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18 results for “Dicroglossinae”
Figure 7 in Taxonomic notes on the Asian frogs of the tribe Paini (Ranidae, Dicroglossinae): 1. Morphology and synonymy of Chaparana aenea (Smith, 1922), with proposal of a new statistical method for testing homogeneity of small samples
Figure 7. Chaparana aenea (Smith, 1922), MNHN 1999.5821, topotype of Rana (Chaparana) fansipani Bourret, 1939, adult male from Fan Si Pan, Vietnam: ventral view of chest and throat showing shape of patch of nuptial spines.
Figure 6 in Taxonomic notes on the Asian frogs of the tribe Paini (Ranidae, Dicroglossinae): 1. Morphology and synonymy of Chaparana aenea (Smith, 1922), with proposal of a new statistical method for testing homogeneity of small samples
Figure 6. Plots of factors 1 and 2 of principal component analysis based on varimax rotated coefficients for logtransposed characters (25 measurements) for four adult specimens of Chaparana aenea (Smith, 1922) (see Table II) and six adult specimens of Chaparana unculuanus (Liu, Hu and Yang, 1960) (see Table IV).
Figure 3 in Taxonomic notes on the Asian frogs of the tribe Paini (Ranidae, Dicroglossinae): 1. Morphology and synonymy of Chaparana aenea (Smith, 1922), with proposal of a new statistical method for testing homogeneity of small samples
Figure 3. Chaparana aenea (Smith, 1922). (a–c) MNHN 1989.0712, non-breeding adult male from Doi Inthanon, Chiangmai Province, Thailand: (a) whole body in dorsal view; (b) whole body in ventral view; (c) head in right lateral view. (d–f) MNHN 1948.0139, holotype of Rana (Chaparana) fansipani Bourret, 1939, juvenile male from Fan Si Pan, Vietnam: (d) whole body in dorsal view; (e) whole body in ventral view; (f) head in right lateral view.
Figure 4 in Taxonomic notes on the Asian frogs of the tribe Paini (Ranidae, Dicroglossinae): 1. Morphology and synonymy of Chaparana aenea (Smith, 1922), with proposal of a new statistical method for testing homogeneity of small samples
Figure 4. (a–c) Chaparana aenea (Smith, 1922), MNHN 1999.5818, topotype of Rana (Chaparana) fansipani Bourret, 1939, adult male from Fan Si Pan, Vietnam: (a) whole body in dorsal view; (b) whole body in ventral view; (c) head in right lateral view. (d–f) Chaparana unculuanus (Liu, Hu and Yang, 1960), MNHN 2001.0280, adult female from Jingdong Xian, Yunnan, China: (d) whole body in dorsal view; (e) whole body in ventral view; (f) head in right lateral view.
Figure 1 in Taxonomic notes on the Asian frogs of the tribe Paini (Ranidae, Dicroglossinae): 1. Morphology and synonymy of Chaparana aenea (Smith, 1922), with proposal of a new statistical method for testing homogeneity of small samples
Figure 1. Chaparana aenea (Smith, 1922). (a–c) BMNH 1947.2.2.31 (ex BMNH 1922.7.4.4, ex MAS 5821), holotype of Rana aenea Smith, 1922, juvenile female from Doi Chang, Thailand: (a) whole body in dorsal view; (b) whole body in ventral view; (c) head in right lateral view. (d–f) MNHN 1999.5821, topotype of Rana (Chaparana) fansipani Bourret, 1939, adult male from Fan Si Pan, Vietnam: (d) whole body in dorsal view; (e) whole body in ventral view; (f) head in right lateral view.
FIG. 2 in Phylogenetic relationships and generic taxonomy of the tribe Paini (Amphibia, Anura, Ranidae, Dicroglossinae), with diagnoses of two new genera
FIG. 2. — Result of neighbour-joining analysis of phylogenetic analysis of 19 species of the tribe Paini based on partial sequences of mitochondrial 12S and 16S rRNA genes (Jiang et al. 2005). Black bars indicate presence of large sized horny spines: 1, presence of such spines; 2, two separated patches of spines on breast; 3, a single patch of spines covering breast and parts of belly. Grey bars indicate loss of horny spines on breast and belly of adult males.
FIG. 1 in Phylogenetic relationships and generic taxonomy of the tribe Paini (Amphibia, Anura, Ranidae, Dicroglossinae), with diagnoses of two new genera
FIG. 1. — Strict consensus of 16 trees (107 steps, CI 0.364, RI 0.653) based on 30 species of the tribe Paini and 31 morphological characters obtained by simple stepwise addition, followed by branch swapping using the TBR (trees bisection-reconnection) routine implemented in PAUP 4. Numbers of the stems below the horizontal lines on this tree are those used in Table 2 which presents the results of the heuristic analysis, whereas letters above some horizontal lines (A, B, B1, B2, C, C1, C2, C3) are those of the groups discussed in our taxonomic analysis and which are the basis for our recognition of taxa. Bremer indices were 1 for almost all numbered
FIGURE 8–9. 8. N. naeyakai, NMSL 2004.12.1 SVL 39.30 in A new species of endemic frog belonging to genus Nannophrys Günther, 1869 (Anura: Dicroglossinae) from Sri Lanka
FIGURE 8–9. 8. N. naeyakai, NMSL 2004.12.1 SVL 39.30 mm holotype, ventral aspect of right foot. 9. Right foot of N. marmorata NMSL 2004.13.4. SVL 29.59 mm, ventral aspect of right foot.
