Chuah K W, Abdul Aziz M Z, Jayamani J
Medical Radiation Programme, School of Health Sciences, Health Campus, Universiti Sains Malaysia, 16150 Kubang Kerian, Kelantan, Malaysia.
Department of Biomedical Imaging, Advanced Medical and Dental Institute, Universiti Sains Malaysia, 13200 Kepala Batas, Pulau Pinang, Malaysia.
J Med Phys. 2022 Jul-Sep;47(3):301-308. doi: 10.4103/jmp.jmp_40_22. Epub 2022 Nov 8.
Accuracy of ionization chamber (IC) to measure the scatter output factor (S) of a linear accelerator (linac) is crucial, especially in small field (<4 cm × 4 cm). The common IC volume of 0.6 cc is not adequate for small-field measurement and not all radiotherapy centers can afford to purchase additional IC due to the additional cost. This study aimed to determine the efficiency of the EGSnrc Monte Carlo (MC) to calculate the S for various field sizes including small field in Elekta Synergy (Agility multileaf collimator) linac. The BEAMnrc and DOSXYZnrc user codes were used to simulate a 6 MV linac model for various field sizes and calculate the radiation dose output in water phantom. The modeled linac treatment head was validated by comparing the percentage depth dose (PDD), beam profile, and beam quality (Tissue Phantom Ratio (TPR)) with the IC measurement. The validated linac model was simulated to calculate the S consisting of collimator scatter factor (S) and phantom scatter factor (S). The PDD and beam profile of the simulated field sizes were within a good agreement of ±2% compared with the measured data. The TPR value was 0.675 for field size 10 cm × 10 cm. The S, S, and S simulated values were close to the IC measurement within ±2% difference. The simulation for S and S in 3 cm × 3 cm field size was calculated to be 0.955 and 0.884, respectively. In conclusion, this study validated the efficiency of the MC simulation as a promising tool for the S calculation including small-field size for linac.
电离室(IC)测量直线加速器(直线加速器)散射输出因子(S)的准确性至关重要,尤其是在小射野(<4 cm×4 cm)中。常见的0.6 cc电离室体积不足以进行小射野测量,并且由于额外成本,并非所有放疗中心都能负担得起购买额外的电离室。本研究旨在确定EGSnrc蒙特卡罗(MC)计算包括医科达Synergy(敏捷多叶准直器)直线加速器中小射野在内的各种射野大小的S的效率。使用BEAMnrc和DOSXYZnrc用户代码模拟各种射野大小的6 MV直线加速器模型,并计算水模体中的辐射剂量输出。通过将百分深度剂量(PDD)、射野轮廓和射野质量(组织模体比(TPR))与电离室测量值进行比较,对模拟的直线加速器治疗头进行了验证。对经过验证的确直线加速器模型进行模拟,以计算由准直器散射因子(S)和模体散射因子(S)组成的S。与测量数据相比,模拟射野大小的PDD和射野轮廓在±2%的良好一致性范围内。对于10 cm×10 cm的射野大小,TPR值为0.675。模拟的S、S和S值与电离室测量值接近,差异在±2%以内。对于3 cm×3 cm射野大小的S和S模拟值分别计算为0.955和0.884。总之,本研究验证了MC模拟作为一种有前景的工具用于计算直线加速器包括小射野大小的S的效率。