Zabihzadeh Mansour, Birgani Mohammad Javad Tahmasebi, Hoseini-Ghahfarokhi Mojtaba, Arvandi Sholeh, Hoseini Seyed Mohammad, Fadaei Mahbube
Department of Medical Physics, Faculty of Medicine, Ahvaz Jundishapur University of Medical Sciences, Ahvaz, Iran E-mail :
Asian Pac J Cancer Prev. 2016;17(4):1685-9. doi: 10.7314/apjcp.2016.17.4.1685.
Physical wedges still can be used as missing tissue compensators or filters to alter the shape of isodose curves in a target volume to reach an optimal radiotherapy plan without creating a hotspot. The aim of this study was to investigate the dosimetric properties of physical wedges filters such as off-axis photon fluence, photon spectrum, output factor and half value layer. The photon beam quality of a 6 MV Primus Siemens modified by 150 and 450 physical wedges was studied with BEAMnrc Monte Carlo (MC) code. The calculated present depth dose and dose profile curves for open and wedged photon beam were in good agreement with the measurements. Increase of wedge angle increased the beam hardening and this effect was more pronounced at the heal region. Using such an accurate MC model to determine of wedge factors and implementation of it as a calculation algorithm in the future treatment planning systems is recommended.
物理楔形板仍可作为组织缺损补偿器或滤波器,用于改变靶区内等剂量曲线的形状,以实现最佳放疗计划,同时不产生热点。本研究的目的是研究物理楔形板滤波器的剂量学特性,如离轴光子注量、光子能谱、输出因子和半值层。使用BEAMnrc蒙特卡罗(MC)代码研究了经150和450物理楔形板修正的6 MV西门子Primus光子束的质量。计算得到的开放和楔形光子束的当前深度剂量和剂量分布曲线与测量结果吻合良好。楔形角的增加会增加束硬化,这种效应在楔形板的高剂量区更为明显。建议使用这种精确的MC模型来确定楔形因子,并将其作为一种计算算法应用于未来的治疗计划系统中。