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82 results for “Chelidae”
FIGURE 3 in A new species and subgenus of Elseya (Testudines: Pleurodira: Chelidae) from New Guinea
FIGURE 3. Internal mouth parts of Elseya branderhorsti showing the alveolar ridge, present in E. (Elseya) secondarily lost in E. (Hanwarachelys).
FIGURE 1 in A new species and subgenus of Elseya (Testudines: Pleurodira: Chelidae) from New Guinea
FIGURE 1. Map of New Guinea showing the distribution of Elseya novaeguineae (Birds Head), E. schultzei (north of Central Ranges) and E. rhodini (south of Central Ranges). The locations of the holotypes for each species are shown as red dots; the type locality for the neotype of Elseya branderhorsti is shown as a green square.
FIGURE 5. PNGM R25201 in A new species and subgenus of Elseya (Testudines: Pleurodira: Chelidae) from New Guinea
FIGURE 5. PNGM R25201 adult female Elseya (Elseya) branderhorsti photographed in life now at the Museum of Papua New Guinea, from the Bensbach River of Papua New Guinea (8° 50' 58.6896" S., 141° 14' 52.944" E.). Scale: 20 mm.
FIGURE 9 in A new species and subgenus of Elseya (Testudines: Pleurodira: Chelidae) from New Guinea
FIGURE 9. Habitat of Elseya rhodini Wau Creek, Sirebi River, Kikori drainage (07˚11' 67.3" S, 144˚37' 13.8" E).
FIGURE 7 in A new species and subgenus of Elseya (Testudines: Pleurodira: Chelidae) from New Guinea
FIGURE 7. Ventral views of the holotypes of A. Elseya (H) schultzei (ZMB 22182) and B. Elseya (H) novaeguineae (MTD D8222).
FIGURE 15. A in A new species and subgenus of Elseya (Testudines: Pleurodira: Chelidae) from New Guinea
FIGURE 15. A neighbour-joining tree, based on mtDNA ND4 gene variation, summarizing the genetic distances between populations of Elseya novaeguineae from the Birds Head and associated islands of New Guinea, E. schultzei from north of the Central Ranges and E. rhodini from south of the Central Ranges and the islands of Aru. The scale is based on 1029 bp of coding mtDNA from ND4 and Cytochrome-b. Data from Georges et al. (2014).
FIGURE 14 in A new species and subgenus of Elseya (Testudines: Pleurodira: Chelidae) from New Guinea
FIGURE 14. Discriminant Function Analysis (DFA) using SAS. Showing Canonical Variante 1 vs Canonical Variant 2 for the three Papuan species in the Elseya novaeguineae complex.
Data from: Assault from all sides: hybridization and introgression threaten the already critically endangered Myuchelys georgesi (Chelonia: Chelidae)
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Data from: Phylogenetic uncertainty and taxonomic re-revisions: an example from the Australian short-necked turtles (Testudines: Chelidae)
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Data from: New remains of the aquatic turtle Hydromedusa casamayorensis (Pleurodira, Chelidae) from the middle Eocene of Patagonia: taxonomic validation and phylogenetic relationships
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Data from: Genome-wide SNP markers breathe new life into phylogeography and species delimitation for the problematic short-necked turtles (Chelidae: Emydura) of eastern Australia
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FIGURE 4 in The identity of Chelodina oblonga Gray 1841 (Testudines: Chelidae) reassessed
FIGURE 4. Ventral, right lateral and dorsal views of the shell of the paralectotype of Chelodina oblonga Gray (OUMNH 02584). (Images courtesy of K. Child, OUMNH).
Figure 4 from: Marques TS, Brito ES, Lara NRF, Beloto LM, Valadão RM, de Camargo PB, Verdade LM (2017) The trophic niche of Mesoclemmys vanderhaegei (Testudines: Chelidae): evidence from stable isotopes. Zoologia 34: 1-6. https://doi.org/10.3897/zoologia.34.e19985
Figure 4 - Relationship between the stable isotope compositions (d15N-d13C) and body size (carapace length and body mass) of Mesoclemmys vanderhaegei at Serra das Araras Ecological Station, Mato Grosso state, Brazil.
Figure 3 from: Marques TS, Brito ES, Lara NRF, Beloto LM, Valadão RM, de Camargo PB, Verdade LM (2017) The trophic niche of Mesoclemmys vanderhaegei (Testudines: Chelidae): evidence from stable isotopes. Zoologia 34: 1-6. https://doi.org/10.3897/zoologia.34.e19985
Figure 3 - Corrected standard ellipses (SEAc) overlaping of standard ellipse between males (white circles: dashed line) and females (black circles: black line) of Mesoclemmys vanderhaegei in δ15N-δ13C space.
