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Use of spherical harmonic deconvolution methods to compensate for nonlinear gradient effects on MRI images

机译:使用球谐解卷积方法来补偿MRI图像上的非线性梯度效应

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摘要

Spatial encoding in MR techniques is achieved by sampling the signal as a function of time in the presence of a magnetic field gradient. The gradients are assumed to generate 6 linear magnetic field gradient, and typical image reconstruction relies upon this approximation. However, high-speed gradients in the current generation of MRI scanners often sacrifice linearity for improvements in speed. Such nonlinearity results in distorted images. The problem is presented in terms of first principles and a correction method based on a gradient field spherical harmonic expansion is proposed. In our case, the amount of distortion measured within a typical field of view (FOV) required for head imaging is sufficiently large that without the use of some distortion correction technique, the images would be of limited use for stereotaxy or longitudinal studies, where precise volumetric information is required. (C) 2004 Wiley-Liss, Inc.
机译:MR技术中的空间编码是通过在存在磁场梯度的情况下根据时间对信号进行采样来实现的。假定这些梯度产生6个线性磁场梯度,并且典型的图像重建依赖于此近似值。但是,当前一代的MRI扫描仪中的高速梯度通常会牺牲线性度以提高速度。这种非线性会导致图像失真。从第一性原理出发,提出了基于梯度场球谐展开的修正方法。在我们的情况下,在头部成像所需的典型视场(FOV)范围内测得的畸变量足够大,以致在不使用某些畸变校正技术的情况下,对于精确的立体定位或纵向研究,图像的使用将受到限制。需要体积信息。 (C)2004 Wiley-Liss,Inc.

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