Title :
T2 prime mapping from highly undersampled data using compressed sensing with patch based low rank penalty
Author :
Dongwook Lee ; Eung Yeop Kim ; Huisu Yoon ; Sunghong Park ; Jong Chul Ye
Author_Institution :
Dept. of Bio & Brain Eng., KAIST, Daejeon, South Korea
fDate :
April 29 2014-May 2 2014
Abstract :
In magnetic resonance (MR) imaging, T2 and T2 star (T2*) relaxation times represent tissue properties, which can be quantified by specific imaging sequences. Especially, T2 prime (T2´) that can be derived from T2 and T2* are clinically valuable for delineation of areas with increased oxygen extraction fraction in acute stroke. However, there are limitations in this method because it requires acquisition of many images for the generation of T2 and T2* relaxation time maps. In particular, time saving is the most important factor in acquisition of MRI in acute ischemic stroke because therapy should be given to patients as soon as possible. Therefore, to reduce the acquisition time of MR data, we use a compressed sensing algorithm using patch based low rank penalty for the reconstruction of T2 and T2* weighted images to obtain the T2 prime map. Our results showed that significant acceleration in T2´ image acquisition is possible using the proposed method.
Keywords :
biomedical MRI; data acquisition; diseases; image reconstruction; image sequences; magnetic relaxation; medical image processing; MR data acquisition time; T2 prime image acquisition; T2 prime mapping; T2 relaxation time map generation; T2 relaxation times; T2 star relaxation time map generation; T2 star relaxation times; T2 star weighted image reconstruction; T2 weighted image reconstruction; acute ischemic stroke; compressed sensing algorithm; magnetic resonance imaging; oxygen extraction fraction; patch based low rank penalty; specific imaging sequences; tissue properties; Acceleration; Biomedical imaging; Heuristic algorithms; Image reconstruction; Magnetic resonance imaging; Transforms; T2´; acute stroke; compressive sensing; dynamic MRI; k-t FOCUSS; low rank; patch;
Conference_Titel :
Biomedical Imaging (ISBI), 2014 IEEE 11th International Symposium on
Conference_Location :
Beijing
DOI :
10.1109/ISBI.2014.6867953