Ma J, Wehrli F W, Song H K, Hwang S N
Department of Radiology, University of Pennsylvania Medical Center, Philadelphia 19104, USA.
J Magn Reson. 1997 Mar;125(1):92-101. doi: 10.1006/jmre.1996.1086.
A two-component chemical-shift-imaging technique is described from which fat and water images can be obtained in a single scan and in the presence of an inhomogeneous field. In addition, the method provides transverse relaxation rates R2 and R2' separately for each of the spectral components. The method is a combination and extension of the GESFIDE [gradient echo sampling of FID and echo, J. Ma and F. W. Wehrli, J. Magn. Reson. B 111, 61 (1996)] and the multipoint Dixon techniques. It is based on sampling the descending and ascending portions of a Hahn spin echo with a train of gradient echoes which are spaced at one-half of the chemical-shift modulation period. Processing of the complex echo data, involving an automated phase unwrapping algorithm, affords relative amplitudes and transverse relaxation rates of the two spectral components. An additional benefit of the method is its superior signal-to-noise ratio resulting from echo summation. Applications targeted and illustrated involve MRI osteodensitometry of trabecular bone in the presence of varying fractions of hematopoietic and fatty bone marrow.
本文描述了一种双组分化学位移成像技术,该技术能够在单次扫描且存在不均匀场的情况下获取脂肪和水的图像。此外,该方法还能分别为每个光谱成分提供横向弛豫率R2和R2'。该方法是GESFIDE[FID和回波的梯度回波采样,J. Ma和F. W. Wehrli,《磁共振杂志B》111, 61 (1996)]和多点狄克逊技术的结合与扩展。它基于用一系列梯度回波对哈恩自旋回波的下降和上升部分进行采样,这些梯度回波的间隔为化学位移调制周期的一半。对复回波数据的处理,包括自动相位解缠算法,可得到两个光谱成分的相对振幅和横向弛豫率。该方法的另一个优点是回波求和带来的卓越信噪比。所针对和说明的应用包括在存在不同比例造血和脂肪骨髓的情况下对小梁骨进行MRI骨密度测定。