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Generalized Analytic Expressions for the b Matrix of Twice-RefocusedSpin Echo Pulse Sequence

机译:两次重新泛芬回波脉冲序列B矩阵的广义分析表达

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Diffusion weighted imaging (DWI) technique has been used to help understand the human brain white matter fiber structures in vivo. Currently used standard diffusion tensor magnetic resonance imaging (DTI) tractography based on the second order diffusion tensor model has limitations in its ability to resolve complex fiber tracts. The generalized diffusion tensor (GDT) imaging technique has been proposed to overcome these limitations associated with the standard second order tensor model. Based on the GDT model, a generalized partial differential equation (PDE) governing the anisotropic diffusion process can be derived. For the purpose of solving the PDE and computing the generalized diffusion tensor, we derive a generalized analytic expression for the high order b matrix in the case of twice-refocused spin echo (TRSE) pulse sequence which is used in the DWI data acquisition. The TRSE pulse sequence is considered because of its ability to null the eddy current effect generated during the scanning. The b matrix was computed by integrating the transverse precessing magnetization between the excitation time and the echo time (TE). In our experiments, we show some computational results of the generalized b matrix based on the new analytic expression. In addition, comparisons between the generalized b matrix computed using our formula and the second order b matrix given by the MRI machine are presented. The characteristics of the fomula and the data are discussed at last.
机译:扩散加权成像(DWI)技术已被用于帮助了解体内人的脑白质纤维结构。目前使用的标准扩散张量磁共振成像(DTI)牵引基于二阶扩散张量模型具有局限性,局限性地解析复杂的纤维束。已经提出了广义扩散张量(GDT)成像技术以克服与标准二阶张量模型相关的这些限制。基于GDT模型,可以推导出控制各向异性扩散过程的广义部分微分方程(PDE)。为了求解PDE并计算广义扩散张量,我们在DWI数据采集中使用的两次重组的自旋回波(TRES)脉冲序列的情况下,我们推导出高阶B矩阵的广义分析表达。考虑TRSE脉冲序列是因为它能够在扫描期间产生涡流效果。通过在激发时间和回声时间(TE)之间集成横向预先生磁化来计算B矩阵。在我们的实验中,我们基于新的分析表达式显示了广义B矩阵的一些计算结果。另外,呈现了使用MRI机器给出的公式计算的广义B矩阵与MRI机器给出的二阶B矩阵之间的比较。最后讨论了Fomula和数据的特征。

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