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一种基于全局最小乘方法的磁共振波谱目标 频率选择的量化方法
引用本文:曾卫明,梁晓云,罗立民,方志军,王正友,伍世虔.一种基于全局最小乘方法的磁共振波谱目标 频率选择的量化方法[J].电子学报,2005,33(7):1209-1212.
作者姓名:曾卫明  梁晓云  罗立民  方志军  王正友  伍世虔
作者单位:1. 江西财经大学计算机应用系,江西南昌 330013;2. 东南大学影像科技实验室,江苏南京 210096
基金项目:国家重点基础研究发展计划(973计划),江西财经大学校科研和教改项目
摘    要:磁共振波谱中,感兴趣成分的单独量化不但符合许多实际应用的要求,而且同时也提高了量化的速度和精度.为此本文提出了一种基于频率选择的波谱信号量化方法,该方法通过全局最小乘方法来估计波谱信号的非线性参数,又结合前向和后向的APES方法来估计其线性参数.文中的模拟和活体数据实现表明,本文方法在计算速度和参数估计的稳健性上要明显优于经典的HSVD和HTLS方法,同时其综合性能比Stoica等提出的频率选择方法SELF-SVD还好.

关 键 词:全局最小乘方  磁共振波谱  频率选择方法  量化  
文章编号:0372-2112(2005)07-1209-04
收稿时间:2004-05-27
修稿时间:2004-05-272005-03-16

One Quantitative Method Based on Total Least Squares for Frequency-Selective Magnetic Resonance Spectroscopy
Zeng Wei-ming,LIANG Xiao-Yun,Luo Li-min,FANG Zhi-jun,WANG Zheng-you,WU Shi-qian.One Quantitative Method Based on Total Least Squares for Frequency-Selective Magnetic Resonance Spectroscopy[J].Acta Electronica Sinica,2005,33(7):1209-1212.
Authors:Zeng Wei-ming  LIANG Xiao-Yun  Luo Li-min  FANG Zhi-jun  WANG Zheng-you  WU Shi-qian
Affiliation:1. Dept.of computer Application,Jiangxi University of Finance & Economics,Nanchang,Jiangxi 330013,China;2. Lab of Image Tech.,Southeast University,Nanjing 210096,China
Abstract:Frequency-selective quantification can not only apply to many applications of magnetic resonance spectroscopy (MRS) but also improve the speed and accuracy of parameters estimation of selected spectral components.Thus,we presented a new frequency-selective method for MRS quantification,which estimated the nonlinear and linear parameters of the selected components based on total least squares and forward-backward APES respectively.From the experiments on both simulate data and MRS data in vivo,we can see that the computing speed and estimation stabilization of our method are obviously superior to those of the classical quantitative methods HSVD and HTLS;furthermore,its performance of parameters estimation is better than that of the frequency-selective method SELF-SVD proposed by Stoica et al.
Keywords:total least squares  magnetic resonance spectroscopy  frequency-selective method  quantification
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