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视野大小和重建方法对单能量金属伪影降低的影响:一项体模研究。

Influence of field of view size and reconstruction methods on single-energy metal artifact reduction: a phantom study.

机构信息

Department of Central Radiology, Gifu Prefectural Gero Hot Spring Hospital, 2211 Mori, Gero, Gifu, 509-2292, Japan.

出版信息

Phys Eng Sci Med. 2022 Jun;45(2):637-642. doi: 10.1007/s13246-022-01130-6. Epub 2022 May 20.

Abstract

The purpose of this study was to evaluate the effect of single-energy metal artifact reduction (SEMAR) for metal artifacts using CT images reconstructed with adaptive iterative dose reduction three dimensional (AIDR3D) and advanced intelligent clear-IQ engine (AiCE) in calibration-field of view of various sizes. A prosthetic hip joint was arranged at the center of the phantom. The phantom images were scanned by changing calibration-field of view of 320 mm and 500 mm, and were reconstructed using filtered back-projection (FBP), AIDR3D, and AiCE with and without SEMAR, respectively. The metal artifact reduction with SEMAR was evaluated by calculated the relative artifact index value and visual scores in degree of artifact by seven radiology technologists. Relative artifact index of FBP, AIDR3D, and AiCE with 320 mm/500 mm calibration-field of views were 10.2/10.0, 16.3/16.4, and 17.8/17.9 without SEMAR, 3.3/3.1, 2.6/2.5, and 2.3/2.0 with SEMAR, respectively. Visual scores were not significantly different between 320 and 500 mm calibration-field of views in all reconstruction methods. The effect of metal artifact reduction was not affected by calibration-field of view sizes in the SEMAR combined with AIDR3D or AiCE.

摘要

本研究旨在评估在不同大小的校准视野中,使用自适应迭代剂量降低三维重建(AIDR3D)和高级智能清晰 IQ 引擎(AiCE)重建 CT 图像的单能量金属伪影降低(SEMAR)对金属伪影的影响。在体模的中心放置了一个假髋关节。通过改变校准视野为 320mm 和 500mm,对体模图像进行扫描,并分别使用滤波反投影(FBP)、AIDR3D 和 AiCE 进行重建,同时有无 SEMAR。由七位放射技师计算相对伪影指数值和视觉评分,评估 SEMAR 的金属伪影降低效果。在没有 SEMAR 的情况下,FBP、AIDR3D 和 AiCE 在 320mm/500mm 校准视野的相对伪影指数分别为 10.2/10.0、16.3/16.4 和 17.8/17.9,而有 SEMAR 的相对伪影指数分别为 3.3/3.1、2.6/2.5 和 2.3/2.0。在所有重建方法中,320 和 500mm 校准视野的视觉评分没有显著差异。在 SEMAR 结合 AIDR3D 或 AiCE 中,金属伪影降低的效果不受校准视野大小的影响。

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