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2,581 results for “amphibians”
Fig. 33 in Contributions to the herpetofauna of the Angolan Okavango- Cuando-Zambezi river drainages. Part 3: Amphibians
Fig. 33.Adult male Ptychadena porosissima from Lungwebungu River crossing. Photo by Werner Conradie.
Fig. 29 in Contributions to the herpetofauna of the Angolan Okavango- Cuando-Zambezi river drainages. Part 3: Amphibians
Fig. 29. Adult male Ptychadena bunoderma from Cuanavale River source lake. Photo by Werner Conradie.
Fig. 19 in Contributions to the herpetofauna of the Angolan Okavango- Cuando-Zambezi river drainages. Part 3: Amphibians
Fig. 19. Adult male Hyperolius aff. bocagei (green form) from Cuito River source. Photo by Werner Conradie.
Fig. 20 in Contributions to the herpetofauna of the Angolan Okavango- Cuando-Zambezi river drainages. Part 3: Amphibians
Fig. 20. Adult male Hyperolius aff. bocagei (red form) from Cuanavale River source. Photo by Werner Conradie.
Fig. 13 in Contributions to the herpetofauna of the Angolan Okavango- Cuando-Zambezi river drainages. Part 3: Amphibians
Fig. 13. Adult Hyperolius cinereus from Cubango River rapids near Fundo village. Photo by Werner Conradie.
Fig. 4 in Contributions to the herpetofauna of the Angolan Okavango- Cuando-Zambezi river drainages. Part 3: Amphibians
Fig. 4. Adult male Leptopelis bocagii (green form) from Cuanavale River side tributary source. Photo by Luke Verburgt.
Map 1 in Contributions to the herpetofauna of the Angolan Okavango- Cuando-Zambezi river drainages. Part 3: Amphibians
Map 1. Distribution of Arthroleptis stenodactylus in Angola. Historical records (Marques et al. 2018) are indicated by white dots, while new records are indicated by black dots. Axis values are in degrees (°). Purple polygon – Okavango River basin, Blue polygon – Cuando River basin, Brown polygon – Zambezi River basin.
Fig. 21 in Contributions to the herpetofauna of the Angolan Okavango- Cuando-Zambezi river drainages. Part 3: Amphibians
Fig. 21. Adult male Hyperolius aff. bocagei (brown form) from Cuito River source. Photo by Werner Conradie.
Fig. 18 in Contributions to the herpetofauna of the Angolan Okavango- Cuando-Zambezi river drainages. Part 3: Amphibians
Fig. 18. Adult male Hyperolius quinquevittatus from wetland east of Quemba town. Photo by Pedro Vaz Pinto.
Fig. 12 in Contributions to the herpetofauna of the Angolan Okavango- Cuando-Zambezi river drainages. Part 3: Amphibians
Fig. 12. Adult female Hyperolius benguellensis from Cubango River rapids near Fundo village. Photo by Werner Conradie.
Fig. 10 in Amphibians of Kokolopori: an introduction to the amphibian fauna of the Central Congolian Lowland Forests, Democratic Republic of the Congo
Fig. 10. Phrynobatrachids (Phrynobatrachus), ptychadenids (Ptychadena), and a pyxicephalid (Aubria). (A) Phrynobatrachus sp. aff. auritus (male). (B) Ph. cf. giorgii (male). (C) Ph. cf. auritus (male). (D) Ptychadena aequiplicata (female). (E) Pt. christyi (male), extralimital specimen from Mosite (0.956°N, 23.560°E). (F) Pt. perreti (male). (G) Pt. sp. aff. mascareniensis (male). (H) Aubria masako (male).
Fig. 7 in Amphibians of Kokolopori: an introduction to the amphibian fauna of the Central Congolian Lowland Forests, Democratic Republic of the Congo
Fig. 7. Hyperoliids, Afrixalus, Congolius, and Cryptothylax. (A) Afrixalus equatorialis (male, nocturnal coloration). (B) A. equatorialis (female, nocturnal coloration). (C) A. osorioi (male). (D) A. cf. quadrivittatus (amplectant pair). (E) Congolius robustus (male). (F) C. robustus (female). (G) Cryptothylax greshoffii (male). (H) C. greshoffii (female).
Fig. 9 in Amphibians of Kokolopori: an introduction to the amphibian fauna of the Central Congolian Lowland Forests, Democratic Republic of the Congo
Fig. 9. Hyperoliids, Hyperolius and Hylambates. (A) Hyperolius phantasticus boulengeri (amplectant pair, both sexes in Phase F). (B) H. phantasticus boulengeri under UV light (male, Phase J). (C) H. cf. platyceps, hourglass morph (male). (D) H. cf. platyceps, striped morph, "forma pleurotaenia" (male). (E) H. cf. platyceps, hourglass morph, ventral view (female). (F) H. ocellatus purpurescens (female). (G) Hylambates verrucosus (male). (H) H. verrucosus, ventral view (same specimen as in G).