Figure 2 from: Marques TS, Brito ES, Lara NRF, Beloto LM, Valadão RM, de Camargo PB, Verdade LM (2017) The trophic niche of Mesoclemmys vanderhaegei (Testudines: Chelidae): evidence from stable isotopes. Zoologia 34: 1-6. https://doi.org/10.3897/zoologia.34.e19985
Figure 2 - Niche widths for males and females of Mesoclemmys vanderhaegei estimated by Bayesian standard ellipse areas (SEAB). The black points correspond to the mean SEAB for each group, while shaded boxes representing the 50%, 75% and 95% credible intervals from dark to light grey.
Figure 1 from: Marques TS, Brito ES, Lara NRF, Beloto LM, Valadão RM, de Camargo PB, Verdade LM (2017) The trophic niche of Mesoclemmys vanderhaegei (Testudines: Chelidae): evidence from stable isotopes. Zoologia 34: 1-6. https://doi.org/10.3897/zoologia.34.e19985
Figure 1 - Maps illustrating study site at Serra das Araras Ecological Station, Mato Grosso state, Brazil (Projected Cordinate Sistem; Datum: Sirgas 2000).
Figure 1. Australian and New Guinean drainage basins showing the 46 in Electrophoretic delineation of species boundaries within the genus Chelodina (Testudines: Chelidae) of Australia, New Guinea and Indonesia
Figure 1. Australian and New Guinean drainage basins showing the 46 basins from which samples were collected. Drainage basins are numbered as follows. South Australia: 1. Broughton (Clo); 2. Millicent Coast (Clo). Victoria: 3. Murray- Riverina (Cex, Clo); 4. Bega (Clo). New South Wales: 5. Clyde River–Jervis Bay (Clo); 6. Hawkesbury (Clo); 7. Hunter (Clo); 8. Macleay (Clo); 9. Clarence (Clo); 10. Murrumbidgee (Clo); 11. Castlereagh (Cex); 12. Namoi (Cex, Clo); 13. Gwydir (Clo); 14. Border (Clo). Queensland: 15. Condamine–Culgoa (Cex, Clo); 16. Logan–Albert (Cex); 17. Pine (Cex); 18. Mary (Cex); 19. Fraser Island (Cex, Clo); 20. Burnett (Cex); 21. Fitzroy (Cex); 22. Shoalwater (Clo ¥ Cno); 23. Styx (Cno); 24. Proserpine (Cno); 25. Don (Cno, Clo ¥ Cno); 26. Ross (Cno); 27. Jardine (Cru); 28. Mitchell (Cru); 29. Gilbert (Cno, Cru, Cno ¥ Cru); 30. Nicholson (Cno). Northern Territory: 31. Robinson (Cru); 32. Roper (Cno); 33. Liverpool (Cbu); 34. South
Figure 5 in Electrophoretic delineation of species boundaries within the genus Chelodina (Testudines: Chelidae) of Australia, New Guinea and Indonesia
Figure 5. An unrooted neighbour-joining tree showing the phylogenetic relationships among taxa that were diagnosable in our sample. This includes forms whose diagnosis was tentative: that is, involving one fixed difference in allopatry.
FIGURE 10 in A new species and subgenus of Elseya (Testudines: Pleurodira: Chelidae) from New Guinea
FIGURE 10. Lateral view of the head of Elseya rhodini. Wild caught individual (UCAA42045).
FIGURE 2 in Dating the origin and diversiFIcation of Pan-Chelidae (Testudines, Pleurodira) under multiple molecular clock approaches
FIGURE 2 Total-evidence dated Bayesian tree. Numbers in nodes are posterior probabilities. Red taxa denote the stem group. Red stars show different possible positions of the Early Cretaceous Australian pan- chelid turtles described by Smith (2010) (see Discussion). Concepts and bars in blue are taken from Vlachos et al. (2018). Abbreviations: A, Acanthochelys; BGBU, Beginning of Gondwana breakup; BODP, Beginning of the opening of the Drake Passage; C, Chelus; Ch, Chelodina; Che, Chelidae; Che. +SAec, Chelidae + South American extinct chelids; E, Erymnochelys; EECO, Early Eocene Climatic Optimum; El, Elseya; Elu, Elusor; Em, Emydura; EODP, End of the opening of the Drake Passage; F, Flavemys; H, Hydromedusa; M, Mesoclemmys; My, Myuchelys; Mya, Million years ago; DownloadedOlig., from Brill Oligocene.com; 10/07 OTS/, 2022 → 07:36:56PM via free access
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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