Skip to content
JournalsWorldThe Global Research Discovery Platform
Featured Dataset

Dataset: A scalable method to improve gray matter segmentation at ultra high field MRI.

Dataset description: Accompanying data for manuscript “A scalable method to improve gray matter segmentation at ultra high field MRI” written by Omer Faruk Gulban, Marian Schneider, Ingo Marquardt,

👤
CreatorOmer Faruk Gulban
📅
Published2018-03-23
🔗
DOI10.5281/zenodo.1206163
📊
Downloads646
⚖️
Licensecc-by-4.0
File Size1.2 GB
Data TypeDataset
Published2018
Licensecc-by-4.0
Total Views2,628
Total Downloads646

Dataset description: Accompanying data for manuscript “A scalable method to improve gray matter segmentation at ultra high field MRI” written by Omer Faruk Gulban, Marian Schneider, Ingo Marquardt, Roy Haast, Federico De Martino.

Published in PLOS One, June  6, 2018.

The dataset consist of 7 Tesla MRI anatomical images of living human brains (whole brain; 0.7mm isotropic resolution; T1 weighted, T2* weighted, proton density weighted MPRAGE images; inversion 1, inversion 2, T1, uni, MP2RAGE images; Multi-echo 3D GRE) and hand labeled cortical gray matter images (for further details see section 4.1 of our manuscript).

Folder structure is organized according to Brain Imaging Data Structure (BIDS). Further details can be found the README files.

Citation

Please cite the following paper together with this dataset doi:

  • Gulban, O. F., Schneider, M., Marquardt, I., Haast, R. A. M., & De Martino, F. (2018). A scalable method to improve gray matter segmentation at ultra high field MRI. PLOS ONE, 13(6), e0198335. http://doi.org/10.1371/journal.pone.0198335

Bibtex format:

“`

“`

📤 Share this page

Found this useful? Share it with your network.

✓ Link copied! Paste it on ResearchGate / Academia.edu
📦
Dataset: A scalable method to improve gray matter… (Full Dataset)1.2 GB
⬇
📄
ReadmeVia DOI record
↗

Files are hosted on the source repository. Click download to access the full dataset.

Omer Faruk Gulban (2018). Dataset: A scalable method to improve gray matter segmentation at ultra high field MRI.. https://doi.org/10.5281/zenodo.1206163