首页> 外文会议>MICCAI 2011;International conference on medical image computing and computer-assisted intervention >Motion Compensated Magnetic Resonance Reconstruction Using Inverse-Consistent Deformable Registration: Application to Real-Time Cine Imaging
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Motion Compensated Magnetic Resonance Reconstruction Using Inverse-Consistent Deformable Registration: Application to Real-Time Cine Imaging

机译:使用逆一致可变形配准的运动补偿磁共振重建:在实时电影成像中的应用

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Patient motion is a major limitation for magnetic resonance imaging. Recent theoretical advances incorporate explicit rigid and non-rigid motion compensation into conventional image reconstruction for multi-shot acquisitions and recover motion-free images by solving a general matrix inversion problem. Although the theory has been established, applications are rare due to the challenges of estimating motion field for every pixel of every shot. In this paper we propose a method to overcome this difficulty using the inverse-consistent deformable registration supplying both forward and backward deformations for matrix inversion. We further extend this framework for multi-coil motion compensated image reconstruction using the eigen-mode analysis. Both simulations and in vivo studies demonstrate the effectiveness of our approach.
机译:患者的运动是磁共振成像的主要限制。最新的理论进展将显式的刚性和非刚性运动补偿合并到用于多次拍摄的常规图像重建中,并通过解决一般的矩阵求反问题来恢复无运动的图像。尽管已经建立了该理论,但是由于估计每个镜头的每个像素的运动场存在挑战,因此应用很少。在本文中,我们提出了一种使用逆一致可变形配准来克服此困难的方法,该配准提供正向和反向变形以用于矩阵求逆。我们进一步扩展了使用本征模式分析的多线圈运动补偿图像重建的框架。模拟和体内研究都证明了我们方法的有效性。

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