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Decoupled dynamic magnetic field measurements improves diffusion-weighted magnetic resonance images

机译:解耦的动态磁场测量可改善扩散加权磁共振图像

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摘要

Field probes are miniature receiver coils with localized NMR-active samples inside. They are useful in monitoring magnetic field. This information can be used to improve magnetic resonance image quality. While field probes are coupled to each other marginally in most applications, this coupling can cause incorrect resonance frequency estimates and image reconstruction errors. Here, we propose a method to reduce the coupling between field probes in order to improve the accuracy of magnetic field estimation. An asymmetric sensitivity matrix describing the coupling between channels of field probes and NMR active droplets within field probes was empirically measured. Localized signal originating from each probe was derived from the product of the inverse of the sensitivity matrix and the coupled probe measurements. This method was used to estimate maps of dynamic magnetic fields in diffusion weighted MRI. The estimated fields using decoupled probe measurement led to images more robust to eddy currents caused by diffusion sensitivity gradients along different directions.
机译:场探针是微型接收器线圈,内部带有局部NMR活性样品。它们可用于监视磁场。该信息可以用于改善磁共振图像质量。在大多数应用中,尽管场探针之间的耦合很小,但这种耦合会导致错误的共振频率估计和图像重建错误。在此,我们提出一种减少场探针之间耦合的方法,以提高磁场估计的准确性。凭经验测量描述场探针通道与场探针内NMR活性液滴之间耦合的非对称灵敏度矩阵。源自每个探针的局部信号是从灵敏度矩阵的倒数与耦合的探针测量值的乘积中得出的。该方法用于估计扩散加权MRI中的动态磁场图。使用解耦探针测量的估计场导致图像更强壮,以抵抗由沿不同方向的扩散灵敏度梯度引起的涡流。

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