Fig. 6 in Amphibians of Kokolopori: an introduction to the amphibian fauna of the Central Congolian Lowland Forests, Democratic Republic of the Congo
Fig. 6. Bufonids, Sclerophrys. (A) S. cf. funerea, dorsal view (male in breeding condition, with smoother dorsal skin). (B) S. cf. funerea, brown morph (female). (C) S. cf. funerea, black morph (male). (D) S. sp. aff. camerunensis 1, with distinct coloration (subadult). (E) S. sp. aff. camerunensis 1 (male). (F) S. sp. aff. camerunensis 1 (female). (G) S. sp. aff. camerunensis 2 (male). (H) S. sp. aff. camerunensis 2 (female).
Fig. 8 in Amphibians of Kokolopori: an introduction to the amphibian fauna of the Central Congolian Lowland Forests, Democratic Republic of the Congo
Fig. 8. Hyperoliids, Hyperolius. (A) H. cf. cinnamomeoventris, striped morph (male). (B) H. cf. cinnamomeoventris, striped morph (female). (C) H. cf. cinnamomeoventris, hourglass morph (male). (D) H. cf. cinnamomeoventris, hourglass morph (female); note the species-specific red coloration of the inner thighs in both sexes in (C) and (D). (E) H. cf. cinnamomeoventris, hourglass morph (male). (F) H. cf. langi, striped morph, "forma albomarginata" (male). (G) H. phantasticus boulengeri (male, Phase J). (H) H. phantasticus boulengeri (female).
Fig. 4 in Amphibians of Kokolopori: an introduction to the amphibian fauna of the Central Congolian Lowland Forests, Democratic Republic of the Congo
Fig. 4. Arthroleptids, Arthroleptis and Cardioglossa. (A) Arthroleptis phrynoides (female). (B) A. phrynoides, ventral view (same specimen as in A). (C) A. tuberosus procterae (female). (D) A. sp. aff. phrynoides (female). (E) A. sp. aff. variabilis (male). (F) A. sp. aff. xenochirus (male). (G) Cardioglossa congolia (male). (H) C. congolia, ventral view (same specimen as in G).
Fig. 3 in Amphibians of Kokolopori: an introduction to the amphibian fauna of the Central Congolian Lowland Forests, Democratic Republic of the Congo
Fig. 3. Species richness of amphibians in Kokolopori (species accumulation curves) as based on the number of species observed (black) and statistically estimated using the Jackknife 1 (blue) and Chao 2 (red) methods. (A) Wet season, May 2018. (B) Wet season, November 2018. (C) Dry season, August 2019. (D) Cumulative data from the entire period, 2018–2020 (48 days). Red dotted lines show the 95% confidence interval for Chao 2.
Fig. 5 in Amphibians of Kokolopori: an introduction to the amphibian fauna of the Central Congolian Lowland Forests, Democratic Republic of the Congo
Fig. 5. Arthroleptids, Leptopelis. (A) L. calcaratus meridionalis, brown morph (male). (B) L. calcaratus meridionalis, orange-black morph (male). (C) L. christyi, brown morph (male). (D) L. christyi, green morph (male). (E) L. christyi (juvenile). (F) L. ocellatus schiotzi (amplectant pair). (G) L. ocellatus schiotzi (male). (H) L. ocellatus schiotzi (female).
Fig. 1 in Amphibians of Kokolopori: an introduction to the amphibian fauna of the Central Congolian Lowland Forests, Democratic Republic of the Congo
Fig. 1. Map of the study site. (A) Democratic Republic of the Congo (DRC), Congo Basin (red line) with the Congo River (blue line), and Kokolopori (yellow rectangle). Vegetation types follow Vancutsem et al. (2009): greenish tones correspond to forests, brownish tones to open areas; within Kokolopori (inset in left corner), dark green corresponds to primary dense moist forests, lighter green to old and young secondary forests, and yellow-white to rural and agricultural complexes. (B) Kokolopori Bonobo Nature Reserve (yellow line) as delineated in 2009 on a satellite map corresponding to 2005–2010 (FACET 2010), with collecting sites (red dots). White stars denote four sampling areas (base camps). Kokolopori is a spring area of two large rivers, Lopori and Luo (= Maringa).
Fig. 40 in The Amphibian Tree Of Life
Fig. 40. Maximumlikelihood tree of ranoids of Delorme et al. (2004), based on sequences 12S and 16S rRNA for a total of 1198 bp. Alignment was made using the program SeAl (1995; cost functions not provided) and by comparison with models of secondary structure. treated as missing data. The maximumlikelihood nucleotide substitution model accepted was
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OpenNeuro
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