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Motion corrected compressed sensing for free-breathing dynamic cardiac MRI

机译:运动校正的压缩感应,用于自由呼吸动态心脏MRI

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摘要

Compressed sensing (CS) has been demonstrated to accelerate MRI acquisitions by reconstructing sparse images of good quality from highly undersampled data. Motion during MR scans can cause inconsistencies in k-space data, resulting in strong motion artifacts in the reconstructed images. For CS to be useful in these applications, motion correction techniques need to be combined with the undersampled reconstruction. Recently, joint motion correction and CS approaches have been proposed to partially correct for effects of motion. However, the main limitation of these approaches is that they can only correct for affine deformations. In this work, we propose a novel motion corrected CS framework for free-breathing dynamic cardiac MRI that incorporates a general motion correction formulation directly into the CS reconstruction. This framework can correct for arbitrary affine or nonrigid motion in the CS reconstructed cardiac images, while simultaneously benefiting from highly accelerated MR acquisition. The application of this approach is demonstrated both in simulations and in vivo data for 2D respiratory self-gated free-breathing cardiac CINE MRI, using a golden angle radial acquisition. Results show that this approach allows for the reconstruction of respiratory motion corrected cardiac CINE images with similar quality to breath-held acquisitions.
机译:通过从高度欠采样的数据重建高质量的稀疏图像,已证明压缩感知(CS)可以加速MRI采集。 MR扫描期间的运动可能会导致k空间数据不一致,从而导致重建图像中出现强烈的运动伪影。为了使CS在这些应用中有用,需要将运动校正技术与欠采样重建相结合。最近,已经提出了联合运动校正和CS方法来部分校正运动的影响。但是,这些方法的主要局限性在于它们只能校正仿射变形。在这项工作中,我们提出了一种用于自由呼吸动态心脏MRI的新颖的运动校正CS框架,该框架将一般的运动校正公式直接结合到CS重建中。该框架可以校正CS重建心脏图像中的任意仿射或非刚性运动,同时受益于高度加速的MR采集。使用黄金角放射状采集技术在二维呼吸自门控自由呼吸心脏CINE MRI的仿真和体内数据中都证明了该方法的应用。结果表明,这种方法可以重建呼吸运动校正的心脏CINE图像,其质量与屏息采集相似。

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