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利用微剂量学和GEANT4研究12C微束场中的可变相对生物效应

INVESTIGATING VARIABLE RBE IN A 12C MINIBEAM FIELD WITH MICRODOSIMETRY AND GEANT4.

作者信息

Debrot Emily, Bolst David, James Benjamin, Tran Linh, Guatelli Susanna, Petasecca Marco, Prokopovich Dale A, Reinhard Mark, Matsufuji Naruhiro, Jackson Michael, Lerch Michael, Rosenfeld Anatoly B

机构信息

Centre for Medical Radiation Physics, University of Wollongong, Wollongong, NSW, Australia.

Australian Nuclear Science and Technology Organisation, Lucas Heights, NSW, Australia.

出版信息

Radiat Prot Dosimetry. 2019 May 1;183(1-2):160-166. doi: 10.1093/rpd/ncy234.

Abstract

An experimental and simulation-based study was performed on a 12C ion minibeam radiation therapy (MBRT) field produced with a clinical broad beam and a brass multi-slit collimator (MSC). Silicon-on-insulator (SOI) microdosimeters developed at the Centre for Medical Radiation Physics (CMRP) with micron sized sensitive volumes were used to measure the microdosimetric spectra at varying positions throughout the MBRT field and the corresponding dose-mean lineal energies and RBE for 10% cell survival (RBE10) were calculated using the modified Microdosimetric Kinetic Model (MKM). An increase in the average RBE10 of ∼30% and 10% was observed in the plateau region compared to broad beam for experimental and simulation values, respectively. The experimental collimator misalignment was determined to be 0.7° by comparison between measured and simulated microdosimetric spectra at varying collimator angles. The simulated dose-mean lineal energies in the valley region between minibeams were found to be higher on average than in the minibeams due to higher LET particles being produced in these regions from the MSC. This work presents the first experimental microdosimetry measurements and characterisation of the local biological effectiveness in a MBRT field.

摘要

对用临床宽束和黄铜多缝准直器(MSC)产生的12C离子微束放射治疗(MBRT)野进行了基于实验和模拟的研究。使用在医学辐射物理中心(CMRP)开发的具有微米级敏感体积的绝缘体上硅(SOI)微剂量计,在MBRT野的不同位置测量微剂量谱,并使用改进的微剂量动力学模型(MKM)计算相应的剂量平均线能量和10%细胞存活时的相对生物效应(RBE10)。与宽束相比,在高原区域实验值和模拟值的平均RBE10分别增加了约30%和10%。通过比较不同准直器角度下测量和模拟的微剂量谱,确定实验准直器的对准误差为0.7°。由于MSC在这些区域产生了更高线性能量转移(LET)的粒子,发现微束之间谷区的模拟剂量平均线能量平均高于微束中的剂量平均线能量。这项工作展示了首次在MBRT野中进行的实验微剂量测量以及局部生物效应的表征。

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