Title
Robust myelin quantitative imaging from multi-echo T2 MRI using edge preserving spatial priors.
Abstract
Demyelinating diseases such as multiple sclerosis cause changes in the brain white matter microstructure. Multi-exponential T2 relaxometry is a powerful technology for detecting these changes by generating a myelin water fraction (MWF) map. However, conventional approaches are subject to noise and spatial in-consistence. We proposed a novel approach by imposing spatial consistency and smoothness constraints. We first introduce a two-Gaussian model to approximate the T2 distribution. Then an expectation-maximization framework is introduced with an edge-preserving prior incorporated. Three-dimensional multi-echo MRI data sets were collected from three patients and three healthy volunteers. MWF maps ob-tained using the conventional, Spatially Regularized Non-negative Least Squares (srNNLS) algorithm as well as the proposed algorithm are compared. The proposed method provides MWF maps with improved depiction of brain structures and significantly lower coefficients of variance in various brain regions.
Year
DOI
Venue
2013
10.1007/978-3-642-40811-3_78
Lecture Notes in Computer Science
Keywords
Field
DocType
T2 relaxometry,myelin water fraction,edge-preserving priors
Least squares,Data set,Pattern recognition,Computer science,Quantitative imaging,Artificial intelligence,Smoothness,Prior probability,Relaxometry,Spatial consistency,Myelin
Conference
Volume
Issue
ISSN
8149
Pt 1
0302-9743
Citations 
PageRank 
References 
0
0.34
1
Authors
4
Name
Order
Citations
PageRank
Xiaobo Shen102.03
Thanh D. Nguyen2259.69
Susan A Gauthier301.01
Ashish Raj416117.45