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Investigating the effect of characteristic x-rays in cadmium zinc telluride detectors under breast computerized tomography operating conditions

机译:研究乳腺计算机断层摄影操作条件下碲化镉锌检测器中特征X射线的影响

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摘要

A number of research groups have been investigating the use of dedicated breast computerized tomography (CT). Preliminary results have been encouraging, suggesting an improved visualization of masses on breast CT as compared to conventional mammography. Nonetheless, there are many challenges to overcome before breast CT can become a routine clinical reality. One potential improvement over current breast CT prototypes would be the use of photon counting detectors with cadmium zinc telluride (CZT) (or CdTe) semiconductor material. These detectors can operate at room temperature and provide high detection efficiency and the capability of multi-energy imaging; however, one factor in particular that limits image quality is the emission of characteristic x-rays. In this study, the degradative effects of characteristic x-rays are examined when using a CZT detector under breast CT operating conditions. Monte Carlo simulation software was used to evaluate the effect of characteristic x-rays and the detector element size on spatial and spectral resolution for a CZT detector used under breast CT operating conditions. In particular, lower kVp spectra and thinner CZT thicknesses were studied than that typically used with CZT based conventional CT detectors. In addition, the effect of characteristic x-rays on the accuracy of material decomposition in spectral CT imaging was explored. It was observed that when imaging with 50-60 kVp spectra, the x-ray transmission through CZT was very low for all detector thicknesses studied (0.5–3.0 mm), thus retaining dose efficiency. As expected, characteristic x-ray escape from the detector element of x-ray interaction increased with decreasing detector element size, approaching a 50% escape fraction for a 100 μm size detector element. The detector point spread function was observed to have only minor degradation with detector element size greater than 200 μm and lower kV settings. Characteristic x-rays produced increasing distortion in the spectral response with decreasing detector element size. If not corrected for, this caused a large bias in estimating tissue density parameters for material decomposition. It was also observed that degradation of the spectral response due to characteristic x-rays caused worsening precision in the estimation of tissue density parameters. It was observed that characteristic x-rays do cause some degradation in the spatial and spectral resolution of thin CZT detectors operating under breast CT conditions. These degradations should be manageable with careful selection of the detector element size. Even with the observed spectral distortion from characteristic x-rays, it is still possible to correctly estimate tissue parameters for material decomposition using spectral CT if accurate modeling is used.
机译:许多研究小组已经在研究专用乳房计算机断层扫描(CT)的使用。初步结果令人鼓舞,表明与常规乳房X线摄影术相比,乳腺CT上的肿块可视化得到了改善。尽管如此,在乳腺CT成为常规临床现实之前,仍有许多挑战需要克服。与当前的胸部CT原型相比,一种潜在的改进是使用具有碲化镉锌(CZT)(或CdTe)半导体材料的光子计数检测器。这些探测器可以在室温下工作,并具有很高的探测效率和多能量成像能力;但是,特别是限制图像质量的一个因素是特征X射线的发射。在这项研究中,当在胸部CT操作条件下使用CZT检测器时,检查了特征X射线的降解作用。蒙特卡罗模拟软件用于评估在胸部CT操作条件下使用的CZT探测器的特征X射线和探测器元件尺寸对空间和光谱分辨率的影响。尤其是,与基于CZT的常规CT检测器通常使用的kVp光谱相比,研究了更低的kVp光谱和更薄的CZT厚度。此外,还探索了特征X射线对光谱CT成像中材料分解精度的影响。可以观察到,当使用50-60 kVp光谱成像时,对于所研究的所有检测器厚度(0.5–3.0?mm),通过CZT的X射线透射率都非常低,因此保持了剂量效率。不出所料,随着探测器元件尺寸的减小,来自探测器元件的X射线相互作用的特征X射线逸出量增加,对于100μm尺寸的探测器元件,其逸出率接近50%。当检测器元件尺寸大于200μm且kV设置较低时,观察到的检测器点扩散函数仅有很小的下降。特征X射线随着检测器元件尺寸的减小,使光谱响应中的失真增加。如果不进行校正,这会在估计用于材料分解的组织密度参数时造成很大的偏差。还观察到,由于特征X射线而引起的光谱响应的下降导致组织密度参数的估计精度下降。观察到,特征X射线确实会导致在乳腺CT条件下工作的薄型CZT检测器的空间和光谱分辨率下降。通过仔细选择检测器元件的尺寸,可以控制这些劣化。即使使用了特征X射线观察到的光谱畸变,如果使用精确的建模,仍然可以使用光谱CT正确估计组织参数以进行材料分解。

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