Aminafshar Behzad, Baghani Hamid Reza, Mowlavi Ali Asghar
Physics Department, Hakim Sabzevari University, Daneshgah Blvd, P.O. 9617976487, Sabzevar, Iran.
Radiol Phys Technol. 2024 Sep;17(3):745-755. doi: 10.1007/s12194-024-00816-8. Epub 2024 Jun 1.
Proton dose calculation in media other than water may be of interest for either research purposes or clinical practice. Current study aims to quantify the required parameters for analytical proton dosimetry in muscle, bone, and PMMA. Required analytical dosimetry parameters were extracted from ICRU-49 report and Janni study. Geant4 Toolkit was also used for Bragg curve simulation inside the investigated media at different proton energies. Calculated and simulated dosimetry data were compared using gamma analysis. Simulated and calculated Bragg curves are consistent, a fact that confirms the validity of reported parameters for analytical proton dosimetry inside considered media. Furthermore, derived analytical parameters for these media are different from those of water. Listed parameters can be reliably utilized for analytical proton dosimetry inside muscle, bone, and PMMA. Furthermore, accurate proton dosimetry inside each medium demands dedicated analytical parameters and one is not allowed to use the water coefficients for non-water media.
对于研究目的或临床实践而言,在除水之外的介质中进行质子剂量计算可能会有意义。当前的研究旨在量化在肌肉、骨骼和聚甲基丙烯酸甲酯(PMMA)中进行分析质子剂量测定所需的参数。所需的分析剂量测定参数是从ICRU - 49报告和詹尼研究中提取的。还使用了Geant4工具包来模拟不同质子能量下所研究介质内部的布拉格曲线。使用伽马分析比较了计算得到的和模拟的剂量测定数据。模拟的和计算得到的布拉格曲线是一致的,这一事实证实了所报告的用于所考虑介质内部分析质子剂量测定的参数的有效性。此外,这些介质的导出分析参数与水的不同。列出的参数可可靠地用于肌肉、骨骼和PMMA内部的分析质子剂量测定。此外,每种介质内部准确的质子剂量测定需要专用的分析参数,不允许将水的系数用于非水介质。