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An error analysis of white matter tractography methods: synthetic diffusion tensor field simulations.

机译:白质束摄影方法的误差分析:合成扩散张量场模拟。

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White matter tractography using diffusion tensor MR images is a promising method for estimating the pathways of white matter tracts in the human brain. The success of this method ultimately depends upon the accuracy of the white matter tractography algorithms. In this study, a Monte Carlo simulation was used to investigate the impact of SNR, tensor anisotropy, and diffusion tensor encoding directions on the accuracy of six tractography algorithms. The accuracy was assessed in straight and curved tracts and tract geometries with divergence properties. In general, the tract dispersion increased with distance and decreased with SNR and anisotropy. The tract orientation with respect to the encoding scheme also influenced tract dispersion. Divergent tract geometries increased tract dispersion, whereas convergent tract geometries reduced dispersion. Analytic models of tract dispersion were constructed as a function of the tract distance, SNR, eigenvalues of the tracts, voxel size, and the relationship between the tract direction and the diffusion tensor encoding directions. In certain cases, the mean tract trajectory was found to deviate from the ideal pathway for curved trajectories. Analytical models of mean displacement were constructed as a function of the curvature, tract distance, step size, and tensor eigenvalues. These models may be used in future studies to assess the level of confidence associated with a tractography result.
机译:使用弥散张量MR图像进行白质束描记术是一种有前途的方法,可用于估计人脑中白质束的路径。该方法的成功最终取决于白质束描记术算法的准确性。在这项研究中,使用蒙特卡洛模拟来研究SNR,张量各向异性和扩散张量编码方向对六种束层摄影算法准确性的影响。在直线和弯曲区域以及具有发散特性的区域中评估准确性。通常,道分散度随距离增加而随SNR和各向异性而减小。相对于编码方案的束方向也影响束分散。发散线几何增加了散布,而会聚线几何减小了散布。束扩散的分析模型被构建为束距离,SNR,束特征值,体素大小以及束方向与扩散张量编码方向之间的关系的函数。在某些情况下,发现平均道轨迹偏离弯曲轨迹的理想路径。平均位移的分析模型被构造为曲率,道距,步长和张量特征值的函数。这些模型可用于将来的研究中,以评估与影像学检查结果相关的置信度。

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