COPPER NANOPARTICLES FOR IONIZING RADIATION DOSIMETRY FOR THERANOSTICS

IF 0.1 Q4 PHYSICS, MULTIDISCIPLINARY Anales AFA Pub Date : 2023-09-28 DOI:10.31527/analesafa.2023.34.3.55
S. Lechón Páez, G. Tubon Usca
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Abstract

The present investigation is focused on the effect of copper nanoparticles infused in a PAGAT dosimetry system. Monte Carlo simulations using the PENELOPE code were employed to analyze a system composed of stabilized copper nanoparticles coated with ascorbic acid. The system was subjected to irradiation with a 150 keV monoenergetic photon beam, representative of orthovoltage applications. The study evaluated the influence of three key factors: the size of the copper nanoparticle (ranging from 10 to 300 nm), the coating thickness (ranging from 25 to 400 nm), and the coating density (ranging from 1.162 to 1.650 g/mL). The findings indicate a slight increase in dose enhancement with increasing nanoparticle size. Conversely, an increase in stabilizer thickness leads to a decrease in dose enhancement in the PAGAT system. The effect of changes in stabilizer density on dose enhancement is found to be less significant. Additionally, the photon fluence spectrum was analyzed for the three studied cases to identify and evaluate the characteristic fluorescence lines of copper. This analysis confirms the presence of characteristic X-rays derived from the presence of copper. nanoparticles, which could potentially serve as a foundation for specific imaging techniques
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治疗学电离辐射剂量测定用铜纳米粒子
本文主要研究了铜纳米颗粒在PAGAT剂量测定系统中的作用。利用PENELOPE代码进行蒙特卡罗模拟,分析了由涂有抗坏血酸的稳定铜纳米粒子组成的系统。该系统受到150 keV单能光子束的辐照,代表了正电压应用。该研究评估了三个关键因素的影响:铜纳米颗粒的尺寸(范围从10到300 nm)、涂层厚度(范围从25到400 nm)和涂层密度(范围从1.162到1.650 g/mL)。研究结果表明,随着纳米颗粒大小的增加,剂量增强略有增加。相反,稳定剂厚度的增加导致PAGAT系统中剂量增强的减少。稳定剂密度的变化对剂量增强的影响不太显著。此外,对3个研究案例的光子通量光谱进行了分析,以鉴定和评价铜的特征荧光谱线。这一分析证实了由于铜的存在而产生的特征x射线的存在。纳米粒子,它有可能成为特定成像技术的基础
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来源期刊
Anales AFA
Anales AFA PHYSICS, MULTIDISCIPLINARY-
CiteScore
0.40
自引率
0.00%
发文量
43
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