论文标题
结合光谱CT采集方法,用于高敏性材料分解
Combining Spectral CT Acquisition Methods for High-Sensitivity Material Decomposition
论文作者
论文摘要
通过光谱CT和材料分解使对比剂浓度的定量估计成为可能。有几种方法可以调节成像系统的灵敏度,以获得分解所需的不同光谱通道。能够使这种不同灵敏度的光谱CT技术包括源KV开关,双层检测器和源端滤波(例如,瓷砖空间光谱过滤器)。在这项工作中,我们使用先进的物理模型来模拟这三种频谱CT策略以及使用两种或三种策略的所有组合进行混合采集。我们将基于模型的材料分解应用于0.1至5.0 mg/ml的碘浓度的水 - 碘幻像。我们为光谱技术的不同组合提供了偏见,并表明组合方法可以在光谱敏感性方面进行多样性,并改善相对于单独应用的策略,提高了低浓度成像性能。更好的估计造影剂浓度低的能力有可能减少与对比度给药相关的风险(通过降低剂量)或将成像应用扩展到吸收较低的目标。
Quantitative estimation of contrast agent concentration is made possible by spectral CT and material decomposition. There are several approaches to modulate the sensitivity of the imaging system to obtain the different spectral channels required for decomposition. Spectral CT technologies that enable this varied sensitivity include source kV-switching, dual-layer detectors, and source-side filtering (e.g., tiled spatial-spectral filters). In this work, we use an advanced physical model to simulate these three spectral CT strategies as well as hybrid acquisitions using all combinations of two or three strategies. We apply model-based material decomposition to a water-iodine phantom with iodine concentrations from 0.1 to 5.0 mg/mL. We present bias-noise plots for the different combinations of spectral techniques and show that combined approaches permit diversity in spectral sensitivity and improve low concentration imaging performance relative to the those strategies applied individually. Better ability to estimate low concentrations of contrast agent has the potential to reduce risks associated with contrast administration (by lowering dosage) or to extend imaging applications into targets with much lower uptake.