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390 results for “after movie”
Movie of launching of the bipolar outflow
<p>Similar to Fig. 5, we show the evolution of gas density, absolute magnetic field strength, radial velocity and ratio of magnetic to thermal pressure perpendicular to the orbital plane.</p>
Movie of density evolution in the plane perpendicular to the orbital plane
<p>Similar to Fig. 1, in this movie the evolution of the density is shown in the plane perpendicular to the orbital plane.</p>
Data and movies for Finley et al. "Impact of the Streamwise Vorticity Current on Low-level Mesocyclone Development in a Simulated Supercell"
<p>The netcdf data files and python files used to make the figures, and the movies provided in the supplemental material in Finley et al. Netcdf software is available from https://www.unidata.ucar.edu/software/netcdf/. Figures 1-4 and movies were made with VisIt, which is available from https://visit-dav.github.io/visit-website/. </p>
Spectrally Split Sweptfield Supplemental Movies
<p><strong>S1 Movie.</strong> Neuronal growth in a zebrafish embryo. Sensory neurons (green) are labeled with GFP and motor neurons (magenta) are labeled with mCherry. The video was captured with filter configuration 2 (see section "System Dichroics and Emission Filters") frames were taken every minute.</p> <p><br> <br> <strong>S2 Movie.</strong> Video of mitosis in a live Xenopus laevis embryo. The cellular membranes (magenta) is labeled with mTagBFP::CAAX; chromatin (blue) is labeled with miRFP670::H2B; and mitotic spindles (green) are labeled with mCherry:α-tubulin. One frame of 75 ms exposure time was captured every 5 seconds. The video was captured with filter configuration 2 (see section "System Dichroics and Emission Filters").</p>
movies recommendations dataset using the "BestSimilar" database
<p>movies recommendations dataset using the "BestSimilar" database</p>
Mfn2 8, 12 and 16 week mouse movies
<p>Mfn2 mutant mice and littermate controls. 8 week old mice are 0-51 seconds, 12 week old mice are 52-123 seconds, 16 week old mice are the last 49 seconds of the movie. At 12 and 16 weeks, the mutant mice are clear and move less than littermates and show hindlimb dysfunction. The mutant mouse is less obvious in the 8 week video, but is the mouse sitting in the back right corner of the pen at the beginning of the video.</p>
Movies and data to accompany "Single-virus fusion measurements reveal multiple mechanistically equivalent pathways for SARS-CoV-2 entry"
<p>Movies and data to accompany "Single-virus fusion measurements reveal multiple mechanistically equivalent pathways for SARS-CoV-2 entry".</p> <p>AVI files contain movies of video micrographs</p> <p>TIFF files contain primary micrographs for representative experiments</p> <p>XLS file contains analyzed data with individual fusion waiting times (as well as locations of fusion events)</p>
Movie and TV Show dataset
<p>Fields included in the dataset:</p> <ul> <li>title: The title of the movie.</li> <li>year: The year in which the movie was released.</li> <li>genre: The genres to which the movie belongs.</li> <li>rating: The movie's rating on a scale of 0 to 10. (Note: This field contains fake data.)</li> <li>duration: The movie's duration in minutes.</li> <li>summary: A brief summary of the movie's plot. (Note: This field currently contains fake text.)</li> <li>stars: A list of the names of the main actors who participated in the movie.</li> <li>votes: The total number of votes the movie received. (Note: This field contains fake data.)</li> <li>num_user_reviews: The number of user reviews of the movie. (Note: This field contains fake data.)</li> <li>num_critic_reviews: The number of critic reviews of the movie. (Note: This field contains fake data.)</li> <li>director: The director of the movie or series. In the case of series, the director is that of the first season.</li> </ul>
Supplementary movies and datasets of the paper: Precise targeting for 3D cryo-correlative light and electron microscopy volume imaging of tissues using a FinderTOP
<p>Imaging data supporting the paper: </p> <p>Precise targeting for 3D cryo-correlative light and electron microscopy volume imaging of tissues using a FinderTOP, containing raw and processed data from fluorescent and electron microscopy.</p> <p> </p>
Movie S6. Dynamics of the blood circulation in 54 hpf dock11-knockout zebrafish embryos
<p>Representative confocal time lapses of the trunk region of a 54 hours postfertilization (hpf) <em>dock11</em>‑knockout <em>fli1:GFP;gata1a:dsRed</em> double transgenic<em>. </em>Endothelial cells from the intersegmental vessels are visualized in green, while blood cells are shown in red.</p> <p>This movie corresponds to Movie S6 from Supplementary Appendix of Block et al., Systemic Inflammation and Normocytic Anemia in DOCK11 Deficiency. N Engl J Med 2023.</p>
