding frogs Fritziana Mello-Leit˜ao, 1937 and Flectonotus Miranda-Ribeiro, 1926 (Amphibia: Anura): osteology and putative synapomorphies for hemiphractid frogs
Fig. 7. Manus and pes (dorsal view) of Fritziana and Flectonotus species represented by (A) Fr. ohausi manus (B) Fl. fitzgeraldi manus (C) Fr. ohausi pes; and (D) Fl. fitzgeraldi pes. Roman typeface is used to label the bones, whereas italics are used to designate a part of a bone. Scale bar = 1 mm. E. = element.
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