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Software Framework for Realistic MRI Simulations Using the Polyhedral Fourier Transform

机译:使用多面傅立叶变换进行逼真的MRI仿真的软件框架

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摘要

This work presents a freely available operating system-independent Matlab software tool for simulation of magnetic resonance imaging (MRI) acquisition and image reconstruction using polyhedral phantoms. The tool is based on an efficient implementation of the closed form solution of the polyhedral Fourier transform (FT). The software tool, named "PolyFT", can be applied to polyhedral surface and tetrahedral volume meshes. The tool enables the calculation of the Fourier domain representation of physiologically relevant objects with spatially varying intensities, permitting accurate simulation of slice selection and parallel imaging techniques that require coil sensitivity profiles. Several examples of applications are given. Though more computationally intense than the FT, the polyhedral FT allows relevant simulation of both MRI sampling and reconstruction processes. The freely-available software tool should be useful in the same situations in which the standard Shepp-Logan phantom is used, and additionally when analytical Fourier representations of objects with non-uniform intensities are needed.
机译:这项工作提供了一种自由的操作系统独立的MATLAB软件工具,用于使用多面体模拟仿真磁共振成像(MRI)采集和图像重建。该工具基于多面体傅立叶变换(FT)的封闭形式解决方案的有效实现。名为“Polyft”的软件工具可以应用于多面体表面和四面体容积网。该工具可以通过空间变化的强度计算生理学相关对象的傅里叶域表示,允许精确地模拟需要线圈灵敏度配置文件的切片选择和并行成像技术。给出了一些应用程序的例子。虽然比FT更加计算地强烈,但多面体FT允许MRI采样和重建过程的相关模拟。可自由的软件工具在使用标准Shepp-Logan Phantom的相同情况下,且另外,当需要具有非均匀强度的对象的分析傅里叶傅里叶表示时。

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