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首页> 外文期刊>Advanced Biomedical Research >Dosimetry and evaluating the effect of treatment parameters on the leakage of multi leaf collimators in ONCOR linear accelerators
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Dosimetry and evaluating the effect of treatment parameters on the leakage of multi leaf collimators in ONCOR linear accelerators

机译:剂量学和评估处理参数对ONCOR直线加速器中多叶准直器泄漏的影响

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Background: One of the standard equipment in medical linear accelerators is multi-leaf collimators (MLCs); which is used as a replacement for lead shielding. MLC's advantages are a reduction of the treatment time, the simplicity of treatment, and better dose distribution. The main disadvantage of MLC is the radiation leakages from the edges and between the leaves. The purpose of this study was to determine the effect of various treatment parameters in the magnitude of MLC leakage in linear accelerators. Materials and Methods: This project was performed with ONCOR Siemens linear accelerators. The amount of radiation leakage was determined by film dosimetry method. The films were Kodak-extended dose range-2, and the beams were 6 MV and 18 MV photons. In another part of the experiment, the fluctuation of the leakage was measured at various depths and fields. Results: The amount of leakage was generally up to 1.5 ± 0.2% for both energies. The results showed that the level of the leakage and the amount of dose fluctuation depends on the field size and depth of measurement. The amount of the leakage fluctuations in all energies was decreased with increasing of field size. The variation of the leakage versus field size was similar to the inverse of scattering collimator factor. Conclusions: The amount of leakage was more for 18 MV compare to 6 MV The percentage of the leakage for both energies is less than the 5% value which is recommended by protocols. The fluctuation of the MLC leakage reduced by increasing the field size and depth.
机译:背景技术:医用直线加速器的标准设备之一是多叶准直器(MLC)。用作铅屏蔽的替代品。 MLC的优势在于减少了治疗时间,简化了治疗方法并改善了剂量分配。 MLC的主要缺点是边缘和叶片之间的辐射泄漏。这项研究的目的是确定线性加速器中各种处理参数对MLC泄漏量的影响。材料和方法:该项目是使用ONCOR Siemens线性加速器进行的。辐射泄漏量通过薄膜剂量法确定。膜的柯达扩展剂量范围为2,光束为6 MV和18 MV光子。在实验的另一部分中,在各种深度和视野下测量泄漏的波动。结果:两种能量的泄漏量通常高达1.5±0.2%。结果表明,泄漏水平和剂量波动量取决于视野大小和测量深度。随着场尺寸的增加,所有能量的泄漏波动量减小。泄漏对场大小的变化类似于散射准直器因子的倒数。结论:18 MV的泄漏量比6 MV的泄漏量大。两种能量的泄漏百分比均小于协议推荐的5%值。 MLC泄漏的波动通过增加场大小和深度来减小。

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