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Image quality optimization and evaluation of linearly mixed images in dual-source, dual-energy CT

机译:双源双能CT中线性混合图像的图像质量优化和评估

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摘要

In dual-source dual-energy CT, the images reconstructed from the low- and high-energy scans (typically at 80 and 140 kV, respectively) can be mixed together to provide a single set of non-material-specific images for the purpose of routine diagnostic interpretation. Different from the material-specific information that may be obtained from the dual-energy scan data, the mixed images are created with the purpose of providing the interpreting physician a single set of images that have an appearance similar to that in single-energy images acquired at the same total radiation dose. In this work, the authors used a phantom study to evaluate the image quality of linearly mixed images in comparison to single-energy CT images, assuming the same total radiation dose and taking into account the effect of patient size and the dose partitioning between the low-and high-energy scans. The authors first developed a method to optimize the quality of the linearly mixed images such that the single-energy image quality was compared to the best-case image quality of the dual-energy mixed images. Compared to 80 kV single-energy images for the same radiation dose, the iodine CNR in dual-energy mixed images was worse for smaller phantom sizes. However, similar noise and similar or improved iodine CNR relative to 120 kV images could be achieved for dual-energy mixed images using the same total radiation dose over a wide range of patient sizes (up to 45 cm lateral thorax dimension). Thus, for adult CT practices, which primarily use 120 kV scanning, the use of dual-energy CT for the purpose of material-specific imaging can also produce a set of non-material-specific images for routine diagnostic interpretation that are of similar or improved quality relative to single-energy 120 kV scans.
机译:在双源双能CT中,可以将通过低能和高能扫描(通常分别在80 kV和140 kV下)重建的图像混合在一起,从而提供一组非特定于材料的图像常规诊断解释。与可以从双能量扫描数据中获得的特定于材料的信息不同,创建混合图像的目的是为口译医生提供单组图像,其外观类似于所采集的单能量图像中的外观在相同的总辐射剂量下。在这项工作中,作者使用幻像研究评估了线性混合图像与单能CT图像相比的图像质量,假设总辐射剂量相同,并考虑了患者体型的影响以及低剂量之间的剂量分配-和高能扫描。作者首先开发了一种优化线性混合图像质量的方法,以便将单能图像质量与双能混合图像的最佳情况图像质量进行比较。与相同辐射剂量下的80 kV单能量图像相比,双能量混合图像中的碘CNR对于较小的体模尺寸较差。但是,对于双能量混合图像,使用相同的总辐射剂量,在宽范围的患者尺寸范围内(最大胸部横向尺寸为45 cm),可以实现相对于120 kV图像的相似噪声和相似或改进的碘CNR。因此,对于主要使用120 kV扫描的成人CT做法,使用双能CT进行材料特定成像的目的,也可以产生一组非材料特定图像,用于常规诊断解释,这些图像具有相似或相似的含义。与单能量120 kV扫描相比,质量得到了改善。

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