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Approximation of the actual spatial distribution of the b-matrix in diffusion tensor imaging with bivariate polynomials

机译:近似与双变量多项式扩散张量成像中B族矩阵的实际空间分布

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The aim of this work was to find an analytical expression describing the b-matrix spatial distribution (BSD) in diffusion tensor imaging, obtained by means of simple calibration to a water isotropic phantom. The bivariate second degree polynomial function was fitted for the complete set of spatially distributed b-matrix elements derived through measurements on a 3 Tesla clinical scanner. Smooth, noise free b-matrices were obtained with clear patterns of systematic errors. Diffusion tensor eigenvalues were derived with much better accuracy than for previous BSD calibration. The proposed approach does not require many averages during the acquisition of the phantom and thus can shorten the BSD calibration.
机译:这项工作的目的是找到描述扩散张量成像的B族矩阵空间分布(BSD)的分析表达,通过简单地校准到水各向同性虚拟体。拟合二次多项多项式函数,用于通过在3特斯拉临床扫描仪上进行测量来源的完整空间分布的B族矩阵元件。使用明确的系统误差模式获得光滑,无噪声B矩阵。扩散张量特征值源于比以前的BSD校准更好的精度。在收购幻像期间,该方法不需要许多平均值,因此可以缩短BSD校准。

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