Movie S4. Blood circulation in a 48 hpf dock11-knockout zebrafish embryo
<p>Representative time-lapse confocal microscopy movie showing the posterior region of a 48 hours postfertilization (hpf) <em>dock11</em>-knockout <em>fli1:GFP;gata1a:dsRed</em> double transgenic<em>. </em>Endothelial cells from the vasculature system are visualized in green, while blood cells are shown in red. White arrow points toward the accumulation of intravascular blood.</p> <p>This movie corresponds to Movie S4 from Supplementary Appendix of Block et al., Systemic Inflammation and Normocytic Anemia in DOCK11 Deficiency. N Engl J Med 2023.</p>
Movie S2. T-cell migration in a 5 dpf dock11-knockout zebrafish embryo
<p>Representative time-lapse confocal microscopy movie showing the migration of fluorescently labeled T cells in the region around the thymus (anterior region) in a 5 days postfertilization (dpf) <em>dock11</em>-knockout <em>lck:nlsmCherry </em>transgenic zebrafish embryo<em>. </em>Lines correspond to the trajectories of the movement over time of Lck-positive T‑cell progenitors.</p> <p>This movie corresponds to Movie S2 from Supplementary Appendix of Block et al., Systemic Inflammation and Normocytic Anemia in DOCK11 Deficiency. N Engl J Med 2023.</p>
Movie S3. Blood circulation in a 48 hpf control zebrafish embryo
<p>Representative time-lapse confocal microscopy movie showing the posterior region of a 48 hours postfertilization (hpf) control <em>fli1:GFP;gata1a:dsRed</em> double transgenic<em>. </em>Endothelial cells from the vasculature system are visualized in green, while blood cells are shown in red.</p> <p>This movie corresponds to Movie S3 from Supplementary Appendix of Block et al., Systemic Inflammation and Normocytic Anemia in DOCK11 Deficiency. N Engl J Med 2023.</p>
Movie S1. T cell migration in a 5 dpf control zebrafish embryo
<p>Representative time-lapse confocal microscopy movie showing the migration of fluorescently labeled T cells in the region around the thymus (anterior region) in a 5 days postfertilization (dpf) control <em>lck:nlsmCherry </em>transgenic zebrafish embryo<em>. </em>Lines correspond to the trajectories of the movement over time of Lck-positive T-cell progenitors.</p> <p>This movie corresponds to Movie S1 from Supplementary Appendix of Block et al., Systemic Inflammation and Normocytic Anemia in DOCK11 Deficiency. N Engl J Med 2023.</p>
Movie S5. Dynamics of the blood circulation in 54 hpf control zebrafish embryos
<p>Representative confocal time lapses of the trunk region of a 54 hours postfertilization (hpf) control <em>fli1:GFP;gata1a:dsRed</em> double transgenic<em>. </em>Endothelial cells from the intersegmental vessels are visualized in green, while blood cells are shown in red.</p> <p>This movie corresponds to Movie S5 from Supplementary Appendix of Block et al., Systemic Inflammation and Normocytic Anemia in DOCK11 Deficiency. N Engl J Med 2023.</p>
Supplementary Movies - Michail Chatzimanolakis PhD Thesis
<p>Supplementary movies:<br> <br> Cylinder-Re[X].mp4 : Vorticity field for impulsively started cylinder at Reynolds number X.</p> <p>Fish-[X]d-d[Y]-omega.mp4 : Vorticity field for X-dimensional (X=2,3) simulation of swimmers, where leaders are placed Y body lengths away from followers.<br> <br> Fish-2d-d[Y]-velocity.mp4 : Streamwise velocity field for two-dimensional simulation of swimmers, where leaders are placed Y body lengths away from followers.<br> <br> Fish-3d-phalanx-[X]-omega.mp4: vorticity field for X swimmers that swim in a phalanx formation.<br> <br> FishSchool-026-controlled.mp4: Vorticity field for school of 26 controlled swimmers.<br> FishSchool-100-controlled.mp4: Vorticity field for school of 100 controlled swimmers.<br> FishSchool-350-uncontrolled.mp4: : Vorticity field for school of 350 uncontrolled swimmers.<br> <br> RL_Cylinder_Re[X]_C[Y].mp4: Vorticity field for flow past a cylinder at Reynolds number X with maximum actuation velocity of Y times the cylinder velocity. Control with Reinforcement Learning starts at t=200.<br> <br> RL_Cylinder_Re[X]_C[Y]-reg.mp4: Vorticity field for flow past a cylinder at Reynolds number X with maximum actuation velocity of Y times the cylinder velocity. Control with Reinforcement Learning starts at t=200. A regularizer is used in the reward function here.</p>
Movies: CellSim3D simulation of epithelial growth with and without disorder (pinning)
