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500 results for “Marsupialia”
Fig. 2 in First Crania and Assessment of Species Boundaries in Nimbadon (Marsupialia: Diprotodontidae) from the Middle Miocene of Australia
Fig. 2. Nimbadon lavarackorum cranium (QM F31541) in: A, dorsal; B, ventral; and C, lateral views.
Figure 7 in Taxonomy and palaeobiology of the largest-ever marsupial, Diprotodon Owen, 1838 (Diprotodontidae, Marsupialia)
Figure 7. Diprotodon upper incisors (QMF2485). A, lateral aspect. B, occlusal aspect.
FIGURE 1. A in A new dasyurid marsupial from Kroombit Tops, south-east Queensland, Australia: the Silver-headed Antechinus, Antechinus argentus sp. nov. (Marsupialia: Dasyuridae)
FIGURE 1. A guide to measurement of variables: skull and dentary (a–h), and external body measures (i, j).
FIGURE 19 in Taxonomy and redescription of the Atherton Antechinus, Antechinus godmani (Thomas) (Marsupialia: Dasyuridae)
FIGURE 19. Scatterplot of inter-orbital width (IOW) versus maximum width between the ectolophs of the left and right first upper molars (R-LM1T) measures for female A. godmani (open triangles), A. adustus (open circles), A. bellus (open squares), A. flavipes rubeculus (closed squares), A. leo (closed triangles), A. mysticus (closed circles) and A. swainsonii (crosses).
FIGURE 8 in Taxonomy and redescription of the Atherton Antechinus, Antechinus godmani (Thomas) (Marsupialia: Dasyuridae)
FIGURE 8. Scatterplot of canonical variates scores (roots 1 and 2) for males of antechinus species grouped by apriori taxonomic affinity: A. godmani (open triangles), A. flavipes rubeculus (closed squares), A. leo (closed triangles), A. minimus (closed circles) and A. swainsonii (crosses).
FIGURE 22 in Taxonomy and redescription of the Atherton Antechinus, Antechinus godmani (Thomas) (Marsupialia: Dasyuridae)
FIGURE 22. Distribution map showing site records (closed circles) of A. godmani, based on museum specimens analysed in the present study.
FIGURE 10 in Taxonomy and redescription of the Atherton Antechinus, Antechinus godmani (Thomas) (Marsupialia: Dasyuridae)
FIGURE 10. Scatterplot of canonical variates scores (roots 1 and 2) for females of antechinus species grouped by apriori taxonomic affinity: A. godmani (open triangles), A. flavipes rubeculus (closed squares), A. leo (closed triangles), A. minimus (closed circles) and A. swainsonii (crosses).
FIGURE 21 in Taxonomy and redescription of the Atherton Antechinus, Antechinus godmani (Thomas) (Marsupialia: Dasyuridae)
FIGURE 21. Scatterplot of palate length (PL) versus upper premolar tooth row length (UPL) measures for female A. godmani (open triangles), A. agilis (open squares), A. flavipes flavipes (closed circles), A. flavipes leucogaster (open circles), A. minimus (crosses), A. stuartii (closed squares) and A. subtropicus (closed triangles).
FIGURE 1. A in Taxonomy and redescription of the Fawn Antechinus, Antechinus bellus (Thomas) (Marsupialia: Dasyuridae)
FIGURE 1. A guide to measurement of variables: skull and dentary (a–h), and external body measures (i, j).
FIGURE 1. A in Taxonomy and redescription of the Fawn Antechinus, Antechinus bellus (Thomas) (Marsupialia: Dasyuridae)
FIGURE 1. A guide to measurement of variables: skull and dentary (a–h), and external body measures (i, j).
FIGURE 43 in Systematics and palaeobiology of kangaroos of the late Cenozoic genus Protemnodon (Marsupialia, Macropodidae)
FIGURE 43. lumbar vertebrae of P. mamkurra sp. nov. holotype SAMA P59549: (a–c) line drawing of lumbar vertebra L3 in (a) left lateral, (b) cranial, and (c) caudal views; and lumbar vertebrae L2 (d–f), L3 (g–i), and L4 (j–l) in (d, g, j) left lateral, (e, h, k) cranial, and (f, i, l) caudal views.
Fig. 4 in Phylogeny and evolution of body mass in didelphid marsupials (Marsupialia: Didelphimorphia: Didelphidae)
Fig. 4 Evolution of body mass in Didelphidae. Reconstructed values are shown below branches. Black arrows denote increases and gray ones, decreases. Body mass values in grams for taxa are indicated in brackets
Fig. 2 in Phylogeny and evolution of body mass in didelphid marsupials (Marsupialia: Didelphimorphia: Didelphidae)
Fig. 2 Best tree resulting from total dataset (ten genes) maximum likelihood analysis. Bootstrap support values are indicated for each node and are also reflected on degree of branch thickness. Asterisks:
FIGURE 9 in Taxonomy and redescription of the Yellow-footed Antechinus, Antechinus flavipes (Waterhouse) (Marsupialia: Dasyuridae)
FIGURE 9. Scatterplot of canonical variates scores (roots 1 and 3) for females of antechinus species found in temperate or subtropical latitudes: A. flavipes flavipes (open circles), A. flavipes leucogaster (crosses), A. agilis (open squares), A. minimus (closed squares), A. mysticus (closed circles), A. stuartii (open triangles), A. subtropicus (closed triangles) and A. swainsonii (asterisks).
FIGURE 21 in Taxonomy and redescription of the Yellow-footed Antechinus, Antechinus flavipes (Waterhouse) (Marsupialia: Dasyuridae)
FIGURE 21. Photographs of the A. flavipes flavipes holotype specimen (BMNH 1855.12.24.75) skull: upper above (a), upper below (b) and upper side (c).
FIGURE 17 in Taxonomy and redescription of the Yellow-footed Antechinus, Antechinus flavipes (Waterhouse) (Marsupialia: Dasyuridae)
FIGURE 17. Scatterplot of inter-palatal vacuity length (IPV) versus posterior palatal vacuity length (PPV) measures for female A. flavipes flavipes (open circles), A. stuartii (open triangles), A. subtropicus (closed triangles) and A. swainsonii (asterisks).
FIGURE 27 in Taxonomy and redescription of the Yellow-footed Antechinus, Antechinus flavipes (Waterhouse) (Marsupialia: Dasyuridae)
FIGURE 27. Scatterplot of inter-palatal vacuity length (IPV) versus posterior palatal vacuity length (PPV) measures for female A. flavipes leucogaster (crosses), A. minimus (closed squares), A. mysticus (closed circles), A. stuartii (open triangles), A. subtropicus (closed triangles) and A. swainsonii (asterisks).
FIGURE 1. A in Taxonomy and redescription of the Yellow-footed Antechinus, Antechinus flavipes (Waterhouse) (Marsupialia: Dasyuridae)
FIGURE 1. A guide to measurement of variables: skull and dentary (a–h), and external body measures (i, j).
Figure 4 in Evolution of molar shape in didelphid marsupials (Marsupialia: Didelphidae): analysis of the influence of ecological factors and phylogenetic legacy
Figure 4. Third lower molar (m3) shape variation along the first two principal components (PC) from the PCA of the Procrustes coordinates, showing the distribution of taxonomic groups. Deformation grids show the extreme shape of each PC.
Fig. 1 in Phylogeny and evolution of body mass in didelphid marsupials (Marsupialia: Didelphimorphia: Didelphidae)
Fig. 1 Current hypothesis of systematic relationships in Didelphidae. Subg. subgenus
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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
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OpenNeuro
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