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19 results for “Video Clips”
Datasets, codes and video clips for the laboratory flume tests of granular flow
<p>Datasets, video clips, and codes related to the paper 'Insight into granular flow dynamics relying on basal stress measurements: from experimental flume tests', submitted to the Journal of Geophysical Research: Solid Earth.</p> <p>The datasets provides the raw and processed data for the laboratory flume tests of granular flow including parameters reflecting the granular flow behavior, basal normal stresses measured by a force plate, and deposit parameters of the granular flows.</p> <p><strong>S1_data_granular flow_velocity</strong> provides data of the velocity profiles with a 0.1 second time interval, the depth-averaged velocities, the depth-averaged shear rates, and the solid inertial stresses of the granular flows under different experimental conditions. The original data were calculated through particle image velocimetry (PIV) method. The images for PIV analysis were recorded by a high-speed camera.</p> <p><strong>S2_data_granular flow_stress</strong> provides the raw data of the measured basal normal stresses of the granular flows for all tests. The mean and fluctuating stress components extracted by applying a moving window average filter are also listed in the Table.</p> <p><strong>S3_data_granular flow_flow depth</strong> provides the data of the granular flow depth extracted every 0,02 s through a image processing method based on the high-speed photographs. </p> <p><strong>S4_data_granular flow_deposit</strong> provides the parameters of the granular flow deposits for all tests including the apparent friction coefficient and equivalent friction coefficient. The deposit parameters were calculated based on the digital surface model (DSM) of deposit, which were obtained through a oblique photogrammetry method.</p> <p><strong>S5_data_granular flow_density</strong> gives the data of the dynamic bulk flow densities of the granular flows under all experimental conditions. The dynamic bulk densities were calculated according to the measured and calculated normal stresses.</p> <p>The videos of the granular flows under different experimental conditions during their propagation are provided in <strong>'S6_video_granular flow.zip'</strong> to show the granular flow behavior and its evolution. <strong>S6_video_granular flow</strong> includes the side-view of the granular flows under all experimental conditions and front-view of the IMF-223 granular flow . </p> <p><strong>S7_codes_data analysis</strong> provides the computer codes for the extraction of mean and fluctuating components and the calculation of granular flow depth. The former includes one file for conducting moving average filter. The latter contains four files, which are used for median filter, image erosion, threshold segmentation and floodfill, extracting flow depth. </p>
TEAMx-PC22 (TEAMx pre-campaign 2022) – video clip
<p><strong>ABSTRACT</strong></p> <p>This video clip gives a brief overview of the measurement activities during the TEAMx pre-campaign in summer 2022 (TEAMx-PC22). Although it shows some of the main measurement locations and instruments in the lower Inn Valley (Austria), it is far from being complete. Unfortunately, there are no impressions of the measurements conducted in the exit region of the Inn Valley, near Innsbruck, or at other sites in the Alps. More information on TEAMx (Multi-scale transport and exchange processes in the atmosphere over mountains – programme and experiment) including the upcoming main campaign (TEAMx Observational Campaign TOC) can be found here: <a href="http://www.teamx-programme.org/">http://www.teamx-programme.org/</a></p> <p><strong>DATA SET DESCRIPTION</strong></p> <p>The video is provided in two different resolutions and thus two different file sizes (highres=934 MB and lowres=239 MB). The video was assembled from multiple clips recorded with a DJI Mini 2 drone using the online video editor FlexClip.</p>
NEWBITS – Project video clip
<p>Animated explanatory video clip describing the NEWBITS project, its objectives and expected impacts.</p>
Slow motion in films and video clips: Music influences perceived duration and emotion, autonomic physiological activation and pupillary responses [data set]
<p>Data set for a study to be published by PLOS ONE.</p>
Sol-Rec 2 Video Clip presentation
<p>For popularization and dissemination purposes this video clip summarises the Sol-Rec 2 project objectives for general audience</p>
Video clips related to the paper "Humanoid facial expressions as a tool to study human behavior
<p>During the experiment, participants observed video-clips of the iCub robot performing a gentle or rude arm movement (giving request) with a happy or angry facial expressions.</p>
Sync and Render Video and Audio Clips in a Non-Linear Video Editor
<p>In this instructional video, one can learn how to use a non-linear video editor (in this case, Adobe Premiere CC) to synchronise multi-cam (2D and 360-degree) and multi-mic footage recorded simultaneously in a single event and render each track with the same IN and OUT points. The motivation for doing this is to make sure the all the recordings of an event will play synchronously in the relevant qualitative research software, such as <em>DOTE</em> (Distributed Open Transcription Environment) and <em>AVA360VR</em> (Annotate, Visualise, Analyse 360 video on VR).</p>
Automated Selection and Ordering Video Clip based on Tonal Tension and Frame Features
<p>Dataset, videos, and code of article submitted to EvoMUSART 2025.</p>
Data from: Ready to detect a reversal of time's arrow: a psychophysical study using short video clips in daily scenes
<p><span>It is generally believed that time flows in one direction and that a reversal of time's arrow would render the external world nonsensical. We </span><span>evaluated</span><span> our ability to tell the direction of time's arrow in a wide range of dynamic scenes in our daily life by presenting 360 video clips in the correct or incorrect direction</span><span>. </span><span>Participants, who judged the direction in a speeded manner, erred in 39% of trials when a video was played in reverse</span><span>,</span><span> but in </span><span>only </span><span>9% when it was played normally. Due to the bias favouring the "forward" judgement, reaction was generally faster for the forward response. However, </span><span>the</span><span> reaction became paradoxically faster and more synchronous for the detection of reversal in some critical occasions such as forward motion</span><span>, </span><span>free fall, diffusion, division, and addition of materials by hand. Another experiment with a fraction of the video clips revealed that reversal replay of these videos provided instantaneous evidence strong enough to overtake the forward judgment bias. We suggest that our brain is equipped with a system that predicts how the external organisms behave or move in these critical occasions and that the prediction error of the system contributes to the fast "reversal" detection. </span></p>
Can Video Clips Improve Patient Comprehension at the Emergency Department?
