Hancu Ileana, Blezek Daniel J, Dumoulin Michelle C
GE Global Research Center, Niskayuna, NY 12309, USA.
NMR Biomed. 2005 Oct;18(6):352-61. doi: 10.1002/nbm.965.
An automatic procedure, allowing the prospective registration of brain MRI images and the acquisition of nearly identical brain volumes (coverage and orientation) in longitudinal exams, is presented. This procedure, based on a fast registration algorithm and a tailored pulse sequence, is used to reposition single voxels for 1H MRS data acquired in vivo. The impact of the repositioning method on the extent of voxel overlap and on the reproducibility of metabolite concentration measurements is studied. A statistically significant increase in voxel overlap and generally decreased short-term measurement variability (decreased coefficients of variation and increased reproducibility coefficients) are observed. Differences in the long-term variances of metabolite concentrations and concentration ratios measured using the eye and automatic repositioning scheme, however, do not reach statistical significance. The improved workflow associated with the use of the automatic repositioning process, which obviates the need for skilled operator intervention for voxel repositioning, suggests that approaches similar to the one presented here may be a standard element in tomorrow's longitudinal MRI and MRS exams.
本文介绍了一种自动程序,该程序可在纵向检查中对脑部MRI图像进行前瞻性配准,并获取几乎相同的脑容量(覆盖范围和方向)。此程序基于快速配准算法和定制脉冲序列,用于对体内采集的1H MRS数据的单个体素进行重新定位。研究了重新定位方法对体素重叠程度以及代谢物浓度测量重现性的影响。观察到体素重叠有统计学显著增加,并且短期测量变异性普遍降低(变异系数降低,重现性系数增加)。然而,使用手动和自动重新定位方案测量的代谢物浓度和浓度比的长期方差差异未达到统计学显著性。与使用自动重新定位过程相关的改进工作流程,无需熟练操作人员进行体素重新定位干预,这表明类似于本文介绍的方法可能成为未来纵向MRI和MRS检查的标准要素。