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梯度回波(GRE)图像上磁化率伪影的量化与最小化

Quantification and minimization of magnetic susceptibility artifacts on GRE images.

作者信息

Port J D, Pomper M G

机构信息

Russell H. Morgan Department of Radiology, Johns Hopkins Hospital, Baltimore, MD 21287, USA.

出版信息

J Comput Assist Tomogr. 2000 Nov-Dec;24(6):958-64. doi: 10.1097/00004728-200011000-00024.

Abstract

PURPOSE

The purpose of this work was to determine the optimal imaging parameters for minimization of metallic susceptibility artifacts during gradient echo (GRE) imaging.

METHOD

We performed GRE imaging of titanium screws in a nickel-doped agarose gel phantom, systematically varying several parameters to characterize and quantify susceptibility artifacts.

RESULTS

The greatest reduction in artifact size came from using a short TE; increasing the frequency matrix and decreasing the slice thickness also contributed substantially to reducing the artifact size. Whenever possible, implanted prostheses should be aligned with the main magnetic field to minimize artifact size. Parameters with negligible effect on artifact size included bandwidth, phase encode matrix, and field of view.

CONCLUSION

Radiologists can easily adjust the above parameters in their imaging protocols to improve GRE image quality in patients with implanted metallic devices.

摘要

目的

本研究的目的是确定在梯度回波(GRE)成像过程中使金属磁化率伪影最小化的最佳成像参数。

方法

我们在掺镍琼脂糖凝胶模型中对钛螺钉进行GRE成像,系统地改变几个参数以表征和量化磁化率伪影。

结果

伪影大小的最大减少来自使用短回波时间(TE);增加频率矩阵和减小层厚也对减小伪影大小有显著贡献。只要有可能,植入的假体应与主磁场对齐,以最小化伪影大小。对伪影大小影响可忽略不计的参数包括带宽、相位编码矩阵和视野。

结论

放射科医生可以在其成像方案中轻松调整上述参数,以提高植入金属装置患者的GRE图像质量。

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