Magnetic Resonance Imaging for the Determination of Magnetic Susceptibility of Materials

O. Beuf , A. Briguet , M. Lissac , R. Davis
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引用次数: 65

Abstract

A magnetic resonance imaging method for volume magnetic susceptibility estimate of materials immersed in a liquid containing resonant nuclei is proposed. The method uses either the standard spin-echo Fourier imaging technique or the projection-reconstruction technique. Image distortions of cylindrical macroscopic susceptibility inhomomogeneities are analyzed and a correlation is established between the susceptibility value and the size of image deformation along the read gradient. For measurements, the susceptibility of the liquid surrounding the sample (here deionized water) serves as a reference, and characteristic distances between particular points, usually highlights in the distorted image, are related to the susceptibility difference between the two media. Different samples, mainly prosthetic materials with a large susceptibility range from 5 to 200 ppm in absolute value, have been investigated, and the accuracy of susceptibility determination is discussed.

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磁共振成像测定材料磁化率
提出了一种浸在含共振核液体中的材料体积磁化率的磁共振成像估计方法。该方法采用标准的自旋回波傅立叶成像技术或投影重建技术。分析了圆柱形宏观磁化率非均匀性的图像畸变,建立了磁化率值与图像沿读取梯度变形大小的相关性。在测量中,样品周围液体(这里是去离子水)的磁化率作为参考,特定点之间的特征距离(通常在扭曲图像中突出显示)与两种介质之间的磁化率差异有关。研究了不同样品,主要是在5 ~ 200ppm的绝对敏感性范围内的假体材料,并讨论了敏感性测定的准确性。
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