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706 results for “Late Jurassic”
Figure 7 in A new ichthyosaur from the Late Jurassic of north- west Patagonia (Argentina) and its significance for the evolution of the narial complex of the ophthalmosaurids
Figure 7. Time-calibrated reduced strict consensus tree presenting the evolution of the bony narial openings. The taxon Pervushovisaurus bannovkensis was removed from the dataset of most parsimonious trees. Red, prefrontal; yellow, lacrimal; blue, nasal; green, premaxilla; pink, maxilla; brown, jugal. [Length = 194; consistency index (CI)= 0.407, retention index (RI)=0.582]. Bremer values greater than two are indicated above the branches.
FIGURE A1 in Abelisauridae (Dinosauria: Theropoda) from the Late Jurassic of Portugal and dentition-based phylogeny as a contribution for the identification of isolated theropod teeth
FIGURE A1. Cross-section outlines of the base crown at the cervix in nonavian theropods. A. subcircular; B. elliptical; C. subrectangular; D. oval; E. lanceolate; F. lenticular; G. eight-shaped; H. bean-shaped (reniform); I–J. U-shaped; K–L. Dshaped; M–N. 'Flying-saucer' shape; O. J-shaped.
FIGURE A8. A in Abelisauridae (Dinosauria: Theropoda) from the Late Jurassic of Portugal and dentition-based phylogeny as a contribution for the identification of isolated theropod teeth
FIGURE A8. A. Strict consensus cladogram of nine most parsimonious trees recovered from the analysis of a supermatrix including a dentition-based datamatrix and six recent datasets based on whole theropod skeleton (i.e., Xu et al. 2009; Brusatte et al. 2010; Martinez et al. 2011; Senter 2011; Pol and Rauhut 2012; Carrano et al. 2012). Initial analysis was a New Technology Search using TNT v.1.1 of a supermatrix comprising 1972 characters for one outgroup (Eoraptor) and 59 nonavian theropod taxa. Tree length = 3583 steps; CI = 0.546; RI = 0.604. B. Strict consensus cladogram of four most parsimonious trees recovered from the analysis of a supermatrix after the deletion of the two wildcard taxa Erectopus and Piatnitzkysaurus. Tree length = 3529 steps; CI = 0.575; RI = 0.642.
FIGURE 5 in Abelisauridae (Dinosauria: Theropoda) from the Late Jurassic of Portugal and dentition-based phylogeny as a contribution for the identification of isolated theropod teeth
FIGURE 5. Plots of CBR versus CHR of ML 962, ML 327, ML 966 and 23 theropod taxa comprising the data set. For reasons of clarity, only taxa with CBR of less than 1 were considered.
FIGURE A10 in Abelisauridae (Dinosauria: Theropoda) from the Late Jurassic of Portugal and dentition-based phylogeny as a contribution for the identification of isolated theropod teeth
FIGURE A10. Strict consensus cladogram of 96 most parsimonious trees recovered from the analysis of a supermatrix including a dentition-based datamatrix and six recent datasets based on whole theropod skeleton (i.e., Xu et al. 2009; Brusatte et al. 2010; Martinez et al. 2011; Senter 2011; Pol and Rauhut 2012; Carrano et al. 2012). Initial analysis was a New Technology Search using TNT v.1.1 of a supermatrix comprising 1972 characters for one outgroup (Eoraptor), 59 non-avian theropod taxa and ML 327, ML 966, ML 939 (coded as lateral teeth), and ML 962 (coded as a mesialmost tooth). Tree length = 3607 steps; CI = 0.529; RI = 0.58.
Figure 1 in The theropod dinosaur Elaphrosaurus bambergi Janensch, 1920, from the Late Jurassic of Tendaguru, Tanzania
Figure 1. Important Late Jurassic dinosaur localities, showing the context of the Tendaguru Formation: 1, Tendaguru Formation, Tanzania (Oxfordian–Tithonian); 2, Kadzi Formation, Zimbabwe (Late Jurassic); 3, Toqui Formation, Chile (Tithonian); 4, Ca~ nadon Calcareo Formation, Argentina (Oxfordian–Kimmeridgian); 5, Morrison Formation, USA (Kimmeridgian–Tithonian); 6, various units, Portugal (mainly Kimmeridgian); 7, various units, central Europe (Kimmeridgian–Tithonian); 8, Sishugou Formation, China (Oxfordian); 9, Upper Shaximiao Formation, China (Late Jurassic); 10, Tiaojishan Formation and equivalents, China (Callovian–Oxfordian). Modified from Rauhut (2011), based on a palaeogeographic map from Colorado Plateau Geosystems Inc. (http://cpgeosystems.com/paleomaps.html).
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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.