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500 results for “Marsupialia”
Figure 9 in An osteology-based appraisal of the phylogeny and evolution of kangaroos and wallabies (Macropodidae: Marsupialia)
Figure 9. Right calcaneus in anterior (top) and dorsal (bottom) views. A, E, Bettongia penicillata. B, F, Simosthenurus occidentalis. C, G, Dendrolagus bennettianus. D, H, Macropus fuliginosus. Bettongia penicillata and Simosthenurus occidentalis are characterized by an intermediate length talus articular region relative to the overall length of the calcaneus, whereas it is comparatively long in D. bennettianus and short in M. fuliginosus.
Figure 4 in An osteology-based appraisal of the phylogeny and evolution of kangaroos and wallabies (Macropodidae: Marsupialia)
Figure 4. Neurocranium in left lateral view. A, Potorous tridactylus. B, Dorcopsulus vanheurni. C, Thylogale billardierii. D, Simosthenurus occidentalis. Potorous lacks a postglenoid process, but the process is small in Dorcopsulus, and large in Thylogale and Simosthenurus (white arrows). Potorous tridactylus also differs from the other taxa by retaining a contact between the frontal (fr) and squamosal (sq) that separates the parietal (pa) and alisphenoid (al) bones. Simosthenurus occidentalis differs from the other taxa by having a thick, wide, rugose ectotympanic (ec).
Figure 8 in An osteology-based appraisal of the phylogeny and evolution of kangaroos and wallabies (Macropodidae: Marsupialia)
Figure 8. Right talus in dorsal (A, C, E, G) and anterior (B, D, F, H) views. A–B, Bettongia penicillata. C–D, Simosthenurus occidentalis. E–F, Dendrolagus bennettianus. G–H, Macropus fuliginosus.
Figure 3 in An osteology-based appraisal of the phylogeny and evolution of kangaroos and wallabies (Macropodidae: Marsupialia)
Figure 3. Single most parsimonious tree depicting the phylogeny of the Macropodidae, inferred from 83 osteological characters (48 craniodental and 35 postcranial) across 35 taxa (18 extant and 17 extinct). All characters are non-additive (unordered) and unweighted. Unambiguous synapomorphies (•) and homoplastic traits (O) are indicated upon each branch; numbers above represent characters, those below represent character states (see Appendices 1–2). Bootstrap/ jackknife values (where> 50%) are indicated in bold italics above each branch. Tree length = 263 steps; ensemble consistency index = 0.55; ensemble retention index = 0.78.
Figure 7 in An osteology-based appraisal of the phylogeny and evolution of kangaroos and wallabies (Macropodidae: Marsupialia)
Figure 7. Right scapula in lateral view. A, Hypsiprymnodon moschatus. B, Bettongia penicillata. C, Dorcopsis veterum. D, Simosthenurus occidentalis. Area of the supraspinous fossa relative to the infraspinous fossa decreases successively from (A) to (D).
Figure 1 in Who's your daddy? Paternity testing reveals promiscuity and multiple paternity in the carnivorous marsupial Dasyurus maculatus (Marsupialia: Dasyuridae)
Figure 1. Mean body mass (A) and scrotal width (B) of spotted-tailed quolls known to have fathered offspring in comparison with males of unknown paternity status.
Figure 2 in Who's your daddy? Paternity testing reveals promiscuity and multiple paternity in the carnivorous marsupial Dasyurus maculatus (Marsupialia: Dasyuridae)
Figure 2. Relatedness (R) of the mother of each litter to sires and non-sires respectively. Dashed line indicates the mean level of relatedness (-0.0265) for the population.
Data from: The osteology and systematics of the enigmatic Australian Oligo-Miocene metatherian Yalkaparidon (Yalkaparidontidae; Yalkaparidontia; Australidelphia; Marsupialia)
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Data from: New DNA data from a Transthyretin nuclear intron suggest an Oligocene to Miocene diversification of living South America opossums (Marsupialia: Didelphidae).
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FIGURE 2 in A new dasyurid marsupial from eastern Queensland, Australia: the Buff-footed Antechinus, Antechinus mysticus sp. nov. (Marsupialia: Dasyuridae)
FIGURE 2. Bayesian phylogeny of the Genus Antechinus based on mitochondrial (Cytb) gene sequences.
FIGURE 4 in A new dasyurid marsupial from eastern Queensland, Australia: the Buff-footed Antechinus, Antechinus mysticus sp. nov. (Marsupialia: Dasyuridae)
FIGURE 4. Photograph of live A. mysticus holotype specimen.
FIGURE 2 in Taxonomy and redescription of the Atherton Antechinus, Antechinus godmani (Thomas) (Marsupialia: Dasyuridae)
FIGURE 2. Bayesian phylogeny of the Genus Antechinus based on mitochondrial (Cytb) gene sequences.
FIGURE 2 in Taxonomy and redescription of the Fawn Antechinus, Antechinus bellus (Thomas) (Marsupialia: Dasyuridae)
FIGURE 2. Bayesian phylogeny of the Genus Antechinus based on mitochondrial (Cytb) gene sequences.
FIGURE 16 in Taxonomy and redescription of the Fawn Antechinus, Antechinus bellus (Thomas) (Marsupialia: Dasyuridae)
FIGURE 16. Photograph of A. bellus holotype skin specimen: upper (a) and lower (b).
Fig. 3 in Phylogeny and evolution of body mass in didelphid marsupials (Marsupialia: Didelphimorphia: Didelphidae)
Fig. 3 Log-transformed distribution of body mass in Didelphidae
FIGURE 2 in Taxonomy and redescription of the Yellow-footed Antechinus, Antechinus flavipes (Waterhouse) (Marsupialia: Dasyuridae)
FIGURE 2. Bayesian phylogeny of the Genus Antechinus based on mitochondrial (Cytb) gene sequences.
Fig. 23 in First Crania and Assessment of Species Boundaries in Nimbadon (Marsupialia: Diprotodontidae) from the Middle Miocene of Australia
Fig. 23. Possible sexual dimorphism in Nimbadon lavarackorum crania: A, lateral and A9, dorsal views of?male (QM F50470); and B, lateral and B9, dorsal views of?female (QM F31377).
FIG. 2 in A Revision of Philander (Marsupialia: Didelphidae), Part 1: P. quica, P. canus, and a New Species from Amazonia
FIG. 2. Cis-Andean collection localities for sequenced specimens of Philander. Numbers are keyed to localities listed in the gazetteer (appendix 1).
Figure 14 in Taxonomy and palaeobiology of the largest-ever marsupial, Diprotodon Owen, 1838 (Diprotodontidae, Marsupialia)
Figure 14. Diprotodon lower molar tooth area from major assemblages examined, arranged from left to right in order of increasing latitude. Horizontal line represents the mean, thick vertical line represents two standard deviations, and thin vertical line represents the range of measurements. A, M1. B, M2. C, M3. D, M4.
Figure 3 in Who's your daddy? Paternity testing reveals promiscuity and multiple paternity in the carnivorous marsupial Dasyurus maculatus (Marsupialia: Dasyuridae)
Figure 3. Relatedness within litters with one (open bars) and two sires (solid bars).
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.