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X 射线荧光断层成像(XFCT)中优化谱-空间探测器配置的数量级灵敏度提高:理论与模拟。

Order of magnitude sensitivity increase in X-ray Fluorescence Computed Tomography (XFCT) imaging with an optimized spectro-spatial detector configuration: theory and simulation.

出版信息

IEEE Trans Med Imaging. 2014 May;33(5):1119-28. doi: 10.1109/TMI.2014.2305101.

Abstract

The purpose of this study was to increase the sensitivity of XFCT imaging by optimizing the data acquisition geometry for reduced scatter X-rays. The placement of detectors and detector energy window were chosen to minimize scatter X-rays. We performed both theoretical calculations and Monte Carlo simulations of this optimized detector configuration on a mouse-sized phantom containing various gold concentrations. The sensitivity limits were determined for three different X-ray spectra: a monoenergetic source, a Gaussian source, and a conventional X-ray tube source. Scatter X-rays were minimized using a backscatter detector orientation (scatter direction > 110(°) to the primary X-ray beam). The optimized configuration simultaneously reduced the number of detectors and improved the image signal-to-noise ratio. The sensitivity of the optimized configuration was 10 μg/mL (10 pM) at 2 mGy dose with the mono-energetic source, which is an order of magnitude improvement over the unoptimized configuration (102 pM without the optimization). Similar improvements were seen with the Gaussian spectrum source and conventional X-ray tube source. The optimization improvements were predicted in the theoretical model and also demonstrated in simulations. The sensitivity of XFCT imaging can be enhanced by an order of magnitude with the data acquisition optimization, greatly enhancing the potential of this modality for future use in clinical molecular imaging.

摘要

本研究旨在通过优化用于减少散射 X 射线的采集几何形状来提高 XFCT 成像的灵敏度。选择探测器的位置和探测器能量窗以最小化散射 X 射线。我们在一个包含不同金浓度的小鼠大小的模型上对这种优化的探测器配置进行了理论计算和蒙特卡罗模拟。对于三种不同的 X 射线光谱:单能源、高斯源和常规 X 射线管源,确定了灵敏度极限。使用背散射探测器方向(散射方向> 110°到初级 X 射线束)最小化散射 X 射线。优化后的配置同时减少了探测器的数量并提高了图像的信噪比。在 2 mGy 剂量下,使用单能源,优化后的配置的灵敏度为 10 μg/mL(10 pM),比未优化的配置提高了一个数量级(未优化时为 102 pM)。在高斯光谱源和常规 X 射线管源中也看到了类似的改进。在理论模型中预测了优化改进,并且在模拟中也得到了证明。通过数据采集优化,XFCT 成像的灵敏度可以提高一个数量级,极大地增强了该模态在未来临床分子成像中的应用潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/132b/4114314/e3f16972da3e/nihms603718f1.jpg

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