Haacke E Mark, Xu Yingbiao, Cheng Yu-Chung N, Reichenbach Jürgen R
Department of Radiology, Wayne State University, Detroit, MI, USA.
Magn Reson Med. 2004 Sep;52(3):612-8. doi: 10.1002/mrm.20198.
Susceptibility differences between tissues can be utilized as a new type of contrast in MRI that is different from spin density, T1-, or T2-weighted imaging. Signals from substances with different magnetic susceptibilities compared to their neighboring tissue will become out of phase with these tissues at sufficiently long echo times (TEs). Thus, phase imaging offers a means of enhancing contrast in MRI. Specifically, the phase images themselves can provide excellent contrast between gray matter (GM) and white matter (WM), iron-laden tissues, venous blood vessels, and other tissues with susceptibilities that are different from the background tissue. Also, for the first time, projection phase images are shown to demonstrate tissue (vessel) continuity. In this work, the best approach for combining magnitude and phase images is discussed. The phase images are high-pass-filtered and then transformed to a special phase mask that varies in amplitude between zero and unity. This mask is multiplied a few times into the original magnitude image to create enhanced contrast between tissues with different susceptibilities. For this reason, this method is referred to as susceptibility-weighted imaging (SWI). Mathematical arguments are presented to determine the number of phase mask multiplications that should take place. Examples are given for enhancing GM/WM contrast and water/fat contrast, identifying brain iron, and visualizing veins in the brain.
组织间的磁化率差异可被用作磁共振成像(MRI)中的一种新型对比度,它不同于自旋密度、T1加权或T2加权成像。与周围组织相比,具有不同磁化率的物质发出的信号在足够长的回波时间(TE)下会与这些组织失相。因此,相位成像提供了一种增强MRI对比度的方法。具体而言,相位图像本身能够在灰质(GM)和白质(WM)、含铁组织、静脉血管以及其他与背景组织磁化率不同的组织之间提供出色的对比度。此外,首次展示了投影相位图像可用于显示组织(血管)的连续性。在这项工作中,讨论了组合幅度图像和相位图像的最佳方法。对相位图像进行高通滤波,然后将其转换为一个特殊的相位掩码,其幅度在零到一之间变化。该掩码与原始幅度图像相乘几次,以增强不同磁化率组织之间的对比度。因此,这种方法被称为磁化率加权成像(SWI)。文中给出了数学论证来确定相位掩码相乘的次数。还给出了增强GM/WM对比度和水/脂肪对比度、识别脑内铁以及显示脑内静脉的示例。