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Geometric distortion and shimming considerations in a rotating MR-linac design due to the influence of low-level external magnetic fields

机译:由于低水平外部磁场的影响,旋转MR-直线加速器设计中的几何变形和匀场考虑

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Purpose: This work investigates with simulation the effect of external stray magnetic fields on a recently reported MRI-linac hybrid, which by design will rotate about the patient axis during therapy. During rotation, interactions with magnetic fields from the earth or nearby ferromagnetic structures may cause unacceptable field distortions in the imaging field of view. Optimal approaches for passive shimming implementation, the degree and significance of residual distortion, and an analysis of the active shimming requirements for further correction are examined. Methods: Finite element simulations were implemented on two representative types of biplanar magnet designs. Each of these magnet designs, consisting of a 0.2 T four-post and a 0.5 T C-type unit, was simulated with and without an external field on the order of the earth's field (0.5 G) over a range of rotated positions. Through subtraction, the field distribution resulting from the external field alone could be determined. These measured distributions were decomposed into spherical harmonic components, which were then used to investigate the effect of their selective removal to simulate the effects of passive and active shimming. Residual fields after different levels of shim treatment were measured and assessed in terms of their imaging consequence. Results: For both magnet types, the overall success of a passive shim implementation was highly dependent on the orientation for which it was based. If this orientation was chosen incorrectly, the passive shim would correct for the induced fields at that location, but the overall maximal distortion at other locations was exacerbated by up to a factor of two. The choice of passive shim orientation with the least negative consequence was found to be that where the magnet B 0 axis and transaxial component of the external field were aligned. Residual fields after passive shimming and frequency offset were found to be low in the simulated scenarios, contributing to 1 mm of distortion for most standard imaging sequences (based on a 0.5 G external field). However, extremely rapid single-shot sequences could be distorted by these residual fields to well over 5 mm. These residuals when analyzed were found to correspond primarily to second-order spherical harmonic terms. One term in particular was found to account for the vast majority of these residual fields, defined by the product of the two axes perpendicular to the axis of rotation. The implementation of this term would allow the resulting geometric distortion to fall to the order of 1 mm, even for single-shot sequences. Conclusions: After appropriate passive shimming, the imaging distortion due to an external field of 0.5 G was found to be important only in rapid single-shot sequences, which are especially susceptible to field inhomogeneity. Should it be desirable to use these sequences for real-time tracking, made conceivable due to the lower susceptibility concerns at low field, these residual fields should be addressed. The ability to use only one second-order term for this correction will reduce the cost impact of this decision.
机译:目的:这项工作模拟研究了外部杂散磁场对最近报道的MRI-直线加速器混合器的影响,该混合器在设计过程中将绕患者轴旋转。在旋转过程中,与来自地球或附近铁磁结构的磁场的相互作用可能会在成像视场中引起不可接受的场失真。研究了用于无源匀场的最佳方法,残余失真的程度和重要性以及对有源匀场要求的分析,以进行进一步校正。方法:对两种代表性的双平面磁体设计进行了有限元模拟。这些磁体设计中的每一个都由一个0.2 T的四柱式磁体和一个0.5 T的C型单元组成,在有或没有外部磁场的情况下,都模拟了一系列旋转位置范围内的磁场(0.5 G)。通过减法,可以确定仅由外部场产生的场分布。将这些测得的分布分解为球谐分量,然后将其用于研究选择性去除的效果,以模拟被动和主动匀场的影响。测量并评估了不同水平的匀片处理后的残留视野。结果:对于这两种磁体类型,无源垫片实现的总体成功很大程度上取决于其所基于的方向。如果错误地选择了该方向,则被动垫片将校正该位置处的感应场,但是其他位置的整体最大失真会增加两倍。发现具有最小负面影响的无源垫片取向的选择是磁体B 0轴和外部磁场的跨轴分量对齐的地方。在模拟场景中,发现无源匀场和频率偏移后的残留场很低,对大多数标准成像序列(基于0.5 G外部场)造成1 mm的失真。但是,这些残留场可能会使极快的单发序列失真至5 mm以上。分析时发现这些残差主要对应于二阶球谐项。特别发现一个术语解释了这些残余场的绝大部分,它们由垂直于旋转轴的两个轴的乘积定义。即使对于单发序列,该术语的实现也将允许所得的几何变形降至1mm的数量级。结论:经过适当的被动匀场后,仅在快速单发序列中才发现由0.5 G外场引起的成像畸变很重要,而单次序列尤其容易受到场非均匀性的影响。如果希望将这些序列用于实时跟踪(由于在低场时较低的磁化率考虑而可以想象的),则应解决这些残留场。仅使用一个二阶项进行此校正的功能将减少此决策的成本影响。

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