DocumentCode
2518938
Title
DIRECT RECONSTRUCTION OF SPIRAL MRI USING LEAST SQUARES QUANTIZATION TABLE
Author
Liang, Dong ; Lam, Edmund Y. ; Fung, George S K
Author_Institution
Dept. of Electr. & Electron. Eng., Hong Kong Univ.
fYear
2007
fDate
12-15 April 2007
Firstpage
105
Lastpage
108
Abstract
The least squares quantization table (LSQT) method is proposed to accelerate the direct Fourier transform for reconstructing images from nonuniformly sampled data, similar to the look-up table (LUT) and equal-phase-line (EPL) methods published recently. First, it classifies all the image pixels into several groups using the Lloyd-Max quantization scheme, and stores the representative value of each group in a small-size LSQT in advance. For each k-space data, the contribution is calculated only once for each group. Then, each image pixel is mapped into the nearest group and uses its representative value. The experiments show that the LSQT method requires far smaller memory size than the LUT method. Moreover, it is superior to the EPL and Kaiser-Bessel gridding methods in minimizing reconstruction error and requires fewer complex multiplications than the LUT and EPL methods. Additionally, the inherent parallel structure makes the LSQT method easily adaptable to a multiprocessor system
Keywords
biomedical MRI; image reconstruction; least squares approximations; medical image processing; Kaiser-Bessel gridding methods; Lloyd-Max quantization scheme; direct Fourier transform; equal-phase-line methods; image reconstruction; least squares quantization table; spiral MRI; Acceleration; Fourier transforms; Image reconstruction; Least squares methods; Magnetic resonance imaging; Page description languages; Pixel; Quantization; Spirals; Table lookup;
fLanguage
English
Publisher
ieee
Conference_Titel
Biomedical Imaging: From Nano to Macro, 2007. ISBI 2007. 4th IEEE International Symposium on
Conference_Location
Arlington, VA
Print_ISBN
1-4244-0672-2
Electronic_ISBN
1-4244-0672-2
Type
conf
DOI
10.1109/ISBI.2007.356799
Filename
4193233
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