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665 results for “foundation”
Figure 12 in A redescription of the skull of Euoplocephalus tutus (Archosauria: Ornithischia): a foundation for comparative and systematic studies of ankylosaurian dinosaurs
Figure 12. Post-palatal area of Euoplocephalus tutus Lambe (1902) cranium in ventral view, original and interpretive illustration. TMP 97.132.1. Scale bar, 100 mm. All abbreviations are listed in Appendix 1.
Figure 15 in A redescription of the skull of Euoplocephalus tutus (Archosauria: Ornithischia): a foundation for comparative and systematic studies of ankylosaurian dinosaurs
Figure 15. Mandible of Euoplocephalus tutus Lambe (1902). Predentary in oblique rostroventral (A) and ventral (B) views. Right mandible in medial (C) and lateral (D; mirror imaged) views. AMNH 5405. Scale bar, 100 mm (E) Right coronoid bone (indicated by arrow) articulating with the dentary, surangular and splenial in medial view. AMNH 5403. Scale bar, 25 mm. Compare with Fig. 6.
Figure 17 in A redescription of the skull of Euoplocephalus tutus (Archosauria: Ornithischia): a foundation for comparative and systematic studies of ankylosaurian dinosaurs
Figure 17. Cranium of Euoplocephalus tutus Lambe (1902) in left lateral (A) and ventral (B) views. NMC 8530, holotype of Anodontosaurus lambei, herein considered synonymous with Euoplocephalus tutus. Scale bar, 100 mm. Abbreviations in italics and parentheses reflect the original interpretation by Sternberg (1929). All abbreviations are listed in Appendix 1.
Figure 14 in A redescription of the skull of Euoplocephalus tutus (Archosauria: Ornithischia): a foundation for comparative and systematic studies of ankylosaurian dinosaurs
Figure 14. Basicranium of Euoplocephalus tutus Lambe (1902) in right lateral view, original and interpretive illustration. FPDM-V-35. Scale bar, 50 mm. All abbreviations are listed in Appendix 1.
Figure 10 in A redescription of the skull of Euoplocephalus tutus (Archosauria: Ornithischia): a foundation for comparative and systematic studies of ankylosaurian dinosaurs
Figure 10. Cranium of Euoplocephalus tutus Lambe (1902) in left lateral view (A) indicating the relative position of the transverse computer tomographic sections (B–F) through the rostrum. Only the left half of each transverse computer tomographic image is depicted. (A) AMNH 5405. (B–F) TMP 97.132.1. Scale bar, 100 mm. All abbreviations are listed in Appendix 1. (G) Schematic illustration of a nasal cavity proper undulating through the rostrum based on a reconstruction of the computer tomographic images. Not to scale.
Figure 6 in A redescription of the skull of Euoplocephalus tutus (Archosauria: Ornithischia): a foundation for comparative and systematic studies of ankylosaurian dinosaurs
Figure 6. Schematic illustrations of the mandibular region of Euoplocephalus tutus Lambe (1902). (A) Predentary, ventral view. (B) Medial view, right mandible. (C) Lateral view, right mandible. Teeth and alveoli omitted. Not to scale. All abbreviations are listed in Appendix 1.
Figure 3 in A redescription of the skull of Euoplocephalus tutus (Archosauria: Ornithischia): a foundation for comparative and systematic studies of ankylosaurian dinosaurs
Figure 3. Cranium of Euoplocephalus tutus Lambe (1902) in oblique rostrodorsolateral view demonstrating the unique pattern of cranial ornamentation. AMNH 5405. Scale bar, 100 mm. All abbreviations are listed in Appendix 1. Modified from Vickaryous et al. (2001a).
Figure 9 in A redescription of the skull of Euoplocephalus tutus (Archosauria: Ornithischia): a foundation for comparative and systematic studies of ankylosaurian dinosaurs
Figure 9. Palate of Euoplocephalus tutus Lambe (1902) in ventral view, original and interpretive illustration. TMP 97.132.1. Scale bar, 100 mm. All abbreviations are listed in Appendix 1.
Figure 7 in A redescription of the skull of Euoplocephalus tutus (Archosauria: Ornithischia): a foundation for comparative and systematic studies of ankylosaurian dinosaurs
Figure 7. Cranium of Euoplocephalus tutus Lambe (1902) in dorsal (A), ventral (B), right lateral (C) and occipital (D) views. TMP 91.127.1. Scale bar, 100 mm.
Figure 2 in A redescription of the skull of Euoplocephalus tutus (Archosauria: Ornithischia): a foundation for comparative and systematic studies of ankylosaurian dinosaurs
Figure 2. Cranium of Euoplocephalus tutus Lambe (1902) in dorsal (A) and ventral (B) views, with the rostrum directed towards the top of the page. NMC 0210, holotype. Scale bar, 100 mm. Abbreviations in italics and parentheses reflect the original interpretation by Lambe (1902). All abbreviations are listed in Appendix 1.
