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RANJAN_readme20230525.txt

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This AUTHORLAST_readmeYYYYMMDD.txt file was generated on YYYYMMDD by [First and Last Name] ------------------- GENERAL INFORMATION ------------------- 1. Title of Dataset  Prediction of Atypical Left atrial flutter 2. Author Information   Principal Investigator Contact Information         Name: Ravi Ranjan            Institution: University of Utah            Address:95 S 2000 E, Salt Lake City, UT 84112-5000            Email:ravi.ranjan@hsc.utah.edu   Associate or Co-investigator Contact Information         Name: Matthias Lange            Institution:University of Utah            Address:95 S 2000 E, Salt Lake City, UT 84112-5000            Email: Matthias.Lange@utah.edu   Alternate Contact Information            Name:            Institution:            Address:            Email: 3. Date of data collection (single date, range, approximate date) 2020 - 2022 4. Geographic location of data collection (where was data collected?):  Salt Lake City Utah 5. Information about funding sources that supported the collection of the data: This work was funded by the AHA through the Award 19IPLOI34760516 and the postdoctoral fellowship 903102  -------------------------- SHARING/ACCESS INFORMATION --------------------------  1. Licenses/restrictions placed on the data:CC BY – Allows others to use and share your data, even commercially, with attribution. 2. Links to publications that cite or use the data: https://www.frontiersin.org/articles/10.3389/fcvm.2022.893752/full 3. Links to other publicly accessible locations of the data: https://toi.lib.utah.edu/resolve/10.7278/S50d-fdna-tekm  4. Links/relationships to ancillary data sets: NA 5. Was data derived from another source?   NO 6. Recommended citation for the data: --------------------- DATA & FILE OVERVIEW --------------------- 1. File List    A. Filename: *readme*       Short description: This file             B. Folder: case*       Short description:         folder containing all files for one case. Files contained are the  geometry (.vtk) and pacing site (*.vtx). See DATA-SPECIFIC INFORMATION for details 2. Relationship between files:         the vtx files assume mesh ordering as given in the vtk. 3. Additional related data collected that was not included in the current data package: none 4. Are there multiple versions of the dataset? yes/no    No -------------------------- METHODOLOGICAL INFORMATION -------------------------- 1. Description of methods used for collection/generation of data:  Standard clinical MRA and LGE-MRI where obtained. 2. Methods for processing the data: MRI was segmented and converted into a surface mesh. The surface mesh was converted into a volume mesh 3. Instrument- or software-specific information needed to interpret the data: Paraview, Meshalizer,OpenCARP 4. Standards and calibration information, if appropriate: NA 5. Environmental/experimental conditions: NA 6. Describe any quality-assurance procedures performed on the data: Egde length of mesh where optimised to be between 600mu meter and 1200 mu meter 7. People involved with sample collection, processing, analysis and/or submission: Ravi Ranjan T. Jared Bunch Matthias Lange  Eugene Kwan Rob S. MacLeod Derek J. Dosdall ----------------------------------------- DATA-SPECIFIC INFORMATION FOR: .VTK -----------------------------------------  Mesh files used for the simulation in VTK format. The format is described at  https://kitware.github.io/vtk-examples/site/VTKFileFormats/ 1. Variable List     A. Name:  flags         Description:         0: Healthy Tissue        1: Fibrotic tissue 2: Scar tissue     B. Name: fiber        Description: myocardial fiber direction ----------------------------------------- DATA-SPECIFIC INFORMATION FOR: .vtx -----------------------------------------  Stimulation location files. The first line give the number of node points for stimulation. Secondline, opencarp specific. All following lines, are the node ids at which the current is injected. ----------------------------------------- DATA-SPECIFIC INFORMATION FOR: .xdmf .hd5 -----------------------------------------  Simulation results 1. Variable List     A. Name:  phi         Description:         Transmembrane potential at given time point
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2023-06-30
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