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A new method for removing motion artifacts in parallel MRI reconstruction

机译:一种新方法,用于在并联MRI重建中去除运动伪影

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The speed of MR acquisition can be increased by decreasing the number of sequential phase encodes by means of arrays of multiple receiver coils. However, coil data are frequently corrupted due to involuntary movement during the data acquisition, which in turn have a significant influence on reconstructed composite image. In this article, a new method called Weighted-Sum-of-Squares (WSOS) is proposed to remove artifacts in the reconstructed images. The method firstly adopts homomorphic filtering and B-spline smoothing to obtain a group of uniform brightness phased array coil images, and then accurately estimated corrupt samples based on mutual information between the coil images. Finally, weights are redistributed utilizing estimative knowledge in the following combined process. In this way, the influence of corrupt samples is attenuated so that motion artifacts in reconstructed images could be effectively reduced. The abdomen and brain experiments show that the new method reduces the motion artifacts caused by the corrupt data in the reconstructed images and the benefits are demonstrated as well by comparing it to conventional method.
机译:通过通过多个接收器线圈的阵列减少顺序相位编码的数量,可以提高MR采集的速度。然而,由于在数据采集期间的非自愿运动,线圈数据经常被损坏,这反过来对重建的复合图像具有显着影响。在本文中,提出了一种称为加权平方(WSOS)的新方法以在重建图像中移除伪像。该方法首先采用均匀滤波和B样条平滑,得到一组均匀亮度相控阵列线圈图像,然后基于线圈图像之间的互信息精确地估计损坏样品。最后,利用以下组合过程中利用估计知识来重新分配重量。以这种方式,腐败样品的影响被衰减,使得可以有效地减少重建图像中的运动伪影。腹部和大脑实验表明,新方法减少了由重建图像中的腐败数据引起的运动伪影,并通过将其与传统方法进行比较来证明益处。

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