Department of Radiology, Graduate School of Medicine, University of Tokyo, Bunkyo-ku, Tokyo, Japan.
J Magn Reson Imaging. 2010 Aug;32(2):489-92. doi: 10.1002/jmri.22237.
To evaluate the effects of gradient nonlinearity correction and intensity nonuniformity correction on longitudinal (two-year) changes in global and regional brain volumes.
A total of 208 subjects (70 females and 138 males, age range = 38.1-83.0 years) were included in this study. Each subject was scanned twice, at an interval of approximately two years (range = 1.5-2.3 years). Three-dimensional fast spoiled-gradient recalled acquisition in the steady state (3D-FSPGR) images corrected for gradient nonlinearity and/or intensity nonuniformity were compared with uncorrected 3D-FSPGR images with use of structural image evaluation using normalization of atrophy 2.6 (SIENA).
The mean absolute deviations of percentage brain volume change (PBVC) values in the gradient nonlinearity +/- intensity nonuniformity corrected images were significantly less than that in the uncorrected images, and the difference in the mean absolute deviation of PBVC was the most significant between the uncorrected images and the images corrected for both gradient nonlinearity and intensity nonuniformity. Voxel-wise comparisons showed large significant differences between the uncorrected images and the corrected images.
Correction for gradient nonlinearity and intensity nonuniformity reduces the variance of measured longitudinal changes in brain volumes and will improve accuracy for detecting subtle brain changes.
评估梯度非线性校正和强度不均匀性校正对全脑和局部脑体积纵向(两年)变化的影响。
本研究共纳入 208 名受试者(70 名女性和 138 名男性,年龄范围为 38.1-83.0 岁)。每位受试者均接受两次扫描,两次扫描之间的间隔约为两年(范围为 1.5-2.3 年)。使用归一化体积变化评估 2.6 版(SIENA)对梯度非线性和/或强度不均匀性进行校正的三维快速扰相梯度回波稳态采集(3D-FSPGR)图像与未校正的 3D-FSPGR 图像进行比较。
校正梯度非线性 +/- 强度不均匀性的图像中脑容量变化百分比(PBVC)值的平均绝对偏差明显小于未校正图像,未校正图像与校正梯度非线性和强度不均匀性的图像之间 PBVC 平均绝对偏差的差异最大。体素水平比较显示,未校正图像与校正图像之间存在显著差异。
校正梯度非线性和强度不均匀性可降低脑体积纵向变化测量的方差,并提高检测细微脑变化的准确性。