FIGURE 4 in A new species of endemic frog belonging to genus Nannophrys Günther, 1869 (Anura: Dicroglossinae) from Sri Lanka
FIGURE 4. Anterior edge of the mandible N. naeyakai; sharp & narrow symphysial knob. Height of symphysial knob less than two apophyses. NMSL 2004.12.1; holotype male.
FIGURE 1 in A new species of endemic frog belonging to genus Nannophrys Günther, 1869 (Anura: Dicroglossinae) from Sri Lanka
FIGURE 1. The distribution of N. naeyakai with recorded distribution of N. marmorata, and N. ceylonensis in Sri Lanka. The map shows main mountain ranges, major climatic zones and the river Mahaweli.
FIGURE 10 in A new species of endemic frog belonging to genus Nannophrys Günther, 1869 (Anura: Dicroglossinae) from Sri Lanka
FIGURE 10. Results of principal component analysis (PCA); axis 1 and axis 2 show the separation of three species. Axis 1 illustrates, based on SVL, toe and finger lengths, that N. marmorata and N. naeyakai are differentiated; axis 2 illustrates, based on HD, HW, TW and knee angle to tip of tarsus, that N. ceylonensis and N. naeyakai are differentiated. N. naeyakai partially overlaps with N. ceylonensis on axis 1. Further, N. marmorata and N. ceylonensis are well separated on axis 2.
FIGURE 6–7. 6. N. naeyakai, NMSL 2004.12.1 SVL 39.30 in A new species of endemic frog belonging to genus Nannophrys Günther, 1869 (Anura: Dicroglossinae) from Sri Lanka
FIGURE 6–7. 6. N. naeyakai, NMSL 2004.12.1 SVL 39.30 mm holotype, ventral aspect of right hand. 7. N. marmorata NMSL 2004.13.4. SVL 29.59 mm, ventral aspect of right hand.
FIGURE 5 in A new species of endemic frog belonging to genus Nannophrys Günther, 1869 (Anura: Dicroglossinae) from Sri Lanka
FIGURE 5. Anterior edge of mandible N. marmorata; blunt & wide symphysial knob and more wider pair of apophyes. Height of symphysial knob is the same or slightly higher than two apophyses. NMSL 2004.13.4. SVL 29.59 mm, subadult female.
FIGURE 3 in A new species of endemic frog belonging to genus Nannophrys Günther, 1869 (Anura: Dicroglossinae) from Sri Lanka
FIGURE 3. Lateral view of N. naeyakai. NMSL 2004.12.1; SVL 39.30 mm, holotype male.
FIGURE 11 in A new species of endemic frog belonging to genus Nannophrys Günther, 1869 (Anura: Dicroglossinae) from Sri Lanka
FIGURE 11. Habitat of N. naeyakai; NMSL 2004.12.1 SVL 39.30 mm, holotype in Kokagala hill.
FIGURE 2 in A new species of endemic frog belonging to genus Nannophrys Günther, 1869 (Anura: Dicroglossinae) from Sri Lanka
FIGURE 2. Dorsal view of N. naeyakai. NMSL 2004.12.1; SVL 39.30 mm, holotype male.
Figure 5 in Taxonomic notes on the Asian frogs of the tribe Paini (Ranidae, Dicroglossinae): 1. Morphology and synonymy of Chaparana aenea (Smith, 1922), with proposal of a new statistical method for testing homogeneity of small samples
Figure 5. Plots of factors 1 and 2 of principal component analysis based on varimax rotated coefficients for logtransposed characters (32 measurements) for 13 specimens of Chaparana aenea (Smith, 1922) from China, Thailand and Vietnam (see Table II).
Figure 2 in Taxonomic notes on the Asian frogs of the tribe Paini (Ranidae, Dicroglossinae): 1. Morphology and synonymy of Chaparana aenea (Smith, 1922), with proposal of a new statistical method for testing homogeneity of small samples
Figure 2. Map showing the localities of specimens studied of the species Chaparana aenea (Smith, 1922) (circles) and Chaparana unculuanus (Liu, Hu and Yang, 1960) (square). 1, Doi Chang, Thailand; 2, Doi Inthanon, Thailand; 3, Fan Si Pan, Vietnam; 4, Pu Hoat, Vietnam; 5, Luchun, China; 6, Jingdong, China.
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