Department of Biomedical Engineering, Illinois Institute of Technology, Chicago, Illinois 60616, USA.
J Magn Reson Imaging. 2010 Jul;32(1):211-7. doi: 10.1002/jmri.22218.
To investigate an iterative image reconstruction algorithm using the nonuniform fast Fourier transform (NUFFT) for PROPELLER (Periodically Rotated Overlapping ParallEL Lines with Enhanced Reconstruction) MRI.
Numerical simulations, as well as experiments on a phantom and a healthy human subject were used to evaluate the performance of the iterative image reconstruction algorithm for PROPELLER, and compare it with that of conventional gridding. The trade-off between spatial resolution, signal to noise ratio, and image artifacts, was investigated for different values of the regularization parameter. The performance of the iterative image reconstruction algorithm in the presence of motion was also evaluated.
It was demonstrated that, for a certain range of values of the regularization parameter, iterative reconstruction produced images with significantly increased signal to noise ratio, reduced artifacts, for similar spatial resolution, compared with gridding. Furthermore, the ability to reduce the effects of motion in PROPELLER-MRI was maintained when using the iterative reconstruction approach.
An iterative image reconstruction technique based on the NUFFT was investigated for PROPELLER MRI. For a certain range of values of the regularization parameter, the new reconstruction technique may provide PROPELLER images with improved image quality compared with conventional gridding.
研究一种使用非均匀快速傅里叶变换(NUFFT)的迭代图像重建算法,用于 PROPELLER(带增强重建的周期性旋转重叠平行线)MRI。
数值模拟以及在体模和健康人体受试者上的实验用于评估 PROPELLER 迭代图像重建算法的性能,并将其与传统的网格化方法进行比较。针对不同的正则化参数值,研究了空间分辨率、信噪比和图像伪影之间的权衡。还评估了运动存在时迭代图像重建算法的性能。
结果表明,对于正则化参数的某个范围值,与网格化相比,迭代重建在相似的空间分辨率下产生了具有显著提高的信噪比、降低的伪影的图像。此外,当使用迭代重建方法时,PROPELLER-MRI 中运动的影响可以得到降低。
研究了一种基于 NUFFT 的 PROPELLER MRI 迭代图像重建技术。对于正则化参数的某个范围值,新的重建技术可能会提供比传统网格化更好的图像质量。