Weber Hans, Schultz Gerrit, Gallichan Daniel, Hennig Jürgen, Zaitsev Maxim
Department of Radiology-Medical Physics, University Medical Center Freiburg, Freiburg, Germany.
Magn Reson Med. 2014 Mar;71(3):1002-14. doi: 10.1002/mrm.24754.
Nonlinear spatial encoding magnetic fields result in an inhomogeneous image resolution. Within this study, this characteristic property of nonlinear encoding is investigated with regard to its potential to accelerate MRI acquisitions.
A dependency between k-space coverage and local resolvability of the image causes k-space samples to have a spatially localized contribution to the reconstruction of the spin density. On the basis of this observation, a concept for alias-free data undersampling is developed, which is referred to as the local field of view concept.
On the basis of this concept, a fast sampling trajectory is developed. It is evaluated with simulations and experiments (both using a phantom and in vivo) for MRI with, as an example, pure quadrupolar encoding fields. To demonstrate that the concept is only applicable to (spatially) nonlinear encoding, a comparison with linear encoding is provided.
Application of the local field of view concept results in a localized adaptation of the image resolution by undersampling higher frequency k-space samples without introducing aliasing.
A new effect of nonlinear spatial encoding magnetic fields was found, which allows more efficient data sampling and at the same time counterbalancing the natural variation in image resolution.
非线性空间编码磁场会导致图像分辨率不均匀。在本研究中,对非线性编码的这一特性在加速磁共振成像(MRI)采集方面的潜力进行了研究。
k空间覆盖与图像局部可分辨性之间的相关性导致k空间样本对自旋密度重建具有空间局部贡献。基于这一观察结果,开发了一种无混叠数据欠采样的概念,即局部视野概念。
基于这一概念,开发了一种快速采样轨迹。以纯四极编码场为例,通过模拟和实验(包括使用体模和活体实验)对其进行了评估。为了证明该概念仅适用于(空间)非线性编码,还与线性编码进行了比较。
应用局部视野概念可通过对高频k空间样本进行欠采样来实现图像分辨率的局部自适应调整,且不会引入混叠。
发现了非线性空间编码磁场的一种新效应,它允许更高效的数据采样,同时平衡图像分辨率的自然变化。