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多回波复杂全场反演方法(mcTFI)用于提高定量磁化率映射中的信号建模。

Multiecho complex total field inversion method (mcTFI) for improved signal modeling in quantitative susceptibility mapping.

机构信息

Meinig School of Biomedical Engineering, Cornell University, Ithaca, New York, USA.

Department of Radiology, Weill Cornell Medicine, New York, New York, USA.

出版信息

Magn Reson Med. 2021 Oct;86(4):2165-2178. doi: 10.1002/mrm.28814. Epub 2021 May 24.

Abstract

PURPOSE

Typical quantitative susceptibility mapping (QSM) reconstruction steps consist of first estimating the magnetization field from the gradient-echo images, and then reconstructing the susceptibility map from the estimated field. The errors from the field-estimation steps may propagate into the final QSM map, and the noise in the estimated field map may no longer be zero-mean Gaussian noise, thus, causing streaking artifacts in the resulting QSM. A multiecho complex total field inversion (mcTFI) method was developed to compute the susceptibility map directly from the multiecho gradient echo images using an improved signal model that retains the Gaussian noise property in the complex domain. It showed improvements in QSM reconstruction over the conventional field-to-source inversion.

METHODS

The proposed mcTFI method was compared with the nonlinear total field inversion (nTFI) method in a numerical brain with hemorrhage and calcification, the numerical brains provided by the QSM Challenge 2.0, 18 brains with intracerebral hemorrhage scanned at 3T, and 6 healthy brains scanned at 7T.

RESULTS

Compared with nTFI, the proposed mcTFI showed more accurate QSM reconstruction around the lesions in the numerical simulations. The mcTFI reconstructed QSM also showed the best image quality with the least artifacts in the brains with intracerebral hemorrhage scanned at 3T and healthy brains scanned at 7T.

CONCLUSION

The proposed multiecho complex total field inversion improved QSM reconstruction over traditional field-to-source inversion through better signal modeling.

摘要

目的

典型的定量磁化率映射(QSM)重建步骤包括首先从梯度回波图像估计磁化场,然后从估计的场重建磁化率图。场估计步骤的误差可能会传播到最终的 QSM 图中,并且估计场图中的噪声可能不再是零均值高斯噪声,从而导致所得 QSM 中的条纹伪影。已经开发了多回波复数总场反演(mcTFI)方法,以便使用保留复数域中高斯噪声特性的改进信号模型直接从多回波梯度回波图像计算磁化率图。它显示了在 QSM 重建方面相对于传统的场到源反演的改进。

方法

将所提出的 mcTFI 方法与非线性总场反演(nTFI)方法在具有出血和钙化的数值脑中、QSM 挑战赛 2.0 提供的数值脑中、在 3T 扫描的 18 个脑出血脑和在 7T 扫描的 6 个健康脑中进行了比较。

结果

与 nTFI 相比,所提出的 mcTFI 在数值模拟中病变周围的 QSM 重建更准确。在 3T 扫描的脑出血脑和 7T 扫描的健康脑中,mcTFI 重建的 QSM 也显示出最佳的图像质量,伪影最少。

结论

所提出的多回波复数总场反演通过更好的信号建模改善了传统场到源反演的 QSM 重建。

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