钛腕假体金属伪影的评估:光子计数与能量积分检测器CT。

IF 3.7 Q1 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING
Nina Kämmerling, Simon Farnebo, Mårten Sandstedt, Ronald Booij, Anders Persson, Erik Tesselaar
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引用次数: 0

摘要

背景:我们比较了光子计数检测器计算机断层扫描(PCD-CT)多能图像、PCD-CT虚拟单能图像(VMI)和能量积分检测器计算机断层扫描(EID-CT)多能图像对钛腕假体患者骨可视化和金属伪影的影响。方法:经伦理批准,对15例患者行PCD-CT和EID-CT检查。重建多能图像,并对PCD-CT进行130 kev的VMI。5名放射科医生使用7分顺序量表评估骨可视化、金属-骨界面可解释性和金属人工制品。定量评估条纹伪影和骨-金属界面伪影。采用Friedman检验和事后检验的单因素方差分析分析图像设置之间的差异。结果:与VMI(5,3 -7)相比,PCD-CT多能图像的骨显像优于VMI(中位评分6,范围3-7);p结论:使用130 kev的PCD-CT VMI可减少钛腕假体的条纹伪影,而使用PCD-CT多能图像可获得最高的骨显像。相关声明:在腕部植入物患者中,光子计数检测器CT允许使用虚拟单能图像有效地减少金属伪影,并使用多能图像改善骨可视化。由于多能量图像和VMI具有不同的优点,因此访问这两种图像设置可能有利于诊断评估。重点:虚拟单能图像(VMI)显示了金属条纹伪影的大幅减少。与VMI相比,多能图像在骨成像中表现出更好的图像质量。根据诊断任务,应优先选择图像重建的组合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Assessment of metal artifacts from titanium wrist prostheses: photon-counting versus energy-integrating detector CT.

Background: We compared photon-counting detector computed tomography (PCD-CT) polyenergetic images, PCD-CT virtual monoenergetic images (VMI), and energy-integrating detector computed tomography (EID-CT) polyenergetic images regarding bone visualization and metal artifacts in patients with titanium wrist prostheses.

Methods: After ethical approval, 15 patients were examined with PCD-CT and EID-CT. Polyenergetic images were reconstructed, as well as 130-keV VMI for PCD-CT. Five radiologists evaluated bone visualization, interpretability at metal-bone interface and metal artifacts using a 7-point ordinal scale. Streak artifacts and artifacts at the bone-metal interface were quantitatively assessed. Differences between image setups were analyzed using Friedman test and one-way ANOVA with post hoc tests.

Results: Bone visualization was superior in PCD-CT polyenergetic images (median rating 6, range 3-7) compared with VMI (5, 3-7; p < 0.001) and EID-CT (5, 3-7; p = 0.018). Streak artifacts were more pronounced with PCD-CT polyenergetic images (4, 3-6) compared with EID-CT (5, 4-6; p = 0.003) and PCD-CT VMI (5, 3-7; p = 0.002), with quantitative results showing least streak artifacts in PCD-CT VMI, followed by EID-CT and PCD-CT polyenergetic images (50 ± 7%, 70 ± 6%, and 79 ± 5%, respectively; p < 0.001). Interpretability at bone-metal interface was better with PCD-CT polyenergetic images (5, 2-7; p = 0.045) and EID-CT (5, 3-6; p = 0.018) compared with PCD-CT VMI (4, 2-6), without quantitative differences.

Conclusion: Streak artifacts from titanium wrist prostheses were reduced using 130-keV PCD-CT VMI, while bone visualization was highest using PCD-CT polyenergetic images.

Relevance statement: In patients with wrist implants, photon-counting detector CT allows for effective metal artifact reduction using virtual monoenergetic images and improved bone visualization using polyenergetic images. As polyenergetic images and VMI have different advantages, access to both image setups may benefit diagnostic evaluation.

Key points: Virtual monoenergetic images (VMI) presented a substantial reduction of metal streak artifacts. Polyenergetic images exhibited better image quality for bone imaging compared with VMI. A combination of image reconstructions should be preferred depending on the diagnostic task.

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来源期刊
European Radiology Experimental
European Radiology Experimental Medicine-Radiology, Nuclear Medicine and Imaging
CiteScore
6.70
自引率
2.60%
发文量
56
审稿时长
18 weeks
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