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Multi-layer imager design for mega-voltage spectral imaging

机译:用于兆伏频谱成像的多层成像器设计

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摘要

The architecture of multi-layer imagers (MLIs) can be exploited to provide megavoltage spectral imaging (MVSPI) for specific imaging tasks. In the current work, we investigated bone suppression and gold fiducial contrast enhancement as two clinical tasks which could be improved with spectral imaging. A method based on analytical calculations that enables rapid investigation of MLI component materials and thicknesses was developed and validated against Monte Carlo computations. The figure of merit for task-specific imaging performance was the contrast-to-noise ratio (CNR) of the gold fiducial when the CNR of bone was equal to zero after a weighted subtraction of the signals obtained from each MLI layer. Results demonstrated a sharp increase in the CNR of gold when the build-up component or scintillation materials and thicknesses were modified. The potential for low-cost, prompt implementation of specific modifications (e.g. composition of the build-up component) could accelerate clinical translation of MVSPI.
机译:可以利用多层成像器(MLI)的体系结构为特定成像任务提供兆伏频谱成像(MVSPI)。在当前的工作中,我们研究了骨抑制和金基准对比增强作为两个临床任务,可以通过频谱成像来改善它们。开发了一种基于分析计算的方法,该方法能够快速研究MLI组件的材料和厚度,并针对Monte Carlo计算进行了验证。特定任务的成像性能的优值是在加权减去从每个MLI层获得的信号后,骨骼的CNR等于零时金基准的对比噪声比(CNR)。结果表明,当改变堆积成分或闪烁材料和厚度时,金的CNR急剧增加。低成本,迅速实施特定修改(例如,构建组件的组成)的潜力可能会加快MVSPI的临床翻译。

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