ClinicalTrials.gov study NCT03734406. IPD Sharing: UNDECIDED. Countries: 1. Publications: 1.
Anal Fistulae Internal Opening Closure by OTSC Clip After Video Assisted Tract Fulguration
ClinicalTrials.gov study NCT06243302. IPD Sharing: YES. Countries: 1. Publications: 1.
Data from: Ready to detect a reversal of time’s arrow: a psychophysical study using short video clips in daily scenes
Open the record for dataset details and reuse information.
Composite 2D video clip of first public demonstration of an early AVA360VR prototype
<p>In this 2D video clip, which is a composite of four videos, we see an extract from the first live public demonstration of an early <em>AVA360VR </em>prototype to a workshop group at the <em>Big Video Sprint</em> conference in November 2017. The demonstration shows two analysts working on recorded camerawork training session video data, simulating collaboration at a distance. Other video inserts show the audience or the analyst from another camera angle.</p> <p><em>AVA360VR </em>(Annotate, Visualise, Analyse 360° video in VR) is a VR software tool developed by the BigSoftVideo team at Aalborg University. The aim is to support ‘inhabiting’ 360-degree video data – that is, to explore complex spatial video and audio recordings of a scene in which social interaction took place through a tangible interface in virtual reality.</p>
360-degree video clip of static panoramic screenshots of the AVA360VR interface that enables an analyst to inhabit video data
<p>This equirectangular 360° video clip comprises a sequence of static panoramic screenshots of the AVA360VR interface that enables an analyst to inhabit the video recorded in a camerawork training session. The screenshots are high-resolution image captures of the complete field of view triggered live by the user inside the head-mounted display from whatever position they desire (and stored to disk). The screenshot image function and the live screen capture video function allow others not in virtual reality to view the results of the use of the AVA360VR tool at a later date.</p> <p><em>AVA360VR </em>(Annotate, Visualise, Analyse 360° video in VR) is a VR software tool developed by the BigSoftVideo team at Aalborg University. The aim is to support ‘inhabiting’ 360-degree video data – that is, to explore complex spatial video and audio recordings of a scene in which social interaction took place through a tangible interface in virtual reality.</p> <p>To play the video and spatial sound correctly, use a digital video player that can play equirectangular videos with the YouTube ambiX First Order Ambisonic audio format, eg. VLC or PotPlayer. Please wear headphones.</p> <p>At the end of the clip is a short demonstration of ambisonic spatial audio.</p>
Supplementary file 3; A video clip, recorded on an iPhone, showing the male lion Shanto in the enclosure, after just being released from the indoor enclosure exhibiting territorial vocalizations
Open the record for dataset details and reuse information.
Automated Selection and Ordering of Clip Sequences for Music Videos based on Tonal Tension and Visual Features
<p>Dataset, Videos, and Code of the article sent to EvoMusart2025 entitled "Automated Selection and Ordering of Clip Sequences for Music Videos based on Tonal Tension and Visual Features".</p>
SASPAM-SA SECOND YEAR COMMEMORATIVE VIDEO CLIP
<p>SASPAM-SA SECOND_YEAR_COMMEMORATIVE_VIDEO_CLIP</p>
Efficacy of AI EF Screening by Using Smartphone Application Recorded PLAX View Cardiac Ultrasound Video Clips
ClinicalTrials.gov study NCT06330103. IPD Sharing: YES. Countries: 1. Publications: 0.
VIdeo Clips for Diagnostic Evaluation of Obstructive Sleep Apnea in Children
ClinicalTrials.gov study NCT06801366. IPD Sharing: Not stated. Countries: 1. Publications: 0.
ScienceDex guides
Understand access before you commit
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.