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首页> 外文期刊>Journal of magnetic resonance imaging: JMRI >Two-point dixon fat-water separation: improving reliability and accuracy in phase correction algorithms.
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Two-point dixon fat-water separation: improving reliability and accuracy in phase correction algorithms.

机译:两点狄克逊脂肪-水分离:提高相位校正算法的可靠性和准确性。

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摘要

PURPOSE: To propose an advanced phase-correction region-growing algorithm for two-point fat-water separation suitable for parotid assessment, and to evaluate the general performance of phase-correction algorithms. MATERIALS AND METHODS: Two region-growing algorithms were evaluated in test objects and in head images: the original phase-correction algorithm (OPC) and the advanced phase-correction algorithm with voxel size manipulation (VSM) which includes: 1) starting the region-growing process from images of lower resolution and subsequently stepping toward the original matrix size, and 2) limiting the use of low-pass filters to fat-water interfaces with partial volume effects RESULTS: Fundamental problems relate to biological tissue spectrum being poorly approximated by two discrete peaks for fat and water. The VSM algorithm was shown to be less noise-sensitive, faster, and to produce a better approximation for the field inhomogeneity map. In head images (6 volunteers, 10 slices each) 43 errors were found with the OPC algorithm and only 6 errors with the VSM algorithm. Only the OPC algorithm produced errors surrounding the parotids (10 errors). CONCLUSION: The VSM algorithm provides a more accurate and less noise-sensitive fat-water separation. This highly significant performance improvement allows the application of phase-correction algorithms to a wider range of clinical applications.
机译:目的:提出一种适用于腮腺评估的用于两点脂肪-水分离的高级相位校正区域增长算法,并评估相位校正算法的总体性能。材料与方法:在测试对象和头部图像中评估了两种区域增长算法:原始相位校正算法(OPC)和带体素大小操纵的高级相位校正算法(VSM),包括:1)开始区域从较低分辨率的图像开始生长过程,然后逐步达到原始矩阵大小; 2)将低通滤镜的使用限制为具有部分体积效应的脂肪-水界面。结果:根本问题涉及与生物组织光谱近似相关的差脂肪和水有两个离散的峰。 VSM算法显示出对噪声的敏感度更低,速度更快,并且对于场非均匀性图可以产生更好的近似值。在头部图像中(6名志愿者,每人10个切片),OPC算法发现43个错误,而VSM算法仅发现6个错误。仅OPC算法产生围绕腮腺的错误(10个错误)。结论:VSM算法提供了一种更准确,对噪声不太敏感的脂肪-水分离方法。这种非常显着的性能改进允许将相位校正算法应用到更广泛的临床应用中。

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