<p>The movies show growing epithelial tissue starting from a line geometry for both weak and strong cell-cell adhesion. Cells are shown in blue and pinning centers, or disorder, when present in red. The pinning centers are stationary. The movies show the following cases:</p> <ul> <li>line_geometry_strong_cell_cell_adhesion_with_disorder.avi: Strong cell-cell adhesion with disorder present</li> <li>line_geometry_strong_cell_cell_adhesion_no_disorder.avi: Strong cell-cell adhesion, no disorder</li> <li>line_geometry_weak_cell_cell_adhesion_with_disorder.avi: Weak cell-cell adhesion with disorder present</li> <li>line_geometry_weak_cell_cell_adhesion_no_disorder.avi: : Weak cell-cell adhesion, no disorder</li> </ul> <p><strong>Notes:</strong></p> <ul> <li>The simulations were done with the CellSim3D GPU accelerated simulation code and model, link to the source code is below.</li> <li>Details of the CellSim3D model are provided as Supplementary Information in the two references below.</li> </ul> <p> </p> <p><strong>References:</strong></p> <ul> <li><em>Effect of substrate heterogeneity and topology on epithelial tissue growth dynamics.</em> Mazarei, Mahmood; Åström, Jan; Westerholm, Jan; <a href="https://www.researchgate.net/profile/Mikko-Karttunen-2">Karttunen, Mikko</a>. Submitted (2023). Preprint: <a href="https://arxiv.org/abs/2303.10850">https://arxiv.org/abs/2303.10850</a></li> <li><em>In Silico Testing of the Universality of Epithelial Tissue Growth.</em> Mazarei, Mahmood; Åström, Jan; Westerholm, Jan; <a href="https://www.researchgate.net/profile/Mikko-Karttunen-2">Karttunen, Mikko</a>. Phys. Rev. E 106, L062402, (2022). DOI link: <a href="https://doi.org/10.1103/PhysRevE.106.L062402">https://doi.org/10.1103/PhysRevE.106.L062402</a> Preprint: <a href="https://arxiv.org/abs/2203.15883">https://arxiv.org/abs/2203.15883</a></li> <li>Github: <a href="https://github.com/SoftSimu/CellSim3D">CellSim3D: GPU Accelerated 3D Cell Simulator</a></li> </ul> <p> </p>
movie
<p>Name files: <strong>Side_view_movie1 </strong>and<strong> Side_view_movie2</strong></p> <p> </p> <p>Side view of a drop of colloidal suspension drying on the top of a hydrophobic surface. The suspension is a suspension of Ludox silica SM-30 (f=31%). The sample is illuminated from behind. The video is divided in two parts. The relative humidity is XX% and the Péclet number is XX. The relative humidity is 20% and the Péclet number is 57.</p> <p>The scale bar is 1 mm = 384 px</p> <p>Acquisition rate: 1 image each 1 s (1 fps)</p> <p>total duration 15 min (each) </p> <p>Name files: <strong>Top_view_movie.avi</strong></p> <p>Top view of a drop of colloidal suspension drying on the top of a hydrophobic surface. The suspension is a suspension of Ludox silica SM-30 (f=31%). The sample is being illuminated from underneath. The relative humidity is 20% and the Péclet number is 57.</p> <p>The scale bar is 1 mm = 42 px</p> <p>Acquisition rate: 1 image each 10 s (0.1 fps)</p> <p>How long does each movie last in real time?</p> <p> </p> <p>total duration 1h</p>
ChatSubs: A dataset of movie dialogues in Spanish, Catalan, Basque and Galician
<p><strong>Description</strong>: The ChatSubs dataset contains dialogues in Spanish and three co-official languages of Spain (Catalan, Basque, and Galician). It was obtained from OpenSubtitles and processed to generate clearly segmented dialogues and turns. The dataset consists of 206,706 JSON files, with over 20 million dialogues and 96 million turns, making it one of the largest dialogue corpora available. It serves as an excellent resource for research teams interested in training dialogue models in Spanish, Catalan, Basque, and Galician.</p> <p><strong>License</strong>: <a href="https://creativecommons.org/licenses/by-nc/4.0/">CC BY-NC 4.0</a>.</p>
Movies and Ratings
<p>Transformed, cleaned dataset with reduced number of columns for all 45,000 movies listed in the full MovieLens dataset of movies released in July 2017 or earlier. Data points include movie ID, title, budget, languages, and genres. This dataset also includes 26 million ratings from 270,000 users for all 45,000 movies. Ratings are given on a scale of 1 to 5 and include user ID, movie ID, rating, and timestamp.</p> <p>This dataset consists of the following files:</p> <p>* movies.csv: The main movie metadata file. Contains information on 45,000 movies included in the full MovieLens dataset.</p> <p>* ratings.csv: The full MovieLens dataset with 26 million ratings and 750,000 tag applications from 270,000 users on all 45,000 movies in this dataset.</p> <p>This dataset is a further development of the following public domain dataset published on Kaggle:</p> <p>https://www.kaggle.com/datasets/rounakbanik/the-movies-dataset</p> <p>This data was obtained from the official GroupLens website. The data was originally obtained from The Movies DataBase (TMDB) via the TMDB AP</p>
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.