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Passive shimming of the fringe field of a superconducting magnet for ultra-low field hyperpolarized noble gas MRI

机译:超低场超极化稀有气体MRI的超导磁​​体边缘场的被动匀场

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摘要

Hyperpolarized noble gases (HNGs) provide exciting possibilities for MR imaging at ultra-low magnetic field strengths (< 0.15 T) due to the extremely high polarizations available from optical pumping. The fringe field of many superconductive magnets used in clinical MR imaging can provide a stable magnetic field for this purpose. In addition to offering the benefit of HNG MR imaging alongside conventional high field proton MRI, this approach offers the other useful advantage of providing different field strengths at different distances from the magnet. However, the extremely strong field gradients associated with the fringe field present a major challenge for imaging since impractically high active shim currents would be required to achieve the necessary homogeneity. In this work, a simple passive shimming method based on the placement of a small number of ferromagnetic pieces is proposed to reduce the fringe field inhomogeneities to a level that can be corrected using standard active shuns. The method explicitly takes into account the strong variations of the field over the volume of the ferromagnetic pieces used to shim. The method is used to obtain spectra in the fringe field of a high-field (1.89 T) superconducting magnet from hyperpolarized Xe-129 gas samples at two different ultra-low field strengths (8.5 and 17 mT). The linewidths of spectra measured from imaging phantoms (30 Hz) indicate a homogeneity sufficient for MRI of the rat lung. © 2005 Elsevier Inc. All rights reserved.
机译:超极化稀有气体(HNG)为超低磁场强度(&LT; 0.15 T)的MR成像提供了令人兴奋的可能性,这是由于光泵浦提供的极高极化能力。临床MR成像中使用的许多超导磁体的边缘场可为此目的提供稳定的磁场。除了在常规的高场质子MRI的基础上提供HNG MR成像的好处外,这种方法还提供了另一个有用的优点,即在距磁体不同距离处提供不同的场强。然而,由于需要不切实际的高有源匀场电流来实现必要的均匀性,与边缘场相关的极强的场梯度对成像提出了重大挑战。在这项工作中,提出了一种基于放置少量铁磁片的简单无源匀场方法,以将边缘场的不均匀性降低到可以使用标准有源避雷器校正的水平。该方法明确考虑了在用于匀场的铁磁片的体积上磁场的强烈变化。该方法用于从超极化Xe-129气体样品在两个不同的超低场强(8.5和17 mT)下获得高场(1.89 T)超导磁体的边缘场中的光谱。从成像体模(30 Hz)测得的光谱线宽表明,足以对大鼠肺部进行MRI检查。 &复制; 2005 Elsevier Inc.保留所有权利。

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