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MRI 中的同时驱动线性和非线性空间编码场。

Simultaneously driven linear and nonlinear spatial encoding fields in MRI.

机构信息

Department of Radiology, University Medical Center Freiburg, Freiburg, Germany.

出版信息

Magn Reson Med. 2011 Mar;65(3):702-14. doi: 10.1002/mrm.22672. Epub 2010 Nov 30.

DOI:10.1002/mrm.22672
PMID:21337403
Abstract

Spatial encoding in MRI is conventionally achieved by the application of switchable linear encoding fields. The general concept of the recently introduced PatLoc (Parallel Imaging Technique using Localized Gradients) encoding is to use nonlinear fields to achieve spatial encoding. Relaxing the requirement that the encoding fields must be linear may lead to improved gradient performance or reduced peripheral nerve stimulation. In this work, a custom-built insert coil capable of generating two independent quadratic encoding fields was driven with high-performance amplifiers within a clinical MR system. In combination with the three linear encoding fields, the combined hardware is capable of independently manipulating five spatial encoding fields. With the linear z-gradient used for slice-selection, there remain four separate channels to encode a 2D-image. To compare trajectories of such multidimensional encoding, the concept of a local k-space is developed. Through simulations, reconstructions using six gradient-encoding strategies were compared, including Cartesian encoding separately or simultaneously on both PatLoc and linear gradients as well as two versions of a radial-based in/out trajectory. Corresponding experiments confirmed that such multidimensional encoding is practically achievable and demonstrated that the new radial-based trajectory offers the PatLoc property of variable spatial resolution while maintaining finite resolution across the entire field-of-view.

摘要

MRI 中的空间编码通常通过应用可切换的线性编码场来实现。最近引入的 PatLoc(使用局部梯度的并行成像技术)编码的一般概念是使用非线性场来实现空间编码。放宽对编码场必须是线性的要求可能会导致梯度性能的提高或外周神经刺激的减少。在这项工作中,一个定制的插入线圈能够产生两个独立的二次编码场,并在临床磁共振系统中由高性能放大器驱动。结合三个线性编码场,组合硬件能够独立地操作五个空间编码场。在线性 z 梯度用于层选的情况下,仍然有四个单独的通道来编码二维图像。为了比较这种多维编码的轨迹,开发了局部 k 空间的概念。通过模拟,比较了六种梯度编码策略的重建结果,包括在 PatLoc 和线性梯度上分别或同时进行笛卡尔编码,以及两种基于径向的内外轨迹。相应的实验证实了这种多维编码是实际可行的,并表明新的基于径向的轨迹提供了 PatLoc 的可变空间分辨率的特性,同时在整个视场中保持有限的分辨率。

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