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Fig. 1 in The oldest and youngest records of afrosoricid placentals from the Fayum Depression of northern Egypt
Fig. 1. Relationships of extant placental mammalian orders, based on the analysis of Roca et al. (2004), with zalambdomorph groups (Afrosoricida and Solenodontidae) highlighted.
FIGURE 16 in Mammalian distal humerus fossils from eastern Montana, USA with implications for the Cretaceous-Paleogene mass extinction and the adaptive radiation of placentals
FIGURE 16. Eutherian morphotype EuE (UCMP specimen 218901, from locality V91065; right) in anterior (1) and posterior (2) stereopair views, and in lateral (3), medial (4), and distal (5) views.
FIGURE 19 in Mammalian distal humerus fossils from eastern Montana, USA with implications for the Cretaceous-Paleogene mass extinction and the adaptive radiation of placentals
FIGURE 19. Summary of humerus morphotypes and relative sizes in our study area in the Hell Creek and Tullock formations of eastern Montana. Multituberculate morphotypes are shown as black bars, metatherians as gray bars, and eutherians as white bars. Numbers within the bars indicate the sample size for each temporal bin. Morphotypes are arranged left to right according to increasing size (see text for specimen numbers, localities, and details; Appendices 7–8 for morphotype mean sizes). Gradients for MuF, EuC, and EuD indicate morphotypes were present in the timeaveraged Bug Creek Anthills assemblages, and the morphotype range may extend into the Pu1 and/or the Lancian. Pu2 assemblages are not known from our study area (hashmarks indicate resultant uncertainty of range-through morphotypes; Clemens 2015). The age model is based on previous geochronological work in this study area (Swisher et al., 1993; Renne et al., 2011, 2013; Wilson, 2014; Sprain et al. 2014); note the temporal axis is not to scale. Modified from Sprain et al. (2014). Abbreviations: Fm, Formation; NALMA, North American Land Mammal "age"; Pu1, early Puercan; Pu3, middle/late Puercan; queries (?) indicate specimens that are only tentatively attributed to that morphotype, see Methods.
FIGURE 9 in Mammalian distal humerus fossils from eastern Montana, USA with implications for the Cretaceous-Paleogene mass extinction and the adaptive radiation of placentals
FIGURE 9. Multituberculate morphotype MuF (UCMP specimen 127384, from locality V87001; left), in ventral (1) and dorsal (2) stereopair views, and in lateral (3), medial (4), and distal (5) views.
FIGURE 11 in Mammalian distal humerus fossils from eastern Montana, USA with implications for the Cretaceous-Paleogene mass extinction and the adaptive radiation of placentals
FIGURE 11. Metatherian morphotype MeA (UCMP specimen 152394, from locality V93169; left) in anterior (1) and posterior (2) stereopair views, and in lateral (3), medial (4), and distal (5) views.
FIGURE 6 in Mammalian distal humerus fossils from eastern Montana, USA with implications for the Cretaceous-Paleogene mass extinction and the adaptive radiation of placentals
FIGURE 6. Multituberculate morphotype MuC (UCMP specimen 153039, from locality V84193; left), in ventral (1) and dorsal (2) stereopair views, and in lateral (3), medial (4), and distal (5) views.
FIGURE 12 in Mammalian distal humerus fossils from eastern Montana, USA with implications for the Cretaceous-Paleogene mass extinction and the adaptive radiation of placentals
FIGURE 12. Eutherian morphotype EuA (UCMP specimen 153100, from locality V99438; left) in anterior (1) and posterior (2) stereopair views, and in lateral (3), medial (4), and distal (5) views. Specimen images are CT scan views, not photographs; see Methods for details. Rough patches inside the shaft and within the entepicondylar foramen are the result of sediment infilling, whereas other rough areas (i.e., supinator crest, medial entepicondyle, posterior articular surfaces) indicate specimen breakage.
FIGURE 5 in Mammalian distal humerus fossils from eastern Montana, USA with implications for the Cretaceous-Paleogene mass extinction and the adaptive radiation of placentals
FIGURE 5. Multituberculate morphotype MuB (UCMP specimen 195933, from locality V99438; left), in ventral (1) and dorsal (2) stereopair views, and in distal (3), medial (4), and lateral (5) views.
FIGURE 8 in Mammalian distal humerus fossils from eastern Montana, USA with implications for the Cretaceous-Paleogene mass extinction and the adaptive radiation of placentals
FIGURE 8. Multituberculate morphotype MuE (UWBM specimen 97031, from locality C1845; right), in ventral (1) and dorsal (2) stereopair views, and in lateral (3), medial (4), and distal (5) views.
FIGURE 4 in Mammalian distal humerus fossils from eastern Montana, USA with implications for the Cretaceous-Paleogene mass extinction and the adaptive radiation of placentals
FIGURE 4. Multituberculate morphotype MuA (UCMP specimen 122045, from locality V70201; right), in ventral (1) and dorsal (2) stereopair views, and in lateral (3), medial (4), and distal (5) views.
