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796 results for “Marsupials”

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FIG. 52 in Craniodental Morphology And Phylogeny Of Marsupials

FIG. 52. Hypsiprymnodon moschatus (Diprotodontia, Hypsiprymnodontidae; based on AMNH 184580, an adult male from Queensland).

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FIG. 43 in Craniodental Morphology And Phylogeny Of Marsupials

FIG. 43. Dromiciops gliroides (Microbiotheria, Microbiotheriidae; based on UWBM 78641, an adult male from Región de La Araucanía, Chile).

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FIG. 42 in Craniodental Morphology And Phylogeny Of Marsupials

FIG. 42. Pseudantechinus macdonnellensis (Dasyuromorphia, Dasyuridae; based on AMNH 196694, an adult female from Western Australia).

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FIG. 49 in Craniodental Morphology And Phylogeny Of Marsupials

FIG. 49. Tarsipes rostratus (Diprotodontia, Tarsipedidae; based primarily on WAM M-6702, an adult male from Western Australia).

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FIG. 40 in Craniodental Morphology And Phylogeny Of Marsupials

FIG. 40. Thylacinus cynocephalus (Dasyuromorphia, Thylacinidae; based primarily on BMNH 1852.1.16.8, an adult female from Tasmania, but with the features of the auditory region reconstructed based on BMNH 1952.1432, an adult of unknown sex (probably also a female, based on its comparatively small and gracile skull) from Tasmania, and with additional information regarding general sutural and pterygoid morphology provided by BMNH 1972.665, an adult male from Tasmania.

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FIG. 38 in Craniodental Morphology And Phylogeny Of Marsupials

FIG. 38. Macrotis lagotis (Peramelemorphia, Thylacomyidae; based on AMNH 35685, an adult male zoo specimen).

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FIG. 35 in Craniodental Morphology And Phylogeny Of Marsupials

FIG. 35. Caenolestes fuliginosus (Paucituberculata, Caenolestidae; based on UMMZ 155581, an adult female from Provincia Napo, Ecuador).

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FIG. 34 in Craniodental Morphology And Phylogeny Of Marsupials

FIG. 34. Marmosa murina (Didelphimorphia, Didelphidae; based on AMNH 267368, an adult of unknown sex from French Guiana).

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FIG. 32 in Craniodental Morphology And Phylogeny Of Marsupials

FIG. 32. Fifty-percent majority rule consensus of post-burn-in trees that results from undated Bayesian analysis of our total evidence dataset. Black dots at nodes indicate ≥0.95 Bayesian posterior probability ("strong support"); dark gray dots indicate 0.75–0.94 Bayesian posterior probability ("moderate support"); light gray dots indicate 0.50–0.74 Bayesian posterior probability ("weak support").

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FIG. 30 in Craniodental Morphology And Phylogeny Of Marsupials

FIG. 30. Strict consensus of 99,999 most parsimonious trees (each of 949 steps, consistency index =0.269, retention index = 0.815) that result from maximum parsimony analysis of our morphological dataset. Black dots at nodes indicate ≥70% bootstrap support ("strong support"); dark gray dots indicate 50%–69% bootstrap support ("moderate support"); light gray dots indicate <50 bootstrap support ("weak support").

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FIG. 51 in Craniodental Morphology And Phylogeny Of Marsupials

FIG. 51. Pseudochirops cupreus (Diprotodontia, Pseudocheiridae; based on AMNH 104149, an adult male from an unknown locality in Papua New Guinea).

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FIG. 29 in Craniodental Morphology And Phylogeny Of Marsupials

FIG. 29. Fifty-percent majority rule consensus of post-burn-in trees that results from undated Bayesian analysis of our combined nuclear and mitochondrial sequence dataset. Black dots at nodes indicate ≥0.95 Bayesian posterior probability ("strong support"); dark gray dots indicate 0.75–0.94 Bayesian posterior probability ("moderate support"); light gray dots indicate 0.50–0.74 Bayesian posterior probability ("weak support").

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FIG. 36 in Craniodental Morphology And Phylogeny Of Marsupials

FIG. 36. Notoryctes typhlops (Notoryctemorphia, Notoryctidae; based on AMNH 198651, an adult of unknown sex from South Australia).

