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Pinhole X-ray fluorescence imaging of gadolinium and gold nanoparticles using polychromatic X-rays: a Monte Carlo study

机译:使用多色X射线对g和金纳米颗粒进行针孔X射线荧光成像:蒙特卡洛研究

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摘要

This work aims to develop a Monte Carlo (MC) model for pinhole K-shell X-ray fluorescence (XRF) imaging of metal nanoparticles using polychromatic X-rays. The MC model consisted of two-dimensional (2D) position-sensitive detectors and fan-beam X-rays used to stimulate the emission of XRF photons from gadolinium (Gd) or gold (Au) nanoparticles. Four cylindrical columns containing different concentrations of nanoparticles ranging from 0.01% to 0.09% by weight (wt%) were placed in a 5 cm diameter cylindrical water phantom. The images of the columns had detectable contrast-to-noise ratios (CNRs) of 5.7 and 4.3 for 0.01 wt% Gd and for 0.03 wt% Au, respectively. Higher concentrations of nanoparticles yielded higher CNR. For 1×1011 incident particles, the radiation dose to the phantom was 19.9 mGy for 110 kVp X-rays (Gd imaging) and 26.1 mGy for 140 kVp X-rays (Au imaging). The MC model of a pinhole XRF can acquire direct 2D slice images of the object without image reconstruction. The MC model demonstrated that the pinhole XRF imaging system could be a potential bioimaging modality for nanomedicine.
机译:这项工作的目的是开发一种使用多色X射线对金属纳米粒子进行针孔K壳X射线荧光(XRF)成像的蒙特卡洛(MC)模型。 MC模型包括二维(2D)位置敏感探测器和扇形束X射线,用于刺激从g(Gd)或金(Au)纳米粒子发射XRF光子。将四个包含浓度范围从0.01%到0.09%(重量)的纳米粒子的圆柱形圆柱放置在直径为5厘米的圆柱形水模中。对于0.01 wt%的Gd和0.03 wt%的Au,柱的图像分别具有5.7和4.3的可检测对比度-噪声比(CNR)。较高浓度的纳米颗粒产生较高的CNR。对于1×10 11 入射粒子,对体模的辐射剂量对于110 kVp X射线(Gd成像)为19.9 mGy,对于140 kVp X射线(Au成像)为26.1 mGy。针孔XRF的MC模型无需图像重建即可获取对象的直接2D切片图像。 MC模型表明,针孔XRF成像系统可能是纳米医学的潜在生物成像方式。

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