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Shimming with permanent magnets for the x-ray detector in a hybrid x-ray∕MR system

机译:混合X射线MR系统中用于X射线探测器的永磁体匀场

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摘要

In this x-ray∕MR hybrid system an x-ray flat panel detector is placed under the patient cradle, close to the MR volume of interest (VOI), where the magnetic field strength is ∼0.5 T. Immersed in this strong field, several electronic components inside the detector become magnetized and create an additional magnetic field that is superimposed on the original field of the MR scanner. Even after linear shimming, the field homogeneity of the MR scanner remains disrupted by the detector. The authors characterize the field due to the detector with the field of two magnetic dipoles and further show that two sets of permanent magnets (NdFeB) can withstand the main magnetic field and compensate for the nonlinear components of the additional field. The ideal number of magnets and their locations are calculated based on a field map measured with the detector in place. Experimental results demonstrate great promise for this technique, which may be useful in many settings where devices with magnetic components need to be placed inside or close to an MR scanner.
机译:在此X射线MR混合系统中,将X射线平板检测器放置在患者支架下方,靠近感兴趣的MR体积(VOI),在该磁场中磁场强度约为0.5T。检测器内部的几个电子组件被磁化,并产生一个附加磁场,该磁场叠加在MR扫描仪的原始磁场上。即使在线性匀场之后,MR扫描器的场均匀性仍然被检测器破坏。作者用两个磁偶极子的磁场来表征探测器产生的磁场,并进一步证明两组永磁体(NdFeB)可以承受主磁场并补偿附加磁场的非线性分量。理想的磁体数量及其位置是根据将探测器置于适当位置而测得的场图计算得出的。实验结果证明了该技术的巨大前景,该技术在许多需要将带有磁性组件的设备放置在MR扫描仪内部或附近的环境中很有用。

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