Khalidov Ildar, Van De Ville Dimitri, Jacob Mathews, Lazeyras François, Unser Michael
Biomedical Imaging Group, EPFL, Lausanne, Switzerland.
IEEE Trans Med Imaging. 2007 Jul;26(7):990-1000. doi: 10.1109/TMI.2007.897385.
Magnetic resonance spectroscopy imaging (MRSI) is an attractive tool for medical imaging. However, its practical use is often limited by the intrinsic low spatial resolution and long acquisition time. Spectral localization by imaging (SLIM) has been proposed as a non-Fourier reconstruction algorithm that incorporates spatial a priori information about spectroscopically uniform compartments. Unfortunately, the influence of the magnetic field inhomogeneity--in particular, the susceptibility effects at tissues' boundaries--undermines the validity of the compartmental model. Therefore, we propose BSLIM as an extension of SLIM with field inhomogeneity compensation. A B0-field inhomogeneity map, which can be acquired rapidly and at high resolution, is used by the new algorithm as additional a priori information. We show that the proposed method is distinct from the generalized SLIM (GSLIM) framework. Experimental results of a two-compartment phantom demonstrate the feasibility of the method and the importance of inhomogeneity compensation.
磁共振波谱成像(MRSI)是一种很有吸引力的医学成像工具。然而,其实际应用常常受到固有低空间分辨率和长采集时间的限制。成像光谱定位(SLIM)已被提出作为一种非傅里叶重建算法,该算法纳入了关于光谱均匀隔室的空间先验信息。不幸的是,磁场不均匀性的影响——特别是组织边界处的磁化率效应——破坏了隔室模型的有效性。因此,我们提出BSLIM作为具有场不均匀性补偿的SLIM扩展。新算法使用可以快速且高分辨率采集的B0场不均匀性图作为额外的先验信息。我们表明所提出的方法不同于广义SLIM(GSLIM)框架。双隔室模型的实验结果证明了该方法的可行性以及不均匀性补偿的重要性。