首页> 外文期刊>Magnetic resonance imaging: An International journal of basic research and clinical applications >kappa-space inherited parallel acquisition (KIPA): application on dynamic magnetic resonance imaging thermometry
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kappa-space inherited parallel acquisition (KIPA): application on dynamic magnetic resonance imaging thermometry

机译:κ空间遗传并行捕获(KIPA):在动态磁共振成像测温中的应用

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摘要

In this study, a novel method for dynamic parallel image acquisition and reconstruction is presented. In this method, called k-space inherited parallel acquisition (KIPA), localized reconstruction coefficients are used to achieve higher reduction factors, and lower noise and artifact levels compared to that of generalized autocalibrating partially parallel acquisition (GRAPPA) reconstruction. In KIPA, the full k-space for the first frame and the partial k-space for later frames are required to reconstruct a whole series of images. Reconstruction coefficients calculated for different segments of k-space from the first frame data set are used to estimate missing k-space lines in corresponding k-space segments of other frames. The local determination of KIPA reconstruction coefficients is essential to adjusting them according to the local signal-to-noise ratio characteristics of k-space data. The proposed algorithm is applicable to dynamic imaging with arbitrary k-space sampling trajectories. Simulations of magnetic resonance thermometry using the KIPA method with a reduction factor of 6 and using dynamic imaging studies of human subjects with reduction factors of 4 and 6 have been performed to prove the feasibility of our method and to show apparent improvement in image quality in comparison with GRAPPA for dynamic imaging. (c) 2006 Elsevier Inc. All rights reserved.
机译:在这项研究中,提出了一种动态并行图像获取和重建的新方法。在这种方法中,称为k空间继承并行获取(KIPA),与广义自动校准部分并行获取(GRAPPA)重建相比,局部重建系数可用于实现更高的降低因子,以及更低的噪声和伪影水平。在KIPA中,需要第一帧的完整k空间和后面的帧的局部k空间来重建整个图像序列。从第一帧数据集为k空间的不同段计算出的重建系数用于估计其他帧的相应k空间段中丢失的k空间线。 KIPA重构系数的局部确定对于根据k空间数据的局部信噪比特性进行调整至关重要。该算法适用于任意k空间采样轨迹的动态成像。进行了使用还原因子为6的KIPA方法和对还原因子为4和6的人类对象的动态成像研究的磁共振测温的仿真,以证明我们的方法的可行性并在比较中显示出图像质量的明显改善使用GRAPPA进行动态成像。 (c)2006 Elsevier Inc.保留所有权利。

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