Suppr超能文献

运动校正全心 PET-MR 同时可视化冠状动脉完整性和心肌活力:初步临床验证。

Motion-corrected whole-heart PET-MR for the simultaneous visualisation of coronary artery integrity and myocardial viability: an initial clinical validation.

机构信息

School of Biomedical Engineering and Imaging Sciences, King's College London, 4th Floor, Lambeth Wing, St Thomas' Hospital, London, SE1 7EH, UK.

Nuklearmedizinische Klinik und Poliklinik, Technische Universität München, Munich, Germany.

出版信息

Eur J Nucl Med Mol Imaging. 2018 Oct;45(11):1975-1986. doi: 10.1007/s00259-018-4047-7. Epub 2018 May 12.

Abstract

PURPOSE

Cardiac PET-MR has shown potential for the comprehensive assessment of coronary heart disease. However, image degradation due to physiological motion remains a challenge that could hinder the adoption of this technology in clinical practice. The purpose of this study was to validate a recently proposed respiratory motion-corrected PET-MR framework for the simultaneous visualisation of myocardial viability (F-FDG PET) and coronary artery anatomy (coronary MR angiography, CMRA) in patients with chronic total occlusion (CTO).

METHODS

A cohort of 14 patients was scanned with the proposed PET-CMRA framework. PET and CMRA images were reconstructed with and without the proposed motion correction approach for comparison purposes. Metrics of image quality including visible vessel length and sharpness were obtained for CMRA for both the right and left anterior descending coronary arteries (RCA, LAD), and relative increase in F-FDG PET signal after motion correction for standard 17-segment polar maps was computed. Resulting coronary anatomy by CMRA and myocardial integrity by PET were visually compared against X-ray angiography and conventional Late Gadolinium Enhancement (LGE) MRI, respectively.

RESULTS

Motion correction increased CMRA visible vessel length by 49.9% and 32.6% (RCA, LAD) and vessel sharpness by 12.3% and 18.9% (RCA, LAD) on average compared to uncorrected images. Coronary lumen delineation on motion-corrected CMRA images was in good agreement with X-ray angiography findings. For PET, motion correction resulted in an average 8% increase in F-FDG signal in the inferior and inferolateral segments of the myocardial wall. An improved delineation of myocardial viability defects and reduced noise in the F-FDG PET images was observed, improving correspondence to subendocardial LGE-MRI findings compared to uncorrected images.

CONCLUSION

The feasibility of the PET-CMRA framework for simultaneous cardiac PET-MR imaging in a short and predictable scan time (~11 min) has been demonstrated in 14 patients with CTO. Motion correction increased visible length and sharpness of the coronary arteries by CMRA, and improved delineation of the myocardium by F-FDG PET, resulting in good agreement with X-ray angiography and LGE-MRI.

摘要

目的

心脏 PET-MR 已经显示出在综合评估冠心病方面的潜力。然而,由于生理运动导致的图像退化仍然是一个挑战,这可能会阻碍这项技术在临床实践中的应用。本研究的目的是验证一种最近提出的用于同时可视化心肌活力(F-FDG PET)和冠状动脉解剖结构(冠状动脉 MR 血管造影,CMRA)的呼吸运动校正 PET-MR 框架,该框架用于慢性完全闭塞(CTO)患者。

方法

对 14 例患者进行了拟议的 PET-CMRA 框架扫描。为了进行比较,对 PET 和 CMRA 图像进行了有和没有所提出的运动校正方法的重建。对于右冠状动脉(RCA)和左前降支(LAD),获得了 CMRA 的图像质量指标,包括可见血管长度和清晰度,以及在运动校正后标准 17 节段极图上 F-FDG PET 信号的相对增加。通过 CMRA 获得的冠状动脉解剖结构和通过 PET 获得的心肌完整性分别与 X 射线血管造影和传统的钆延迟增强(LGE)MRI 进行了视觉比较。

结果

与未校正图像相比,运动校正平均增加了 CMRA 的可见血管长度 49.9%和 32.6%(RCA,LAD)和血管清晰度 12.3%和 18.9%(RCA,LAD)。校正后的 CMRA 图像上的冠状动脉管腔描绘与 X 射线血管造影结果吻合良好。对于 PET,运动校正导致心肌壁下壁和下侧壁的 F-FDG 信号平均增加 8%。观察到心肌活力缺陷的描绘得到改善,F-FDG PET 图像中的噪声减少,与未校正图像相比,与心内膜下 LGE-MRI 结果的对应性更好。

结论

在 14 例 CTO 患者中,已经证明了在短且可预测的扫描时间(~11 分钟)内进行心脏 PET-MR 成像的 PET-CMRA 框架的可行性。CMRA 运动校正增加了 CMRA 的冠状动脉可见长度和清晰度,F-FDG PET 改善了心肌的描绘,与 X 射线血管造影和 LGE-MRI 吻合良好。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5173/6132558/fbdb1b672f1c/259_2018_4047_Fig1_HTML.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验