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FIG. 33 in Craniodental Morphology And Phylogeny Of Marsupials

FIG. 33. (opposite page and at right) Fifty-percent majority rule consensus of post-burn-in trees that results from dated Bayesian analysis (using combined tip-and-node dating and separate Independent Gamma Rates [IGR] clock models for the molecular and morphological partitions) of our total evidence dataset. Black dots at nodes indicate ≥0.95 Bayesian posterior probability ("strong support"); dark gray dots indicate 0.75–0.94 Bayesian posterior probability ("moderate support"); light gray dots indicate 0.50–0.74 Bayesian posterior probability ("weak support"). Nodes without dots were constrained a priori so that their ages could be calibrated (see tables 6, 13). Orange bars represent 95% Highest Posterior Density (HPD) intervals on the ages of nodes. For clarity, 95% HPD intervals are not shown for the ages of fossil terminals.

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FIG. 28 in Craniodental Morphology And Phylogeny Of Marsupials

FIG. 28. Fifty-percent majority rule consensus of post-burn-in trees that results from undated Bayesian analysis of our mitochondrial sequence-only dataset. Black dots at nodes indicate ≥0.95 Bayesian posterior probability ("strong support"); dark gray dots indicate 0.75–0.94 Bayesian posterior probability ("moderate support"); light gray dots indicate 0.50–0.74 Bayesian posterior probability ("weak support").

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FIG. 39 in Craniodental Morphology And Phylogeny Of Marsupials

FIG. 39. Perameles gunnii (Peramelemorphia, Peramelidae; based on MVZ 127070, an adult male from Tasmania).

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FIG. 31 in Craniodental Morphology And Phylogeny Of Marsupials

FIG. 31. Fifty-percent majority rule consensus of post-burn-in trees that results from undated Bayesian analysis of our morphological dataset. Black dots at nodes indicate ≥0.95 Bayesian posterior probability ("strong support"); dark gray dots indicate 0.75–0.94 Bayesian posterior probability ("moderate support"); light gray dots indicate 0.50–0.74 Bayesian posterior probability ("weak support").

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FIG. 50 in Craniodental Morphology And Phylogeny Of Marsupials

FIG. 50. Petaurus breviceps (Diprotodontia, Petauridae; based on AMNH 159481, an adult female from Normanby Island, Papua New Guinea).

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FIG. 25 in Craniodental Morphology And Phylogeny Of Marsupials

FIG. 25. Occlusal views of right lower molars of Distoechurus pennatus (A, AMNH 104058 [m2]), Hypsiprymnodon moschatus (B, AMNH 160120 [m2]), Trichosurus vulpecula (C, AMNH 65547 [m1]), and Lagostrophus fasciatus (D, AMNH 155105 [m1]). General features of lower molar crown morphology discussed in the text are illustrated, as are characters 158, 161, 162, 163, 166, 167, 168, 170, 171, 172, 174, 175, 176, 177, 178, 179, and 180 (see main text for descriptions of these characters and character states), as follows: Distoechurus 158(-), 161(0), 162(-), 163(0), 166(0), 167(0), 168(0), 170(0), 171(0), 172(0), 174(0), 175(1), 176(0), 177(0), 178(1), 179(-), 180(0); Hypsiprymnodon moschatus 158(-), 161(0), 162(-), 163(0), 166(0), 167(0), 168(1), 170(0), 171(0), 172(0), 174(0), 175(0), 176(0), 177(0), 178(1), 179(-), 180(0); Trichosurus vulpecula 158(-), 161(0), 162(-), 163(0), 166(0), 167(0), 168(1), 170(0), 171(0), 172(0), 174(-), 175(0), 176(0), 177(2), 178(1), 179(-), 180(0); Lagostrophus 158(-), 161(0), 162(-), 163(0), 166(0), 167(0), 168(0), 170(0), 171(0), 172(0), 174(-), 175(0), 176(0), 177(1), 178(1), 179(-), 180(0). Abbreviations: encd, entoconid; hycd, hypoconid; mecd, metaconid; prcd, protoconid. Numerical labels refer to character states defined in the text. Teeth are not drawn to the same scale.

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FIG. 26 in Craniodental Morphology And Phylogeny Of Marsupials

FIG. 26. Occlusal views of lower molars of Perameles gunnii (A, MVZ 127060[left m2]) and Isoodon macrourus (B, AMNH 160085[right m3, not fully erupted]). General features of lower molar crown morphology discussed in the text are illustrated, as are characters 176 and 177 (see main text for descriptions of these characters and character states), as follows: Perameles 176(1), 177(-); Isoodon 176(0), 177(1). Abbreviations: encd, entoconid; encrd, entocristid. Teeth are not shown to the same scale.

opencc-by-4.0Jun 2022View details →

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International Brain Laboratory public data

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