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基于化学位移的水/脂分离的 T₁ 校正脂肪定量:在骨骼肌中的应用。

T₁-corrected fat quantification using chemical shift-based water/fat separation: application to skeletal muscle.

机构信息

Department of Radiology and Biomedical Imaging, University of California, San Francisco, San Francisco, California, USA.

出版信息

Magn Reson Med. 2011 Nov;66(5):1312-26. doi: 10.1002/mrm.22925. Epub 2011 Mar 30.

Abstract

Chemical shift-based water/fat separation, like iterative decomposition of water and fat with echo asymmetry and least-squares estimation, has been proposed for quantifying intermuscular adipose tissue. An important confounding factor in iterative decomposition of water and fat with echo asymmetry and least-squares estimation-based intermuscular adipose tissue quantification is the large difference in T(1) between muscle and fat, which can cause significant overestimation in the fat fraction. This T(1) bias effect is usually reduced by using small flip angles. T(1) -correction can be performed by using at least two different flip angles and fitting for T(1) of water and fat. In this work, a novel approach for the water/fat separation problem in a dual flip angle experiment is introduced and a new approach for the selection of the two flip angles, labeled as the unequal small flip angle approach, is developed, aiming to improve the noise efficiency of the T(1) -correction step relative to existing approaches. It is shown that the use of flip angles, selected such the muscle water signal is assumed to be T(1) -independent for the first flip angle and the fat signal is assumed to be T(1) -independent for the second flip angle, has superior noise performance to the use of equal small flip angles (no T(1) estimation required) and the use of large flip angles (T(1) estimation required).

摘要

基于化学位移的水/脂分离,如回波不对称和最小二乘法迭代分解水和脂,已被提议用于定量肌间脂肪。在回波不对称和最小二乘法迭代分解水和脂的基于肌间脂肪定量中,一个重要的混杂因素是肌肉和脂肪之间 T1 的巨大差异,这可能导致脂肪分数的显著高估。这种 T1 偏置效应通常可以通过使用小翻转角来降低。T1 校正可以通过使用至少两个不同的翻转角并拟合水和脂肪的 T1 来完成。在这项工作中,引入了一种用于双翻转角实验中水/脂分离问题的新方法,并开发了一种用于选择两个翻转角的新方法,标记为不等小翻转角方法,旨在相对于现有方法提高 T1 校正步骤的噪声效率。结果表明,选择翻转角的方法,假设第一个翻转角时肌肉水信号的 T1 是独立的,第二个翻转角时脂肪信号的 T1 是独立的,与使用相等小翻转角(不需要 T1 估计)和使用大翻转角(需要 T1 估计)相比,具有更好的噪声性能。

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