Advanced MRI Section, Laboratory of Functional and Molecular Imaging, National Institute of Neurological Disorders and Stroke, National Institutes of Health, Bethesda, Maryland 20892-1065, USA.
Magn Reson Med. 2009 Dec;62(6):1510-22. doi: 10.1002/mrm.22135.
Phase images in susceptibility-weighted MRI of brain provide excellent contrast. However, the phase is affected by tissue geometry and orientation relative to the main magnetic field (B(0)), and phase changes extend beyond areas of altered susceptibility. Magnetic susceptibility, on the other hand, is an intrinsic tissue property, closely reflecting tissue composition. Therefore, recently developed inverse Fourier-based methods were applied to calculate susceptibility maps from high-resolution phase images acquired at a single orientation at 7 T in the human brain (in vivo and fixed) and at 11.7 T in fixed marmoset brain. In susceptibility images, the contrast of cortical layers was more consistent than in phase images and was independent of the structures' orientation relative to B(0). The contrast of iron-rich deep-brain structures (red nucleus and substantia nigra) in susceptibility images agreed more closely with iron-dominated R(2) (*) images than the phase image contrast, which extended outside the structures. The mean susceptibility in these regions was significantly correlated with their estimated iron content. Susceptibility maps calculated using this method overcome the orientation-dependence and non-locality of phase image contrast and seem to reflect underlying tissue composition. Susceptibility images should be easier to interpret than phase images and could improve our understanding of the sources of susceptibility contrast.
脑磁共振磁敏感加权成像的相位图像提供了极好的对比。然而,相位受到组织几何形状和相对于主磁场 (B(0)) 的方向的影响,并且相位变化超出了易感性改变的区域。另一方面,磁化率是一种内在的组织特性,它紧密反映了组织成分。因此,最近开发的基于逆傅里叶的方法被应用于从在 7 T 下在人体脑(体内和固定)和在 11.7 T 下在固定狨猴脑中获得的单一方向的高分辨率相位图像中计算磁化率图。在磁化率图像中,皮质层的对比度比相位图像更一致,并且不依赖于结构相对于 B(0) 的方向。富含铁的深部脑结构(红核和黑质)在磁化率图像中的对比度与铁主导的 R(2)(*)图像中的对比度更吻合,而相位图像的对比度则延伸到结构之外。这些区域的平均磁化率与它们估计的铁含量显著相关。使用该方法计算的磁化率图克服了相位图像对比度的方向依赖性和非局部性,似乎反映了潜在的组织成分。磁化率图像应该比相位图像更容易解释,并且可以提高我们对磁化率对比源的理解。