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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Effects of image reconstruction on fiber orientation mapping from multichannel diffusion MRI: Reducing the noise floor using SENSE
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Effects of image reconstruction on fiber orientation mapping from multichannel diffusion MRI: Reducing the noise floor using SENSE

机译:多通道扩散MRI重建图像对纤维取向映射的影响:使用SENSE降低本底噪声

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Purpose To examine the effects of the reconstruction algorithm of magnitude images from multichannel diffusion MRI on fiber orientation estimation. Theory and Methods It is well established that the method used to combine signals from different coil elements in multichannel MRI can have an impact on the properties of the reconstructed magnitude image. Using a root-sum-of-squares approach results in a magnitude signal that follows an effective noncentral-χ distribution. As a result, the noise floor, the minimum measurable in the absence of any true signal, is elevated. This is particularly relevant for diffusion-weighted MRI, where the signal attenuation is of interest. Results In this study, we illustrate problems that such image reconstruction characteristics may cause in the estimation of fiber orientations, both for model-based and model-free approaches, when modern 32-channel coils are used. We further propose an alternative image reconstruction method that is based on sensitivity encoding (SENSE) and preserves the Rician nature of the single-channel, magnitude MR signal. We show that for the same k-space data, root-sum-of-squares can cause excessive overfitting and reduced precision in orientation estimation compared with the SENSE-based approach. Conclusion These results highlight the importance of choosing the appropriate image reconstruction method for tractography studies that use multichannel receiver coils for diffusion MRI acquisition. Magn Reson Med 70:1682-1689, 2013.
机译:目的研究多通道扩散核磁共振成像的幅值图像重建算法对纤维取向估计的影响。理论与方法众所周知,在多通道MRI中用于组合来自不同线圈元件的信号的方法可能会对重构的幅值图像的属性产生影响。使用平方根和方法可得到遵循有效非中心χ分布的幅度信号。结果,提高了在没有任何真实信号的情况下可测量的最小本底噪声。这对于关注信号衰减的扩散加权MRI特别重要。结果在这项研究中,我们说明了当使用现代的32通道线圈时,基于模型的方法和无模型的方法,此类图像重建特性可能会在估计光纤方向时引起问题。我们进一步提出了一种替代的图像重建方法,该方法基于灵敏度编码(SENSE)并保留了单通道幅度MR信号的Rician性质。我们表明,与基于SENSE的方法相比,对于相同的k空间数据,平方根和会导致过度拟合和定向估计的精度降低。结论这些结果凸显了为使用多通道接收器线圈进行弥散MRI采集的束线照相术研究选择合适的图像重建方法的重要性。 Magn Reson Med 70:1682-1689,2013年。

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