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Simulation of scanner- and patient-specific low-dose CT imaging from existing CT images

机译:从现有CT图像模拟扫描仪和患者特定的低剂量CT成像

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摘要

Purpose: Simulating low-dose Computed Tomography (CT) facilitates in-silico studies into the required dose for a diagnostic task. Conventionally, low-dose CT images are created by adding noise to the projection data. However, in practice the raw data is often simply not available. This paper presents a new method for simulating patient-specific, low-dose CT images without the need of the original projection data. Methods: The low-dose CT simulation method included the following: (1) computation of a virtual sino-gram from a high dose CT image through a radon transform; (2) simulation of a 'reduced'-dose sinogram with appropriate amounts of noise; (3) subtraction of the high-dose virtual sinogram from the reduced-dose sinogram; (4) reconstruction of a noise volume via filtered back-projection; (5) addition of the noise image to the original high-dose image. The required scanner-specific parameters, such as the apodization window, bowtie filter, the X-ray tube output parameter (reflecting the photon flux) and the detector read-out noise, were retrieved from calibration images of a water cylinder. The low-dose simulation method was evaluated by comparing the noise characteristics in simulated images with experimentally acquired data. Results: The models used to recover the scanner-specific parameters fitted accurately to the calibration data, and the values of the parameters were comparable to values reported in literature. Finally, the simulated low-dose images accurately reproduced the noise characteristics in experimentally acquired low-dose-volumes. Conclusion: The developed methods truthfully simulate low-dose CT imaging for a specific scanner and reconstruction using filtered backprojection. The scanner-specific parameters can be estimated from calibration data. (C) 2017 Published by Elsevier Ltd on behalf of Associazione Italiana di Fisica Medica
机译:目的:模拟低剂量计算机断层扫描(CT)有助于对诊断任务所需剂量进行计算机内研究。传统上,低剂量的CT图像是通过将噪声添加到投影数据中来创建的。但是,实际上,原始数据通常根本不可用。本文提出了一种无需原始投影数据即可模拟特定于患者的低剂量CT图像的新方法。方法:低剂量CT模拟方法包括以下内容:(1)通过radon变换从高剂量CT图像计算虚拟正弦图; (2)模拟带有适当噪声量的“减少”剂量正弦图; (3)从减少剂量的正弦图中减去大剂量的虚拟正弦图; (4)通过滤波后的反投影重建噪声量; (5)将噪声图像添加到原始高剂量图像中。从水缸的校准图像中检索所需的特定于扫描仪的参数,例如切趾窗,领结滤波器,X射线管输出参数(反映光子通量)和检测器读出的噪声。通过将模拟图像中的噪声特征与实验获得的数据进行比较,来评估低剂量模拟方法。结果:用于恢复特定于扫描仪的参数的模型准确地适合了校准数据,并且这些参数的值与文献中报道的值相当。最后,模拟的低剂量图像可准确再现实验获得的低剂量体积中的噪声特征。结论:所开发的方法能够真实地模拟特定扫描仪的低剂量CT成像,并使用过滤后的投影进行重建。可以根据校准数据估算扫描仪特定的参数。 (C)2017年由Elsevier Ltd代表意大利医疗保险联合会发布

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