首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Zero- to low-field MRI with averaging of concomitant gradient fields.
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Zero- to low-field MRI with averaging of concomitant gradient fields.

机译:零场到低场MRI,平均伴随梯度场。

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摘要

Magnetic resonance imaging (MRI) encounters fundamental limits in circumstances in which the static magnetic field is not sufficiently strong to truncate unwanted, so-called concomitant components of the gradient field. This limitation affects the attainable optimal image fidelity and resolution most prominently in low-field imaging. In this article, we introduce the use of pulsed magnetic-field averaging toward relaxing these constraints. It is found that the image of an object can be retrieved by pulsed low fields in the presence of the full spatial variation of the imaging encoding gradient field even in the absence of the typical uniform high-field time-independent contribution. In addition, error-compensation schemes can be introduced through the application of symmetrized pulse sequences. Such schemes substantially mitigate artifacts related to evolution in strong magnetic-field gradients, magnetic fields that vary in direction and orientation, and imperfections of the applied field pulses.
机译:在静态磁场强度不足以截断不需要的,所谓的梯度场伴随分量的情况下,磁共振成像(MRI)遇到了基本限制。此限制在低场成像中最显着地影响可获得的最佳图像保真度和分辨率。在本文中,我们介绍了使用脉冲磁场平均来缓和这些约束。已经发现,即使在不存在典型的均匀的高场时间无关的贡献的情况下,在成像编码梯度场的整个空间变化存在的情况下,也可以通过脉冲低场来恢复物体的图像。另外,可以通过应用对称脉冲序列来引入误差补偿方案。这样的方案基本上减轻了与强磁场梯度中的演化,方向和方向上变化的磁场以及所施加的场脉冲的缺陷有关的伪影。

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