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首页> 外文期刊>Journal of Medical Physics/Association of Medical Physicists of India >Investigating the Electronic Portal Imaging Device for Small Radiation Field Measurements
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Investigating the Electronic Portal Imaging Device for Small Radiation Field Measurements

机译:调查用于小辐射场测量的电子门户成像装置

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Purpose: With the advent of state-of-the-art treatment technologies, the use of small fields has increased, and dosimetry in small fields is highly challenging. In this study, the potential use of Varian electronic portal imaging device (EPID) for small field measurements was explored for 6 and 15 MV photon beams. Materials and Methods: The output factors and profiles were measured for a range of jaw-collimated square field sizes starting from 0.8 cm × 0.8 cm to 10 cm × 10 cm using EPID. For evaluation purpose, reference data were acquired using Exradin A16 microionization chamber (0.007 cc) for output factors and stereotactic field diode for profile measurements in a radiation field analyzer. Results: The output factors of EPID were in agreement with the reference data for field sizes down to 2 cm × 2 cm and for 2 cm × 2 cm; the difference in output factors was +2.06% for 6 MV and +1.56% for 15 MV. For the lowest field size studied (0.8 cm × 0.8 cm), the differences were maximum; +16% for 6 MV and +23% for 15 MV photon beam. EPID profiles of both energies were closely matching with reference profiles for field sizes down to 2 cm × 2 cm; however, penumbra and measured field size of EPID profiles were slightly lower compared to its counterpart. Conclusions: EPID is a viable option for profile and output factor measurements for field sizes down to 2 cm × 2 cm in the absence of appropriate small field dosimeters.
机译:目的:随着最先进的治疗技术的出现,使用小型田地的使用增加,小型田地的剂量率是高度挑战性的。在该研究中,探讨了6和15MV光子束的varian电子门户成像装置(EPID)对小型场测量的潜在使用。材料和方法:使用EPID从0.8cm×0.8cm至10cm×10cm开始的钳口准直的方场尺寸范围测量输出因子和轮廓。对于评估目的,使用Exradin A16微曝光室(0.007CC)来获取参考数据,用于输出因子和辐射场分析仪中的轮廓测量的立体定向场二极管。结果:EPID的输出因子与场尺寸下降到2厘米×2cm的参考数据,2厘米×2cm;输出因子的差异为6 mV和15mV的+ 1.56%。对于所研究的最低场尺寸(0.8厘米×0.8厘米),差异最大;对于15mV光子束,+ 23%+ 16%+ 16%。两种能量的EPID概况与场尺寸下降到2厘米×2厘米的参考曲线密切相关;然而,与其对应物相比,Penumbra和EPID型材的测量字段大小略低。结论:EPID在没有适当的小型场剂量计的情况下为概况和输出因子测量为概况和输出因子测量值的可行选择。

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