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基于视觉模型的迭代重建技术对大型低对比度物体CT图像质量的物理和视觉评估:体模研究

Physical and visual evaluations of CT image quality of large low-contrast objects with visual model-based iterative reconstruction technique: a phantom study.

作者信息

Shibata Hideki, Matsubara Kosuke, Asada Yasuki, Takemura Akihiro, Kozawa Isao

机构信息

Department of Radiological Technology, Toyota Kosei Hospital, 500-1 Ibobara Josui, Toyota, Aichi, 470-0396, Japan.

Department of Quantum Medical Technology, Division of Health Sciences, Graduate School of Medical Sciences, Kanazawa University, 5-11-80 Kodatsuno, Kanazawa, Ishikawa, 920-0942, Japan.

出版信息

Phys Eng Sci Med. 2023 Mar;46(1):141-150. doi: 10.1007/s13246-022-01205-4. Epub 2022 Dec 12.

Abstract

We aimed to verify whether the image quality of large low-contrast objects can be improved using visual model-based iterative reconstruction (VMR) while maintaining the visibility of conventional filtered back projection (FBP) and reducing radiation dose through physical and visual evaluation. A 64-row multi-slice CT system with SCENARIA View (FUJIFILM healthcare Corp. Tokyo, Japan) was used. The noise power spectrum (NPS), task-based transfer function (TTF), and signal-to-noise ratio (SNR) were physically evaluated. A low contrast object as a substitute for a liver mass was visually evaluated. In the noise measurement, STD1 showed an 18% lower noise compared to FBP. STR4 was able to reduce noise by 58% compared to FBP. The NPS of VMR was similar to those of FBP from low to high spatial frequency. The NPS of VMR reconstructions showed a similar variation with frequency as FBP reconstructions. STD1 showed the highest 10% TTF, and higher 10% TTF was observed with lower VMR level. The SNR of VMR was close to that of FBP, and higher SNR was observed with higher VMR level. In the results of the visual evaluation, there was no significant difference in visual evaluation between STD1 and FBP (p = 0.99) and between STD2 and FBP (p = 0.56). We found that the NPS of VMR images was similar to that of FBP images, and it can reduce noise and radiation dose by 25% and 50%, respectively, without decreasing the visual image quality compared to FBP.

摘要

我们旨在通过物理和视觉评估,验证使用基于视觉模型的迭代重建(VMR)能否在保持传统滤波反投影(FBP)可见性的同时,提高大的低对比度物体的图像质量,并降低辐射剂量。使用了配备SCENARIA View(富士胶片医疗保健公司,东京,日本)的64排多层CT系统。对噪声功率谱(NPS)、基于任务的传递函数(TTF)和信噪比(SNR)进行了物理评估。对作为肝脏肿块替代物的低对比度物体进行了视觉评估。在噪声测量中,STD1的噪声比FBP低18%。与FBP相比,STR4能够将噪声降低58%。从低空间频率到高空间频率,VMR的NPS与FBP的相似。VMR重建的NPS随频率的变化与FBP重建相似。STD1的TTF最高,为10%,较低的VMR水平观察到较高的10%的TTF。VMR的SNR与FBP接近,较高的VMR水平观察到较高的SNR。在视觉评估结果中,STD1与FBP之间(p = 0.99)以及STD2与FBP之间(p = 0.56)的视觉评估没有显著差异。我们发现,VMR图像的NPS与FBP图像相似,与FBP相比,它可以分别将噪声和辐射剂量降低25%和50%,而不会降低视觉图像质量。

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