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Spin echo SS-PARSE: A PARSE MRI method to estimate R2, R2' and frequency in a single shot.

机译:自旋回波SS-PARSE:一种PARSE MRI方法,用于估计单次发射的R2,R2'和频率。

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摘要

Rapid and accurate mapping of relaxation rates applies to a number of neuroimaging and functional magnetic resonance imaging (fMRI) studies. Previously developed relaxation rate mapping methods are based mostly on non-linear fitting of intensity images. For the first time, this study developed an ultrafast and direct transverse relaxation rate mapping technique, Spin Echo Single-Shot Parameter Assessment by Retrieval from Single Encoding (SE-SS-PARSE). Four useful imaging parameters, local transverse magnetization magnitude (M xy0), frequency (f), reversible and irreversible transverse relaxation rate (R2' and R2), can be estimated using an iterative searching algorithm simultaneously and quantitatively. In addition, the SE-SS-PARSE technique is free of geometric errors and blurring artifacts that commonly occur in the other SS techniques, such as echo planar imaging (EPI).;Specifically, this work developed the signal model of SE-SS-PARSE and tested this technique with computer simulations, experimental phantoms and biological samples. In simulations, even at a noise level with low signal-to-noise ratio (SNR) of 20dB, SE-SS-PARSE is able to generate accurate local magnetization parameter maps subject to statistical comparison with actual parameter values. After successful testing with a numerical phantom, the SE-SS-PARSE technique was performed on a realistic four-tube phantom, which was designed to produce in-vivo-like and different R2 and R2' values in each tube. The estimated relaxation rates from SE-SS-PARSE were highly correlated with relaxation rates computed from slower "gold standard" conventional MRI methods (correlation coefficients r1=0.9636 for R2', r2=0.9788 for R2). The ultrafast SE-SS-PARSE technique was also compared with a widely used T2-weighted imaging MRI technique, fast spin echo (FSE), in mapping R2 values. Four-tube phantom studies indicate that SE-SS-PARSE produces results with accuracy equivalent to FSE, but with a much shorter acquisition time. In addition, biological sample studies show that SE-SS-PARSE with fat saturation pulse produces more accurate R2 estimates than used without fat saturation when fat is present. In conclusion, SE-SS-PARSE is an ultrafast MRI method that can produce reliable R2 and R2' mapping. It is expected that SE-SS-PARSE will find important applications in neuroimaging and fMRI studies, especially in recording rapidly changing physiological phenomena.;Keywords: Rapid relaxation rate mapping, PARSE MRI, Single-shot, Spin Echo.
机译:快速,准确地绘制松弛率图适用于许多神经成像和功能磁共振成像(fMRI)研究。先前开发的弛豫率映射方法主要基于强度图像的非线性拟合。这项研究首次开发了一种超快速和直接的横向弛豫速率映射技术,即通过从单编码中检索自旋回波单拍参数评估(SE-SS-PARSE)。可以同时使用定量搜索算法估算四个有用的成像参数,即局部横向磁化强度(M xy0),频率(f),可逆和不可逆横向弛豫率(R2'和R2)。此外,SE-SS-PARSE技术没有其他SS技术中常见的几何误差和模糊伪影,例如回波平面成像(EPI)。具体而言,这项工作开发了SE-SS- PARSE并通过计算机模拟,实验体模和生物样品测试了该技术。在仿真中,即使在具有20dB的低信噪比(SNR)的噪声水平下,SE-SS-PARSE仍能够生成准确的局部磁化参数图,并与实际参数值进行统计比较。在用数字体模成功测试之后,在逼真的四管体模上执行SE-SS-PARSE技术,该体模被设计为在每个管中产生类似体内的R2和R2'值。 SE-SS-PARSE估计的弛豫率与从较慢的“金标准”常规MRI方法计算的弛豫率高度相关(R2'的相关系数r1 = 0.9636,R2'的相关系数r2 = 0.9788)。在映射R2值时,还将超快速SE-SS-PARSE技术与广泛使用的T2加权成像MRI技术(快速自旋回波(FSE))进行了比较。四管幻象研究表明SE-SS-PARSE产生的结果与FSE相当,但获取时间却短得多。此外,生物学样本研究表明,当存在脂肪时,具有脂肪饱和脉冲的SE-SS-PARSE产生的R2估算值比没有脂肪饱和的SE-SS-PARSE产生的R2估算值更准确。总之,SE-SS-PARSE是一种超快速MRI方法,可以产生可靠的R2和R2'映射。预计SE-SS-PARSE将在神经影像和fMRI研究中找到重要的应用,特别是在记录快速变化的生理现象方面。关键词:快速弛豫速率映射,PARSE MRI,单发,自旋回波。

著录项

  • 作者

    Li, Ningzhi.;

  • 作者单位

    The University of Alabama at Birmingham.;

  • 授予单位 The University of Alabama at Birmingham.;
  • 学科 Engineering Biomedical.;Health Sciences Radiology.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 123 p.
  • 总页数 123
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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