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11 results for “Myrmeciza”
Figure 7 in The vocal repertoire of Myrmeciza loricata (Lichtenstein, 1823) (Aves: Thamnophilidae)
Figure 7. Sonograms of other notes (call III) of Myrmeciza loricata. (A) Notes "D + E". (B) Note "F". (C) Note "I" emitted with call II. (D) Note "G". (E) Note "H". (F) Note "J" emitted with call II.
Figure 4 in The vocal repertoire of Myrmeciza loricata (Lichtenstein, 1823) (Aves: Thamnophilidae)
Figure 4. Sonograms of the call I (alarm) of Myrmeciza loricata. (A) Rattle phrases sequence. (B) Zoom showing the series of vertical tick notes.
FIGURE 3 in Taxonomic revision of Myrmeciza (Aves: Passeriformes: Thamnophilidae) into 12 genera based on phylogenetic, morphological, behavioral, and ecological data
FIGURE 3. Simplified time-calibrated chronogram of the Thamnophilidae showing relative ages of former members of the genus Myrmeciza and the main radiations in the family. Estimated stem ages of newly designated monotypic genera suggest that they diverged long ago from their closest relatives and provide additional support for their phenotypic, ecological, and behavioral distinctiveness. Bars at nodes indicate the 95% highest posterior density for the inferred divergence time estimates (Bravo 2012).
FIGURE 2 in Taxonomic revision of Myrmeciza (Aves: Passeriformes: Thamnophilidae) into 12 genera based on phylogenetic, morphological, behavioral, and ecological data
FIGURE 2. Bayesian consensus tree of a subset of the Thamnophilinae, showing that Myrmeciza is polyphyletic (species names in these clades are emboldened). Members of Myrmeciza are placed in eight different well-supported clades in the Microrhopiini, Pithyini, and Pyriglenini. The color of the circles at nodes indicates posterior probability support,> 0.95 (black), 0.95–0.75 (gray), <0.75 (white).
FIGURE 1 in Taxonomic revision of Myrmeciza (Aves: Passeriformes: Thamnophilidae) into 12 genera based on phylogenetic, morphological, behavioral, and ecological data
FIGURE 1. Maximum-likelihood tree of a subset of the Thamnophilinae, showing that Myrmeciza is polyphyletic (species names in these clades are emboldened). Members of Myrmeciza are placed in eight different well-supported clades in the Microrhopiini, Pithyini, and Pyriglenini. The color of the circles at nodes indicates bootstrap support values,> 70% (black), 50- 70% (gray), <50% (white).
Data from: Multilocus tests of Pleistocene refugia and ancient divergence in a pair of Atlantic Forest antbirds (Myrmeciza)
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Figure 6 in The vocal repertoire of Myrmeciza loricata (Lichtenstein, 1823) (Aves: Thamnophilidae)
Figure 6. Sonograms of the note "C" (call III) of Myrmeciza loricata. (A) Note "C" emitted singly. (B) Note "C" emitted with call I (alarm). (C) Note "C" emitted with male song. (D) Note "C" emitted with call II.
Figure 5 in The vocal repertoire of Myrmeciza loricata (Lichtenstein, 1823) (Aves: Thamnophilidae)
Figure 5. Sonograms of the call II of Myrmeciza loricata. (A) Sequences of phrases and notes. (B) Notes emitted singly. (C) Notes emitted in phrase during the flight. (D) Note showing strongly down-slurred rapid modulations (wheezing quality).
Figure 3 in The vocal repertoire of Myrmeciza loricata (Lichtenstein, 1823) (Aves: Thamnophilidae)
Figure 3. Sonograms of the songs and duet of Myrmeciza loricata. (A) Male song. (B) 1-male phrase song, 2-female phrase song with alternated notes. (C) 1-male phrase song, 2-female phrase song with initial trill followed by alternated notes. (D) 1-male phrase song, 2-male and female overlapped phrases song.
Figure 2 in The vocal repertoire of Myrmeciza loricata (Lichtenstein, 1823) (Aves: Thamnophilidae)
Figure 2. Bounds of the selection to determine the beginning and end of the phrase and the maximum and minimum frequencies.
Figure 1 in The vocal repertoire of Myrmeciza loricata (Lichtenstein, 1823) (Aves: Thamnophilidae)
Figure 1. Study area – map and location of the Poço D'Anta Biological Reserve, Juiz de Fora, MG, Brazil.
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