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Evaluation of Multileaf Collimator Effect on the Build-Up Dose Region Using Different Ionization Chambers

机译:使用不同的电离室评估多叶准直器对累积剂量区域的影响

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In the present work, we studied the effect of a multileaf collimator (MLC) on the build-up region. Ionization measurements (PDI) were performed in a water phantom for a 6 MV photon beam emerging from a Varian 2100C/D accelerator with a 120 - MILLENIUM MLC. We used two different detectors: a PTW 31002 cylindrical ionization chamber (IC) and a Roos parallel-plate chamber. Several MLC-JAWS configurations were investigated and the contribution of MLC for the build-up region was determined by comparing PDIs measured for MLC defined field sizes (from 2 x 2 to 10 x 10 cm~2) and the corresponding PDIs measured for open fields. Our results were also compared with previous Monte Carlo (MC) simulated depth dose curves for the same experimental set-up |l].The Roos chamber measured dose values agree with MC values within 2% for all MLC openings and depths greater than 2 mm. We observed differences of about 4% between the values measured with cylindrical IC and previous calculated MC values. A negligible effect (less than 1%) of the MLC on the build-up dose was observed for all MLC defined field sizes. Our measurements can not predict the MC calculated surface dose values.
机译:在当前的工作中,我们研究了多叶准直仪(MLC)对积聚区域的影响。电离测量(PDI)是在水模中对从带有120-Millennium MLC的Varian 2100C / D加速器发出的6 MV光子束进行的。我们使用了两种不同的检测器:PTW 31002圆柱电离室(IC)和Roos平行板室。研究了几种MLC-JAWS配置,并通过比较针对MLC定义的场大小(从2 x 2到10 x 10 cm〜2)测量的PDI和针对空旷场测量的相应PDI,确定了MLC对堆积区域的贡献。我们的结果也与以前的蒙特卡洛(MC)模拟深度剂量曲线进行了相同实验设置的比较[1]。对于所有MLC开口和大于2 mm的深度,Roos腔室的剂量值与MC值均在2%以内。我们观察到用圆柱形IC测量的值与先前计算的MC值之间的差异约为4%。对于所有MLC定义的字段大小,观察到的MLC对累积剂量的影响可忽略不计(小于1%)。我们的测量无法预测MC计算的表面剂量值。

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