GEOLAB - Transnational Access project LIWEMAT – Deformation characterisation of LIghtWEight foundation MATerials
<p>Proper use of lightweight materials as construction material for various types of infrastructure brings a lot of advantages to European critical infrastructure related to weight reduction and prevention of progressive heating or freezing of its structural elements.</p> <p>Large-scale Triaxial Apparatus was used to perform the loading tests, which enables the characterization of materials at very small strain ranges with a very high accuracy level of load-displacement control. The apparatus has rigid confining aluminum frames with a height of 3 cm and cross-section of 40 x 40 cm, enabling prismatic specimens with a height of up to 80 cm to be tested.</p> <p>This research aims to determine the characteristics of expanded clay and foamed glass aggregates through laboratory testing, performing cyclic loading for the stiffness and damping evaluation, which would be beneficial parameters for numerical simulations.</p> <p>Testing material</p> <p>The foam glass aggregate has a homogeneous microstructure with approximate uniform shape and sizes. Foam glass aggregate is considered one of the best solid isolation materials with several unique properties. It can be widely used in many applications such as basement walls, foundations, floors and roofs, terrace and garden covers, rooftops, and parking areas.</p> <p>The expanded clay aggregate is round shape with different sizes with small, air-filled cavities, with dark brown, reddish, brown-red or gray colors, which depends on the chemical composition of the expanded clay. The lightweight expanded clay aggregate has bulk density from 250 kg/m<sup>3</sup> to 710 kg/m<sup>3</sup>, mostly dependent on the size of the aggregate.</p> <p> </p>
UniFMIR: Pre-training a Foundation Model for Universal Fluorescence Microscopy Image Restoration
<p>This repository contains the preprocessed dataset for [UniFMIR](https://github.com/cxm12/UNiFMIR/). All training and test data involved in the experiments are publicly available datasets. Licenses of the original dataset are applied. You can refer to the Github repository for details.</p> <p>* The 3D denoising/isotropic reconstruction/projection datasets can be downloaded from [Content Aware Image Restoration dataset](https://publications.mpi-cbg.de/publications-sites/7207/). `Projection_Flywing/train_data/my_training_data.npz` are generated according to the [CSBDeep](http://csbdeep.bioimagecomputing.com/doc/).</p> <p>* The SR dataset can be downloaded from [BioSR dataset](https://doi.org/10.6084/m9.figshare.13264793). The dataset is augmented according to the instructions in [DFCAN](https://github.com/qc17-THU/DL-SR/tree/main#train-a-new-model) and `my_training_data.npz` files are generated following [CSBDeep](http://csbdeep.bioimagecomputing.com/doc/datagen.html). </p> <p>* The Volumetric reconstruction dataset are from [VCD-LFM dataset](https://doi.org/10.5281/zenodo.4390067). The dataset is prepared according to the instructions in [VCD-Net](https://github.com/feilab-hust/VCD-Net).</p> <p>* DeepBacs dataset can be downloaded from [DeepBacs dataset](https://zenodo.org/record/6460867). We split the dataset into 5 folds for cross-validation. Shareloc dataset can be downloaded from [Shareloc dataset](https://zenodo.org/record/7234161).</p> <p> </p> <p>The data paths should be as follows:</p> <p>```</p> <p>VCD/vcdnet/</p> <p>CSB/DataSet/</p> <p> Denoising_Planaria/</p> <p> Denoising_Tribolium/</p> <p> Isotropic/Isotropic_Liver/</p> <p> Projection_Flywing/</p> <p> BioSR_WF_to_SIM/DL-SR-main/dataset/</p> <p> Synthetic_tubulin_gfp/</p> <p> Synthetic_tubulin_granules/</p> <p>DeepBacs/</p> <p>Shareloc/</p> <p>```</p>
Evidence of climate-driven selection on tree traits and trait plasticity across the climatic range of a riparian foundation species
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Genetic diversity of a marine foundation species, Laminaria hyperborea (Phaeophyceae Laminariales), along the coast of Ireland
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Genetic structure in patchy populations of a candidate foundation plant: a case study of Leymus chinensis using genetic and clonal diversity
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Comparing first street foundation and PRIMo flood hazard data across the Los Angeles metropolitan region
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Genetic and functional variation across regional and local scales is associated with climate in a foundational prairie grass
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Going with the flow? Relative importance of riverine hydrologic connectivity versus tidal influence for spatial structure of genetic diversity and relatedness in a foundational submersed aquatic plant
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Population genomic and morphological datasets from: An evolutionary mosaic challenges traditional monitoring of a foundation species in a coastal environment - the Baltic Fucus vesiculosus
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Contrasting species richness in patches of alternative foundation species suggests a framework for understanding Species of Unusual Effect
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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)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
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.