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首页> 外文期刊>Medical Physics >Experimental measurement of ionization chamber angular response and associated magnetic field correction factors in MR‐linac
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Experimental measurement of ionization chamber angular response and associated magnetic field correction factors in MR‐linac

机译:MR-LINAC中电离室角响应的实验测量和相关磁场校正因子

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摘要

Purpose To measure ionization chamber dose response as a function of the angle between magnetic field direction and ionization chamber orientation in magnetic resonance‐guided radiation therapy (MRgRT) system, and to evaluate angular dependence of magnetic field correction factor for reference dosimetry. Methods Measurements were performed on an Elekta MR‐linac that integrates a 1.5‐T Philips MRI and a 7‐MV FFF photon beam accelerator. The response of four reference class chambers (Exradin‐A19, A1SL, IBA FC65‐G, and CC13, paired with a PTW UE electrometer) was studied. An in‐house built MR‐compatible water tank and an accompanying cylindrical insert that allowed chamber rotation around the cylinder's axis was used. The EPID onboard imaging was used to center chamber at the MR‐linac isocenter (143.5?cm, SAD), as well as to verify position at each datapoint. Results A clear angular dependence of dose response for all chambers has been measured. The most significant effect of magnetic field on relative chamber response in the presence of magnetic field was observed in the orientation when chamber axis is perpendicular to the direction of magnetic field with the tip pointing in the same direction as Lorentz force. This effect is more pronounced for larger volume chambers; the maximum relative variation in the chamber response (between the setup described above and the one where chamber and magnetic field are parallel) is a 5.3% and 4.6% increase for A19 and FC65‐G, respectively, and only 2.0% and 1.9% for smaller volume A1SL and CC13 chamber, respectively. We measured the absolute magnitude of the magnetic field correction factor k Q mag for the Exradin‐A19, A1SL, IBA FC65‐G, and CC13 to be 0.938?±?1.13%, 0.968?±?0.99%, 0.950?±?1.13%, and 0.975?±?1.13%, respectively. The values are for perpendicular orientation of the chamber relative to magnetic field and parallel to the Lorentz force. Conclusions Experimental measurements carried out in this study have verified the optimal orientation of ionization chamber in terms of minimizing effect of magnetic field on the chamber dose response. This study provides a detailed high‐resolution measurement of absolute k Q mag values for four reference class chambers as a function of the angle between ionization chamber’s central axis and the direction of strong magnetic field over a full 360° rotation. The experimental results of this study can further be used for optimization of the actual sensitive volume of the chamber (and analysis of dead volume) in future Monte Carlo chamber simulations in the presence of strong magnetic fields. In addition, it will provide some necessary data for future reference dosimetry protocols for MR‐linac.
机译:目的是测量电离室剂量响应作为磁场方向和磁共振引导辐射治疗(MRGRT)系统中的电离室取向的角度的函数,并评估磁场校正因子对参考剂量测定的角度依赖性。方法对ELEKTA MR-LINAC进行测量,该LIN-LINAC集成1.5-T飞普利普MRI和7-MV FFF光子束加速器。研究了四个参考类室(Exradin-A19,A1SL,IBA FC65-G和CC13,与PTW UE电镜配对)的响应。内部内置的MR兼容水箱和伴随的圆柱形插入件,允许围绕圆柱轴旋转的腔室旋转。 epid onboard成像用于MR-LINAC ISOcenter(143.5?cm,SAD)的中心室,以及验证每个数据点的位置。结果已经测量了所有腔室的剂量响应的明显角度依赖性。当腔室轴线垂直于磁场的方向时,在磁场的情况下观察到磁场存在在磁场存在下的相对室响应上的最显着效果。尖端指向与洛伦兹力相同的方向。对于较大的体积室,这种效果更加明显;腔室响应的最大相对变化(在上述设定和腔室和磁场平行的设定之间)分别为A19和FC65-G的5.3%和4.6%,仅为2.0%和1.9%较小的体积A1SL和CC13室。我们测量exradin-a19,a1sl,iba fc65-g和cc13的磁场校正因子k q mag的绝对幅度为0.938≤1.1.13%,0.968?±0.96%,0.950?±1.13 %,和0.975?±1.13%。该值用于腔室相对于磁场和平行于洛伦兹力的垂直取向。结论本研究中进行的实验测量已经验证了离子化室的最佳取向,以最小化磁场对腔室剂量反应的影响。该研究提供了四个参考类室的绝对k Qm值的详细高分辨率测量,其作为电离室的中心轴和完全360°旋转的强磁场方向之间的角度的函数。该研究的实验结果可以进一步用于优化在强大的磁场存在下未来的蒙特卡罗室模拟中的腔室(和死体分析)的实际敏感体积。此外,它将提供用于MR-LINAC的未来参考剂量协议的一些必要数据。

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