首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Utilizing the diffusion-to-noise ratio to optimize magnetic resonance diffusion tensor acquisition strategies for improving measurements of diffusion anisotropy.
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Utilizing the diffusion-to-noise ratio to optimize magnetic resonance diffusion tensor acquisition strategies for improving measurements of diffusion anisotropy.

机译:利用扩散噪声比优化磁共振扩散张量采集策略,以改善对扩散各向异性的测量。

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摘要

It is well known that quantitative anisotropy measurements derived from the diffusion tensor are extremely sensitive to noise contamination. The level of noise in the diffusion tensor imaging (DTI) experiment is usually measured from some estimate of the signal-to-noise ratio (SNR) in the component diffusion-weighted (DW) images. This measure is, however, highly dependent on experimental parameters, such as the diffusion attenuation b-value and the diffusion coefficient of the subject. Conversely, the diffusion-to-noise ratio (DNR), defined as the SNR of the calculated diffusion tensor trace map, provides a reliable estimate of noise contamination, which is largely independent of such parameters. In this work it is demonstrated how reliable anisotropy measurements can be obtained using an image acquisition strategy that optimizes the DNR of the DTI experiment. This acquisition scheme is shown to provide noise-independent measurements of typical diffusion anisotropy values found in the human brain. Copyright 2001 Wiley-Liss, Inc.
机译:众所周知,从扩散张量得出的定量各向异性测量对噪声污染极为敏感。通常根据分量扩散加权(DW)图像中信噪比(SNR)的某种估计来测量扩散张量成像(DTI)实验中的噪声水平。但是,该措施高度依赖于实验参数,例如扩散衰减b值和对象的扩散系数。相反,定义为计算得出的扩散张量轨迹图的SNR的扩散噪声比(DNR)提供了可靠的噪声污染估计,而噪声估计在很大程度上与此类参数无关。在这项工作中,证明了使用优化DTI实验的DNR的图像采集策略如何能够获得可靠的各向异性测量结果。该采集方案显示可提供与噪声无关的对人脑中典型的扩散各向异性值的测量。版权所有2001 Wiley-Liss,Inc.

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