Suppr超能文献

心脏和呼吸运动联合估计用于运动校正的心脏 PET-MR。

Joint cardiac and respiratory motion estimation for motion-corrected cardiac PET-MR.

机构信息

Physikalisch-Technische Bundesanstalt (PTB), Braunschweig and Berlin, Germany. King's College London, School of Biomedical Engineering and Imaging Sciences, London, United Kingdom. Author to whom any correspondence should be addressed.

出版信息

Phys Med Biol. 2018 Dec 19;64(1):015007. doi: 10.1088/1361-6560/aaf246.

Abstract

Respiratory and cardiac motion can strongly impair cardiac PET image quality and tracer uptake quantification. Standard gating techniques can minimize these motion artefacts but suffer from low signal-to-noise ratio because only a small percentage of the total data is utilized. Motion correction approaches have been proposed to overcome this problem but require accurate knowledge of such physiological motion. Here we present a joint PET-MR motion estimation approach which combines complimentary dynamic image information from simultaneously acquired MR and PET to ensure improved cardiac and respiratory motion estimation for motion-corrected image reconstruction (MCIR) of PET images. A 3D triple-echo Dixon MR scan is used both for calculation of MR-based attenuation correction (AC) maps and estimation of physiological motion. PET listmode data is obtained simultaneously to the MR acquisition which is used for a joint motion estimation and reconstruction of the final MCIR PET. In a first step, dynamic cardiac and respiratory motion resolved 4D MR and PET images are reconstructed. These image series are used in a joint image registration to estimate non-rigid cardiac and respiratory motion fields. In a second step, the motion fields are utilized in a MR MCIR to obtain cardiac and respiratory resolved dynamic MR-based AC maps. In the last step, the non-rigid motion fields and the dynamic AC maps are applied in a PET MCIR to obtain the final motion-corrected PET images. PET-MR data has been obtained in six patients without any known heart disease. Motion amplitudes were between 5.6 and 16 mm, with higher values in the basal compared to the mid-ventricular and apical segments. The proposed joint PET-MR motion estimation provided more accurate motion estimation than using either modality separately. The underestimation of PET uptake due to respiratory and cardiac motion artefacts in the AC maps was up to 17%. The average increase in uptake values using MCIR was 23%  ±  10% (p  <  0.0001), with values of 28%  ±  11% (p  <  0.0001) for basal, 21%  ±  8% (p  <  0.0001) for mid-cavity and 17%  ±  7% (p  <  0.0001) for apical segments. With the proposed scheme we could ensure high PET image quality and improve local PET uptake quantification by up to 30%. Attenuation correction and motion information was obtained from the same PET-MR raw data, which was obtained during free-breathing to minimize scan times and to increase patient comfort.

摘要

呼吸和心脏运动可显著降低心脏 PET 图像质量和示踪剂摄取定量。标准门控技术可以最小化这些运动伪影,但由于仅利用总数据的一小部分,因此具有较低的信噪比。已经提出了运动校正方法来克服这个问题,但需要准确了解这种生理运动。在这里,我们提出了一种联合 PET-MR 运动估计方法,该方法结合了同时采集的 MR 和 PET 的互补动态图像信息,以确保改善心脏和呼吸运动估计,从而进行运动校正的 PET 图像重建 (MCIR)。使用三维三回波 Dixon MR 扫描,既用于计算基于 MR 的衰减校正 (AC) 图,又用于估计生理运动。同时获得 PET 列表模式数据,用于联合运动估计和最终 MCIR PET 的重建。在第一步中,重建解析心脏和呼吸的 4D MR 和 PET 图像。这些图像系列用于联合图像配准,以估计非刚性心脏和呼吸运动场。在第二步中,在 MR MCIR 中利用运动场来获得解析心脏和呼吸的动态基于 MR 的 AC 图。在最后一步中,将非刚性运动场和动态 AC 图应用于 PET MCIR 中,以获得最终的运动校正 PET 图像。在没有任何已知心脏病的六名患者中获得了 PET-MR 数据。运动幅度在 5.6 至 16mm 之间,基底段比中室段和心尖段更高。与单独使用任何一种模态相比,所提出的联合 PET-MR 运动估计提供了更准确的运动估计。AC 图中由于呼吸和心脏运动伪影导致的 PET 摄取的低估高达 17%。使用 MCIR 时,摄取值的平均增加率为 23%±10%(p<0.0001),基底段为 28%±11%(p<0.0001),中腔段为 21%±8%(p<0.0001),心尖段为 17%±7%(p<0.0001)。通过提出的方案,我们可以确保高质量的 PET 图像并将局部 PET 摄取定量提高多达 30%。衰减校正和运动信息是从 PET-MR 原始数据中获得的,这些原始数据是在自由呼吸期间获得的,以最小化扫描时间并提高患者舒适度。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验