Health Physics and Dosimetry Research Laboratory, Department of Energy Engineering and Physics, Amirkabir University of Technology, Tehran, Iran.
Health Physics and Dosimetry Research Laboratory, Department of Energy Engineering and Physics, Amirkabir University of Technology, Tehran, Iran.
Phys Med. 2022 Mar;95:167-175. doi: 10.1016/j.ejmp.2022.02.002. Epub 2022 Feb 17.
Whole-body photoneutron (PN) energy-specific dosimetry on phantom surfaces and 360°angular fast PN distribution dosimetry on and around polyethylene (PE) phantom organs for prostate cancer in 10 cm × 10 cm and 20 cm × 20 cm field sizes of 18 MV X-rays of Varian Clinac 2100C linear accelerator.
Novel "Sohrabi neutron dosimetry methods" including "miniature passive neutron dosimeter/spectrometer" and "strip polycarbonate neutron dosimeters" were applied. Energy-specific PN dose equivalents on surface as well as 360°fast PN dose equivalent angular distributions on and around PE phantom organs; head, neck, thorax, arms, pelvis, thighs and legs were determined.
Matrix of surface (skin) energy-specific PN dose equivalents including total thermal, total epithermal, total fast, sum total thermal + epithermal and sum total thermal + epithermal + fast, and 360°angular fast PN dose equivalent responses were determined. The results indicate that data matrix of 20 cm × 20 cm field size provides higher PN dose equivalent values than those of 10 cm × 10 cm field size for surface points even remote from the central axis and for all 360°angular fast PN dose equivalent distributions on organs studied.
Matrix of energy-specific PN dose equivalents was obtained demonstrating that the Sohrabi neutron dosimetry methods applied are unique for energy-specific PN dose equivalent studies as well as for 360°angular PN dose equivalent distribution data for PN-SPC risk estimation. The dosimetry methods can be specifically applied to many other exotic applications in health physics, medical physics, space flight dosimetry, and nuclear science and technology.
对瓦里安 Clinac 2100C 直线加速器 18MVX 射线 10cm×10cm 和 20cm×20cm 射野范围内,前列腺癌患者聚乙烯(PE)体模器官表面及 360°全方位快中子分布剂量进行全身光中子(PN)能谱特定剂量测定。
采用新型“索拉比中子剂量测定方法”,包括“微型无源中子剂量计/谱仪”和“条状聚碳酸酯中子剂量计”。测定表面特定 PN 剂量当量,以及 PE 体模器官表面及 360°全方位快中子分布剂量。
测定了表面(皮肤)特定 PN 剂量当量矩阵,包括总热中子、总超热中子、总快中子、热中子+超热中子总和、热中子+超热中子+快中子总和,以及 360°全方位快中子剂量当量响应。结果表明,20cm×20cm 射野尺寸的数据矩阵比 10cm×10cm 射野尺寸提供更高的 PN 剂量当量值,即使是远离中心轴的表面点,以及所有研究的器官的 360°全方位快中子分布剂量。
获得了特定 PN 剂量当量矩阵,表明所应用的索拉比中子剂量测定方法适用于特定 PN 剂量当量研究以及 PN-SPC 风险估计的 360°全方位 PN 剂量当量分布数据。该剂量测定方法可专门应用于健康物理学、医学物理学、空间飞行剂量测定以及核科学与技术中的许多其他特殊应用。