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Automatic High-Bandwidth Calibration and Reconstruction of Arbitrarily Sampled Parallel MRI

机译:任意采样并行MRI的自动高带宽校准和重建

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摘要

Today, many MRI reconstruction techniques exist for undersampled MRI data. Regularization-based techniques inspired by compressed sensing allow for the reconstruction of undersampled data that would lead to an ill-posed reconstruction problem. Parallel imaging enables the reconstruction of MRI images from undersampled multi-coil data that leads to a well-posed reconstruction problem. Autocalibrating pMRI techniques encompass pMRI techniques where no explicit knowledge of the coil sensivities is required. A first purpose of this paper is to derive a novel autocalibration approach for pMRI that allows for the estimation and use of smooth, but high-bandwidth coil profiles instead of a compactly supported kernel. These high-bandwidth models adhere more accurately to the physics of an antenna system. The second purpose of this paper is to demonstrate the feasibility of a parameter-free reconstruction algorithm that combines autocalibrating pMRI and compressed sensing. Therefore, we present several techniques for automatic parameter estimation in MRI reconstruction. Experiments show that a higher reconstruction accuracy can be had using high-bandwidth coil models and that the automatic parameter choices yield an acceptable result.
机译:如今,存在许多针对欠采样MRI数据的MRI重建技术。受压缩感测启发的基于正则化的技术允许重建欠采样数据,这将导致不良的重建问题。并行成像可以从欠采样的多线圈数据中重建MRI图像,从而导致重建问题。自动校准pMRI技术包括无需明确了解线圈敏感度的pMRI技术。本文的第一个目的是为pMRI推导一种新颖的自动校准方法,该方法允许估计和使用平滑但高带宽的线圈轮廓,而不是紧凑支持的内核。这些高带宽模型可以更准确地遵守天线系统的物理原理。本文的第二个目的是证明结合自动校准pMRI和压缩传感的无参数重建算法的可行性。因此,我们提出了几种在MRI重建中用于自动参数估计的技术。实验表明,使用高带宽线圈模型可以实现更高的重构精度,并且自动参数选择会产生可接受的结果。

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