Coremans J, Luypaert R, Verhelle F, Stadnik T, Osteaux M
Biomedical MR Unit, PRIMIS, Vrije Universiteit Brussel, Belgium.
Magn Reson Imaging. 1994;12(3):443-54. doi: 10.1016/0730-725x(94)92538-0.
In the past, the anisotropic diffusion of water molecules in white matter in the brain has been correlated to the basic symmetry of the myelin fibers: water diffuses more readily along the fiber direction than perpendicular to it. As a consequence, diffusion sensitized magnetic resonance imaging can be expected to be useful for studying the fiber orientation. In this work, we present a method for exploiting this type of information to map the fiber orientations in the image plane. It makes use of three diffusion-weighted images with sensitizing gradients along x, y and u, an axis at 45 degrees with respect to x and y. The orientation information contained in these images is summarized in a single image representing the angle between the fiber direction and a fixed axis, making use of a cyclic color scale. The method is evaluated using computer simulations for a variety of diffusion weighting strengths and signal-to-noise ratios, tested on a phantom and illustrated on an in vivo example. An extension to the determination of the fiber orientation in three dimensions is also described.
过去,大脑白质中水分子的各向异性扩散已与髓鞘纤维的基本对称性相关联:水分子沿纤维方向的扩散比垂直于纤维方向的扩散更容易。因此,扩散敏感磁共振成像有望用于研究纤维方向。在这项工作中,我们提出了一种利用此类信息在图像平面中绘制纤维方向图的方法。它利用了三张扩散加权图像,其敏感梯度分别沿x、y方向以及相对于x和y呈45度角的u轴。这些图像中包含的方向信息通过使用循环色标总结在一张表示纤维方向与固定轴之间夹角的单一图像中。该方法通过计算机模拟针对各种扩散加权强度和信噪比进行了评估,在体模上进行了测试,并通过一个体内实例进行了说明。还描述了该方法在三维纤维方向确定方面的扩展。