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31 results for “synchronisation”
FAIR-IMPACT Synchronisation Force: preliminary data gathered from projects and intiatives
<p>Between the 21st and 24th of November 2022 more than 120 representatives of projects and initiatives funded and/or supported by the European Commission H2020 and Horizon Europe programmes and operating in the EOSC framework joined the FAIR-IMPACT Synchronisation Force collaborative sessions to assess the implementation of the FAIR principles across research projects and initiatives in the EOSC framework.</p> <p>The team focussed on work related to FAIR-IMPACT focus areas, namely Metrics and assessing FAIRness (session 1), Persistent Identifiers (Session 2), Trustworthy and FAIR-enabling repositories (Session 3) and Metadata, semantics and interoperability (Session 4).</p> <p>In order to ensure an interactive meeting, participants were asked to complete a preliminary survey according to the sessions that they would join and complete 4 questions. The inputs received constituted the starting point for the discussions during the Synchronisation Force Workshop and are collected here as pdf files.</p> <p> </p>
Data from: Climate synchronises shrub growth across a high-arctic archipelago: contrasting implications of summer and winter warming
<p>Climate change is most pronounced at high latitudes, where plant and animal populations are often strongly influenced by environmental fluctuations related to climate and weather. Environmental conditions can co-fluctuate over large distances and thereby synchronise primary production in space. However, large-scale studies of such spatiotemporal patterns remain rare in the Arctic, where short time-series and poor spatial replication have characterised the data available on both biotic and abiotic parameters. Here, we use dendrochronological tools to measure ring growth of a dominant dwarf shrub, the polar willow (<i>Salix polaris</i> Wahlenb.), previously found to reliably trace community-level vascular plant biomass production. We investigated climate drivers of vegetation growth and their role in the synchronisation of primary production across the rapidly warming archipelago of Svalbard (n = 8 sites, composed of 17 sub-sites, 0.06-293 km apart). We found contrasting effects of summer versus winter weather on ring growth and its spatial synchrony. Although an overall positive effect of summer temperature caused spatially synchronous growth, negative impacts of winter rain-on-snow events occurred only locally, potentially counteracting such synchrony. However, the anticipated increase in both summer temperature and spatial extent of rain-on-snow events, causing basal ice encapsulation of the vegetation, could change the relative importance of seasons for spatiotemporal dynamics of shrub growth. Because these shrub ring growth chronologies reflect annual fluctuations in total vascular plant biomass, fuelling the bottom-up controlled food-web, these results have large implications for our understanding of how climate change shapes tundra ecosystem productivity in time and space.</p>
FAIR-IMPACT Synchronisation Force 2023 edition: preliminary data gathered from projects and intiatives
<p>Building on the successful Synchronisation Force <a href="https://fair-impact.eu/events/synchronisation-force-events/synchronisation-force-1st-workshop-november-2022">workshop 2022</a>, the 2023 edition of the Synchronisation Force workshop aimed to discuss common challenges and priorities related to turning the FAIR principles into practice. The workshop took place as a series of seven virtual sessions between 2 November 2023 and 8 February 2024, with the five core sessions between 27 November and 7 December 2023.</p> <p>Invited to this workshop were selected, key FAIR representatives of projects and initiatives in the EOSC framework.</p> <p>In this record we saved the preliminary information gathered from the workshop participants collected via a survey. The information were used as preliminary discussion points for each of the five sessions organised, and were considered useful top ensure an interactive discussion.</p>
Data set for the article "Self-oscillation and Synchronisation Transitions in Elasto-Active Structures"
<p>This is the data set for the article "Self-oscillation and Synchronisation Transitions in Elasto-Active Structures", </p> <table summary="Additional metadata"> <tbody> <tr> <td><a href="https://doi.org/10.48550/arXiv.2106.05721">https://doi.org/10.48550/arXiv.2106.05721</a> <p> </p> </td> </tr> </tbody> </table> <p>Is contains raw images and processed data from images used to describe the self-oscillations under study in this article.</p> <p>All zip files corresponds to the single chain experiment except "Double_chain_Experiment.zip".</p> <p> </p>
Broadcast of the BioReCer project in a Spanish radio show (synchronised version)
<p>In a 20 min talk show format organised by EURADIA/BETANIA, Cetaqua, Anfaco and Unitelma explained BioReCer (https://biorecer.eu/) to the general public. The broadcast took place at https://radioecogestiona.com/</p> <p>CETAQUA explained what the project consists of and its advantages.<br>ANFACO commented on the case studies they are working on.<br>UNITELMA explained the importance of stakeholders in the project and how to be part of it.</p> <p>BioReCer (Biological Resources Certifications Schemes) aims at assessing and complementing current certification schemes for biological resources according to the new EU sustainability goals to enhance bio-based circular systems.</p> <p>This will be achieved by including new criteria that align with EU taxonomy and EU corporate due diligence regulations into guidelines for certifying biological resources’ sustainability, origin, tracking and traceability (T&T), and by ensuring applicability at EU and global scale.</p> <p>By promoting the sustainability and trade of biological resources, BioReCer will increase the added value, use, as well as social acceptance of bio-based products.</p> <p><em>Funded by the European Union. Views and opinions expressed are however those of the author(s) only and do not necessarily reflect those of the European Union or European Research Executive Agency. Neither the European Union nor the granting authority can be held responsible for them.</em></p>
Exploratory Study Assessing Synchronisation of Egg Sacs With Degarelix
ClinicalTrials.gov study NCT00434122. IPD Sharing: Not stated. Countries: 3. Publications: 1.
