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Cone-beam CT with a flat-panel imager: noise considerations for fully 3D computed tomography

机译:带有平板成像仪的锥形束CT:全3D计算机断层扫描的噪声注意事项

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Abstract: Application of flat-panel imagers (FPIs) in cone-beam computed tomography (CBCT) offers a promising new modality for full three-dimensional (3-D) x-ray imaging. Understanding the potential performance and fundamental limitations of such technology, however, requires knowledge of the noise characteristics of the 3-D imaging system. The noise performance of a prototype flat-panel cone-beam CT (FPI-CBCT) system is investigated empirically and theoretically in terms of voxel noise, noise-power spectrum (NPS), and detective quantum efficiency (DQE). Methods for NPS analysis common in characterizing 2-D imagers are extended to the fully 3-D case, and a general framework for NPS analysis in n dimensions is presented, including the important considerations of NPS convergence and normalization within the constraints of system linearity and stationarity. Factors affecting imager noise and NPS are numerous, including exposure, number of views, image blur, additive noise, reconstruction filter, and sampling matrix. The applicability of existing theoretical descriptions of CT voxel noise is examined. A theoretical cascaded systems model that accurately predicts the 2-D noise characteristics of the FPI is extended to describe the signal and noise transfer characteristics of the fully 3-D FPI-CBCT system employing filtered back-projection. Analysis of the fully 3-D NPS reveals features of the 3-D imaging system that might otherwise be missed and shows the significant effect of 3-D noise aliasing. Furthermore, it quantifies the performance of various FPI designs in CBCT (e.g., direct and indirect detectors, and variations therein) and provides a guide for the development of high-performance FPI-CBCT systems suited to specific clinical objectives. !9
机译:摘要:平板成像器(FPI)在锥束计算机断层扫描(CBCT)中的应用为全三维(3-D)X射线成像提供了一种有希望的新形式。然而,了解这种技术的潜在性能和基本局限性需要了解3-D成像系统的噪声特性。从体素噪声,噪声功率谱(NPS)和探测量子效率(DQE)方面,根据经验和理论研究了原型平板锥束CT(FPI-CBCT)系统的噪声性能。表征2-D成像器常用的NPS分析方法扩展到了全3-D情况,并提出了n维NPS分析的通用框架,包括在系统线性度和线性约束范围内对NPS收敛和归一化的重要考虑。平稳性。影响成像仪噪声和NPS的因素很多,包括曝光度,观看次数,图像模糊,附加噪声,重构滤波器和采样矩阵。审查了现有的CT体素噪声理论描述的适用性。可以准确地预测FPI的2-D噪声特性的理论级联系统模型得到扩展,以描述采用滤波反投影的全3-D FPI-CBCT系统的信号和噪声传递特性。对全3-D NPS的分析揭示了3-D成像系统的功能,否则这些功能可能会被遗漏,并显示了3-D噪声混叠的显着效果。此外,它量化了CBCT中各种FPI设计的性能(例如,直接和间接检测器以及其中的变化),并为开发适合特定临床目标的高性能FPI-CBCT系统提供了指南。 !9

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