Baudrexel Simon, Volz Steffen, Preibisch Christine, Klein Johannes C, Steinmetz Helmuth, Hilker Rüdiger, Deichmann Ralf
Department of Neurology, University Hospital, Goethe University Frankfurt am Main, Frankfurt am Main, Germany.
Magn Reson Med. 2009 Jul;62(1):263-8. doi: 10.1002/mrm.21971.
A method for fast quantitative T(2)* mapping based on multiple gradient-echo (multi-GE) imaging with correction for static magnetic field inhomogeneities is described, using an exponential excitation pulse. Field gradient maps are obtained from the phase information and modulus data are subsequently corrected, allowing for simple monoexponential T(2)* fitting. Echoes with long echo times suffering from major signal losses due to field inhomogeneities are excluded from the analysis. The acquisition time for a matrix size of 256 x 256, 1 mm in-plane resolution, and 2 mm slice thickness amounts to 15 s per slice. An additional correction for in-plane field gradients further improves accuracy. Phantom experiments show that the method provides accurate T(2)* values for field gradients up to 200 microT/m; for gradients up to 300 microT/m errors do not exceed 15%. In vivo T(2)* values acquired on healthy volunteers at 3T are in excellent agreement with results from the literature.
描述了一种基于多梯度回波(multi-GE)成像的快速定量T(2)*映射方法,该方法使用指数激励脉冲校正静磁场不均匀性。从相位信息中获取场梯度图,随后对模量数据进行校正,以便进行简单的单指数T(2)*拟合。分析中排除了由于场不均匀性而遭受重大信号损失的长回波时间的回波。对于矩阵大小为256×256、平面分辨率为1mm且切片厚度为2mm的情况,每切片的采集时间为15秒。对平面场梯度的额外校正进一步提高了准确性。体模实验表明,该方法为高达200μT/m的场梯度提供了准确的T(2)*值;对于高达300μT/m的梯度,误差不超过15%。在3T下对健康志愿者进行的体内T(2)*值与文献结果高度一致。