首页> 外文期刊>Physics in medicine and biology. >Minimizing the magnetic field effect in MR-linac specific QA-tests: the use of electron dense materials
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Minimizing the magnetic field effect in MR-linac specific QA-tests: the use of electron dense materials

机译:在MR直线加速器特定的QA测试中将磁场效应降至最低:使用电子致密材料

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摘要

To address the quality assurance (QA) of a MR-linac which is an MRI combined with a linear accelerator (linac), the traditional linac QA-tests need to be redesigned, since the presence of the static magnetic field in the MR-linac alters the electron trajectory. The latter causes the asymmetry in the dose kernel which is introduced by the magnetic field and hinders accurate geometrical QA-tests for the MR-linac. We introduced the use of electron dense materials (e.g. copper) to reduce the size of the dose kernel and thereby the magnetic field effect on the dose deposition. Two examples of QA-tests are presented in which the geometrical accuracy of the MR-linac was addressed; beam profile and star-shot measurements. The introduced setup was compared with a reference setup and both were tested on a conventional and the MR-linac. The results showed that the symmetry of the recorded beam profile was restored in presence of the copper material and that the isocenter size of the MR-linac can be determined accurately with the introduced starshot setup. The use of electron dense materials is not limited to the presented QA-tests but has a broad application for beam-specific QA-tests in presence of a magnetic field.
机译:为了解决与线性加速器(linac)相结合的MRI直线加速器的质量保证(QA),传统的直线加速器QA测试需要重新设计,因为MR直线加速器中存在静磁场改变电子轨迹。后者导致剂量核的不对称性,该不对称性是由磁场引入的,并阻碍了MR直线加速器的精确几何QA测试。我们介绍了使用电子致密材料(例如铜)来减小剂量核的大小,从而减小磁场对剂量沉积的影响。给出了两个QA测试示例,其中论述了直线加速器的几何精度。光束轮廓和星光测量。将引入的设置与参考设置进行比较,并在常规和MR直线加速器上进行了测试。结果表明,在存在铜材料的情况下,记录的光束轮廓的对称性得以恢复,并且通过引入的星热设置可以准确确定MR-直线加速器的等中心点尺寸。电子致密材料的使用不限于所提出的QA测试,还可以广泛用于存在磁场的电子束特定QA测试。

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