Data from: Chilling induces prompt and synchronised hatching after obligatory diapause in the subtropical cricket <em>Cardiodactylus guttulus</em>
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When does weather synchronise life history traits? Spatiotemporal patterns in juvenile body mass of two ungulates
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Data from: Climate synchronises shrub growth across a high-arctic archipelago: contrasting implications of summer and winter warming
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Data from: Synchronising anti-predator behaviour in the red flour beetle Tribolium castaneum
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Video for: The role of hydrodynamic forces in synchronisation and alignment of mammalian motile cilia
<p>Here you can find all the videos of the PhD thesis: </p> <p>The role of hydrodynamic forces in synchronisation and alignment of mammalian motile cilia.</p> <p>by Nicola Pellicciotta</p> <p>Video1: This example shows a movie of a single cell, being subjected to an external oscillatory flow. Images were acquired at 500\,fps using a 60X objective, then analysed using background subtraction and spatial median filter of 3x3 pixels. Chapter 3</p> <p>Video 2: we show the entrainment of a group of cells with very strong oscillatory external flow $v_\mathrm{EX}= 2$\,mm/s at $f_\mathrm{EX}=12$\,Hz. This s flow induced entrainment and also alignment of beating direction of some cells that were beating misaligned to the external flow. The original direction of beating was recovered after the flow stopped. Chapter 3</p> <p>Video3 and Video4: we depolymerised cell actin by adding 2uM Cytochalasin-D in the cell culture medium for 48hr. After imaging, cells (control and dug treated) were stained in 4\% PFA for 10 minutes, permeabilised with Triton x-100 0.1\% in PBS, and incubated for 1 hour with Nucblue R37605 (1 drop for mL of PBS) and with phalloidin for actin (Sir-Actin, 0.2 uM) following proprietary protocols. Z-stack were taken with confocal microscope (slices of distance of 0.15um each) and can be found at the following links: DMSO treated cells (control) Video 3, and Cytochalasin-D treated, Video 4. Chapter 3</p> <p>Video5: The maximal beating amplitude for a cilium within each cell was measured by inspecting the recordings from top view and marking two extreme points at the power and recovery stroke. Chapter 3</p> <p>Video6: Experimental procedure and the image analysis methods for Chapter 4. Continuous fluid flow is applied for three days on cells cultured in Transwell-chips. The chips are then removed from the flow and cilia motility is imaged with the microscope. From high speed Bright Field movies we identify ciliary beating frequency and cell position, while from tracer particles we measure ciliary beating direction. </p> <p>Video7: Video of Propelled particles in a culture at 29 DIV and treated with shear stress τ ≈0.8 dyne/cm2. Chapter 4</p> <p> </p>
Dataset for: Motile cilia hydrodynamics: Entrainment versus synchronisation when coupling through flow
<p>This archive contains the dataset for the article "Motile cilia hydrodynamics: Entrainment versus synchronisation when coupling through flow".</p> <p>We gathered videos of cilia dynamics from different sources. For each animal/microorganism we upload the videos in different formats depending on the source:</p> <p>- .tiffs usually in a directory, it is composed by a series of images</p> <p>- .movie a format that we use in our lab and that it is combatible with our software in Matlab to tack cilium waveform</p> <p>- .avi </p> <p>For each video we also have the results from the tracking with our software. The resuts from a single video are all in a Matlab variable that has the same name but with the extension .clclk_force</p> <p>for example for the video "filename", the results are in "filename.clclk_force".<br> In Matlab these can be loaded as force = load('filename.clclk_force','-mat');<br> For all the videos these can be directly be found in the directory cilium waveforms force files.</p>
Dataset for the paper "Time-Resolved Product Observation for CO2 Electroreduction Using Synchronised Electrochemistry-Mass Spectrometry with Soft Ionisation (sEC-MS-SI)", DOI:10.1002/anie.202312607
<p>The data in this spreadsheet was used to produce the figures in the paper</p> <p>Authors:Guohui Zhang, Anthony Kucernak </p> <p>Title:Time-Resolved Product Observation for CO2 Electroreduction Using Synchronised Electrochemistry-Mass Spectrometry with Soft Ionisation (sEC-MS-SI)</p> <p>Journal:Angew. Chem. Int. Ed.</p> <p>DOI:10.1002/anie.202312607</p> <p>Please cite the above reference if you wish to use this data</p> <p>DOI of data:10.5281/zenodo.8415115</p>
Patient-ventilator Synchronisation Study for Intensive Care Unit Patients
ClinicalTrials.gov study NCT03787173. IPD Sharing: NO. Countries: 1. Publications: 5.
Re-evaluation of Optimal Re-synchronisation Therapy in Patients With Chronic Heart Failure
ClinicalTrials.gov study NCT03494933. IPD Sharing: NO. Countries: 1. Publications: 1.
Data from: Synchronised nesting aggregations are associated with enhanced capacity for extended embryonic arrest in olive ridley sea turtles
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Data from: Quantifying team cooperation through intrinsic multi-scale measures: respiratory and cardiac synchronisation in choir singers and surgical teams
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Data from: Random noise can help to improve synchronisation of excimer laser pulses
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Expression data of synchronised primary human fibroblasts (NHDF, Data Set 3)
GEO Series GSE104618. Homo sapiens. 23 samples. Type: Expression profiling by array.
Expression data of synchronised mouse embryonic fibroblasts (MEF)
GEO Series GSE104615. Mus musculus. 24 samples. Type: Expression profiling by array.
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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