DocumentCode :
1721262
Title :
A Multistage Parallel Magnetic Resonance Image Reconstruction Method
Author :
Chen, Zhaolin ; Johnston, Leigh ; Faggian, Nathan ; Kean, Mike ; Zhang, Jingxin ; Egan, Gary
fYear :
2008
Firstpage :
327
Lastpage :
334
Abstract :
The length of scan time is a critical issue in Magnetic Resonance Imaging(MRI). Parallel MRI techniques have recently been introduced to shorten the scanning time by using multiple receiver coils to acquire the MR signal. As a result, the imaging process is accelerated several times compared to conventional non-accelerated MRI. In this paper, we provide a new reconstruction method for parallel MRI that improves the resultant image quality. Our algorithm involves the combination of two popular and commercially utilised parallel MRI reconstruction techniques, SENSE and GRAPPA. These two methods are complementary to each other, and are traditionally implemented in different imaging conditions. Our proposed method, called the SG reconstruction method, takes advantage of the distinct merits of both SENSE and GRAPPA to improve the image reconstruction quality. We demonstrate the superiority of the SG algorithm through comparison to SENSE and GRAPPA applied to high-field, experimental MRI data.
Keywords :
biomedical MRI; calibration; image reconstruction; medical image processing; parallel processing; MR signal; generalized auto-calibrating partially parallel acquisition; image quality; magnetic resonance imaging; multiple receiver coil; multistage parallel MRI reconstruction method; sensitivity encoding; Acceleration; Coils; Fourier transforms; High-resolution imaging; Image quality; Image reconstruction; Linear systems; Magnetic resonance; Magnetic resonance imaging; Reconstruction algorithms; GRAPPA; MR image reconstruction; SENSE; SG; parallel MRI;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Digital Image Computing: Techniques and Applications (DICTA), 2008
Conference_Location :
Canberra, ACT
Print_ISBN :
978-0-7695-3456-5
Type :
conf
DOI :
10.1109/DICTA.2008.53
Filename :
4700039
Link To Document :
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