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Current progress of the biological single-ion microbeam at FUDAN

机译:复旦生物单离子微束研究进展

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A biological microbeam for precisely positioned single-ion/single cell irradiation is built in the Institute of Modern Physics in Fudan University, Shanghai, China, based on the tandem accelerator (2 × 3MV) in the laboratory. In this paper, the developing progress of the FUDAN microbeam is reported, including the newly constructed beam line, the microbeam collimator, the ion detection system, and the cell-imaging and targeting systems. Statistical models are proposed for evaluating the spatial resolution and dosage precision of the microbeam. By taking the collimated ions as a Gaussian beam, the spatial resolution can be evaluated by the full width at half maximum of the 2-D Gaussian distribution, which is determined by fitting the proportions of peripheral pits outside specific radii in the pit clusters etched on ion track detectors to a 2-D Gaussian distribution. In the preset hitting of defined ion number, by taking the real delivered number of ions as an independent identically distributed random variable (iidrv), according to the Law of Large Numbers and Central Limit Theorem, the expected value μ and standard deviation σ of the real delivered ion number in a preset N-ion hitting can be determined by approaching the normal distribution of N (μ, σ 2) with the proportions of the mean counts of pits in multiple pit clusters on ion track detectors. By the values of μ, σ and additional assumptions, statistical dosage precision evaluations can be made on the preset hitting. From the linear fit curve of μ(N) and the power function fit curve of σ(N) on different preset ion numbers, characteristic factors k, b, A, p can be extracted for a precision evaluation independent of the specific preset ion number.
机译:上海复旦大学现代物理研究所在实验室的串联加速器(2×3MV)的基础上,构建了用于精确定位单离子/单细胞辐射的生物微束。本文报道了FUDAN微束的发展进展,包括新建的束线,微束准直仪,离子检测系统以及细胞成像和靶向系统。提出了统计模型来评估微束的空间分辨率和剂量精度。通过将准直离子作为高斯束,可以通过二维高斯分布的半峰全宽来评估空间分辨率,该宽度是通过将特定半径之外的外围凹坑的比例拟合到蚀刻的凹坑簇中来确定的离子径迹检测器的二维高斯分布。在预先定义的离子数命中中,根据大数定律和中心极限定理,通过将离子的实际传递数作为一个独立的均匀分布的随机变量(iidrv),将期望值μ和标准偏差σ预设N离子撞击中的实际传递离子数可以通过以N的正态分布(μ,σ 2 / n)接近正态分布的方式确定,其中N个正负离子撞击时,离子跟踪检测器。通过μ,σ值和其他假设,可以对预设击中进行统计剂量精度评估。从μ(N)的线性拟合曲线和σ(N)的幂函数拟合曲线在不同的预设离子数上,可以提取特征因子k,b,A,p,以进行精确评估,而与特定的预设离子数无关。

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