Three-dimensional analytical magnetic resonance imaging phantom in the Fourier domain.

IF 3 3区 医学 Q2 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING Magnetic Resonance in Medicine Pub Date : 2007-08-01 DOI:10.1002/mrm.21292
Cheng Guan Koay, Joelle E Sarlls, Evren Ozarslan
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引用次数: 56

Abstract

This work presents a basic framework for constructing a 3D analytical MRI phantom in the Fourier domain. In the image domain the phantom is modeled after the work of Kak and Roberts on a 3D version of the famous Shepp-Logan head phantom. This phantom consists of several ellipsoids of different sizes, orientations, locations, and signal intensities (or gray levels). It will be shown that the k-space signal derived from the phantom can be analytically expressed. As a consequence, it enables one to bypass the need for interpolation in the Fourier domain when testing image-reconstruction algorithms. More importantly, the proposed framework can serve as a benchmark for contrasting and comparing different image-reconstruction techniques in 3D MRI with a non-Cartesian k-space trajectory. The proposed framework can also be adapted for 3D MRI simulation studies in which the MRI parameters of interest may be introduced to the signal intensity from the ellipsoid.

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傅里叶域三维解析磁共振成像模体。
这项工作提出了在傅里叶域中构建三维分析MRI幻影的基本框架。在图像领域,这个幻影是根据Kak和Roberts在著名的Shepp-Logan头部幻影的3D版本上的工作建模的。这个幻像由几个不同大小、方向、位置和信号强度(或灰度)的椭球组成。这将表明,k空间信号从幻影可以解析表示。因此,当测试图像重建算法时,它使人们能够绕过对傅里叶域中插值的需要。更重要的是,所提出的框架可以作为对比和比较具有非笛卡尔k空间轨迹的3D MRI中不同图像重建技术的基准。所提出的框架也可以适用于3D MRI模拟研究,其中感兴趣的MRI参数可以引入椭球的信号强度。
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来源期刊
CiteScore
6.70
自引率
24.20%
发文量
376
审稿时长
2-4 weeks
期刊介绍: Magnetic Resonance in Medicine (Magn Reson Med) is an international journal devoted to the publication of original investigations concerned with all aspects of the development and use of nuclear magnetic resonance and electron paramagnetic resonance techniques for medical applications. Reports of original investigations in the areas of mathematics, computing, engineering, physics, biophysics, chemistry, biochemistry, and physiology directly relevant to magnetic resonance will be accepted, as well as methodology-oriented clinical studies.
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