Department of Electrical Engineering, National Sun Yat-Sen University, Kaohsiung, Taiwan 804.
J Magn Reson Imaging. 2010 Jun;31(6):1522-9. doi: 10.1002/jmri.22182.
To report possible erroneous estimates of diffusion parameters in the twice-refocused spin-echo (TRSE) technique, proposed to eliminate eddy-current-induced geometric distortions in diffusion-weighted echo-planar imaging, when stimulated echo signals are inappropriately included.
Eleven subjects were included for imaging experiments on two 1.5 Tesla systems using the TRSE sequence. Three versions, two with unbalanced crusher gradients inserted to dephase the stimulated echo from the b = 0 images and one with balanced crusher gradients, were implemented. The apparent diffusion coefficients (ADC) and fractional anisotropy (FA) were derived and compared.
The ADCs obtained with unbalanced crusher gradients were closer to values reported in the literature. Stimulated echo led to ADC over-estimations by 34.2%, 50.4%, 54.0%, 51.5%, 24.0%, and 41.9% in the genu of corpus callosum, splenium of corpus callosum, bilateral corona radiata, internal capsule, mediofrontal gyrus, and the cuneus, respectively (P < 0.01), with concomitant reduction in FA in highly anisotropic regions. Over-estimations of diffusion coefficients were found to be roughly equal along all directions.
Formation of stimulated echo in the TRSE technique can lead to erroneous estimations of the diffusion parameters, even if no prominent morphological artifacts are seen.
报告在两次重聚焦自旋回波(TRSE)技术中扩散参数可能出现的错误估计,该技术旨在消除扩散加权回波平面成像中涡流引起的几何变形,当刺激回波信号不恰当地包含在内时。
11 名受试者在两台 1.5T 系统上进行了成像实验,使用 TRSE 序列。实施了三个版本,两个版本插入不平衡的碎裂梯度以失相 b = 0 图像的刺激回波,一个版本具有平衡的碎裂梯度。得出并比较了表观扩散系数(ADC)和各向异性分数(FA)。
使用不平衡的碎裂梯度获得的 ADC 值更接近文献中报道的值。在胼胝体膝部、胼胝体压部、双侧放射冠、内囊、额中回和楔部,刺激回波分别导致 ADC 高估 34.2%、50.4%、54.0%、51.5%、24.0%和 41.9%(P < 0.01),同时在各向异性较高的区域 FA 降低。发现扩散系数的高估大致沿所有方向相等。
即使没有明显的形态学伪影,TRSE 技术中刺激回波的形成也可能导致扩散参数的错误估计。