FIGURE 1 in Mammalian distal humerus fossils from eastern Montana, USA with implications for the Cretaceous-Paleogene mass extinction and the adaptive radiation of placentals
FIGURE 1. Map of humerus-bearing fossil localities from this study. Localities span the Lancian biozone (yellow circles), and early and late Puercan biozones (Pu1 and Pu3, in blue stars and green triangles, respectively), as well as the temporally mixed Lancian-Pu1 localities of the Bug Creek Anthills (red squares). Most localities are in Garfield and McCone counties; Fallon and Carter counties in Montana and Niobrara County in eastern Wyoming (not pictured) each have one locality. Locality names and details are given in Appendix 1. Modified from Wilson et al. 2014.
FIGURE 2 in Mammalian distal humerus fossils from eastern Montana, USA with implications for the Cretaceous-Paleogene mass extinction and the adaptive radiation of placentals
FIGURE 2. Schematic of humerus measurements used in this study. Multituberculate specimen (UCMP 153039; left) in ventral (1), dorsal (2), and distal (3) views; eutherian specimen (UCMP 151964; right, reversed to appear as left) in anterior (4), posterior (5), and distal (6) views. See Table 1 for measurement descriptions. Abbreviations: AW, articular width; C, capitulum; CL, capitulum length; CD, capitulum depth; CW, capitulum width; EC, ectepicondyle; LC, lateral epicondyle (ectepicondyle); MC, medial epicondyle (entepicondyle); NC, entepicondyle; NCW, entepicondylar width; RC, radial condyle; RCL, radial condyle length; RCD, radial condyle depth; RCW, radial condyle width; TDW, total distal width; TL, trochlear length; TD, trochlear depth; TLW, total lateral width; TW; trochlear width; UC, ulnar condyle; UCL, ulnar condyle length; UCD, ulnar condyle depth; UCW, ulnar condyle width; UT, ulnar trochlea.
FIGURE 10 in Mammalian distal humerus fossils from eastern Montana, USA with implications for the Cretaceous-Paleogene mass extinction and the adaptive radiation of placentals
FIGURE 10. Therian morphotype ThA (UCMP specimen 127391, from locality V88007; left) in anterior (1) and posterior (2) stereopair views, and in medial (3) view.
FIGURE 18 in Mammalian distal humerus fossils from eastern Montana, USA with implications for the Cretaceous-Paleogene mass extinction and the adaptive radiation of placentals
FIGURE 18. Eutherian morphotype EuG (UCMP specimen 192678, from locality V74124; left) in anterior (1) and posterior (2) stereopair views, and in medial (3) and distal (4) views.
FIGURE 17 in Mammalian distal humerus fossils from eastern Montana, USA with implications for the Cretaceous-Paleogene mass extinction and the adaptive radiation of placentals
FIGURE 17. Eutherian morphotype EuF (UCMP specimen 92928, from locality V72129; right) in anterior (1) and posterior (2) stereopair views, and in lateral (3), medial (4), and distal (5) views.
FIGURE 14 in Mammalian distal humerus fossils from eastern Montana, USA with implications for the Cretaceous-Paleogene mass extinction and the adaptive radiation of placentals
FIGURE 14. Eutherian morphotype EuC (UCMP specimen 151991, from locality V71203; right) in anterior (1) and posterior (2) stereopair views, and in lateral (3), medial (4), and distal (5) views.
FIGURE 24 in Mammalian distal humerus fossils from eastern Montana, USA with implications for the Cretaceous-Paleogene mass extinction and the adaptive radiation of placentals
FIGURE 24. Plots of Linear Discriminant Analysis of the pruned dataset according to locomotor group. (1) LD1 vs. LD2; (2) LD1 vs. LD3; and (3) LD2 vs. LD3.
FIGURE 13 in Mammalian distal humerus fossils from eastern Montana, USA with implications for the Cretaceous-Paleogene mass extinction and the adaptive radiation of placentals
FIGURE 13. Eutherian morphotype EuB (UWBM specimen 97114, from locality C1115; left) in anterior (1) and posterior (2) stereopair views, and in distal (3), lateral (4), and medial (5) views.
FIGURE 7 in Mammalian distal humerus fossils from eastern Montana, USA with implications for the Cretaceous-Paleogene mass extinction and the adaptive radiation of placentals
FIGURE 7. Multituberculate morphotype MuD (UCMP specimen 195990, from locality V5620; left), in ventral (1) and dorsal (2) stereopair views, and in medial (3), lateral (4), and distal (5) views.
Fig. 3 in Petrosal bones of placental mammals from the Late Cretaceous of Uzbekistan
Fig. 3. Stereophotographs of the petrosal of Kulbeckia kulbecke (URBAC 00−16) in cerebellar (A),squamosal (B),and tympanic views. Scale bar 1 mm. Anterior towards the top in all views.
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
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.