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基于磁共振的正电子发射断层成像呼吸和心脏运动校正。

MR-based respiratory and cardiac motion correction for PET imaging.

机构信息

Institute of Signal Processing and System Theory, University of Stuttgart, Stuttgart, Germany; Department of Radiology, University of Tübingen, Tübingen, Germany.

Institute of Signal Processing and System Theory, University of Stuttgart, Stuttgart, Germany; Section on Experimental Radiology, University of Tübingen, Germany.

出版信息

Med Image Anal. 2017 Dec;42:129-144. doi: 10.1016/j.media.2017.08.002. Epub 2017 Aug 3.

Abstract

PURPOSE

To develop a motion correction for Positron-Emission-Tomography (PET) using simultaneously acquired magnetic-resonance (MR) images within 90 s.

METHODS

A 90 s MR acquisition allows the generation of a cardiac and respiratory motion model of the body trunk. Thereafter, further diagnostic MR sequences can be recorded during the PET examination without any limitation. To provide full PET scan time coverage, a sensor fusion approach maps external motion signals (respiratory belt, ECG-derived respiration signal) to a complete surrogate signal on which the retrospective data binning is performed. A joint Compressed Sensing reconstruction and motion estimation of the subsampled data provides motion-resolved MR images (respiratory + cardiac). A 1-POINT DIXON method is applied to these MR images to derive a motion-resolved attenuation map. The motion model and the attenuation map are fed to the Customizable and Advanced Software for Tomographic Reconstruction (CASToR) PET reconstruction system in which the motion correction is incorporated. All reconstruction steps are performed online on the scanner via Gadgetron to provide a clinically feasible setup for improved general applicability. The method was evaluated on 36 patients with suspected liver or lung metastasis in terms of lesion quantification (SUVmax, SNR, contrast), delineation (FWHM, slope steepness) and diagnostic confidence level (3-point Likert-scale).

RESULTS

A motion correction could be conducted for all patients, however, only in 30 patients moving lesions could be observed. For the examined 134 malignant lesions, an average improvement in lesion quantification of 22%, delineation of 64% and diagnostic confidence level of 23% was achieved.

CONCLUSION

The proposed method provides a clinically feasible setup for respiratory and cardiac motion correction of PET data by simultaneous short-term MRI. The acquisition sequence and all reconstruction steps are publicly available to foster multi-center studies and various motion correction scenarios.

摘要

目的

开发一种在 90 秒内使用同时采集的磁共振(MR)图像对正电子发射断层扫描(PET)进行运动校正的方法。

方法

90 秒的 MR 采集允许生成身体躯干的心脏和呼吸运动模型。此后,在 PET 检查期间可以无限制地记录进一步的诊断性 MR 序列。为了提供完整的 PET 扫描时间覆盖范围,传感器融合方法将外部运动信号(呼吸带、心电图衍生的呼吸信号)映射到完整的替代信号上,然后对回溯数据进行分箱处理。对亚采样数据进行联合压缩感知重建和运动估计,提供运动分辨的 MR 图像(呼吸+心脏)。将 1 点 DIXON 方法应用于这些 MR 图像,以获得运动分辨的衰减图。运动模型和衰减图被馈送到可定制和高级断层重建软件(CASToR)PET 重建系统中,其中包含运动校正。所有重建步骤都通过 Gadgetron 在扫描仪上在线执行,以提供一种可行的临床设置,以提高一般适用性。该方法在 36 名疑似肝或肺转移的患者中进行了评估,评估指标包括病变定量(SUVmax、SNR、对比度)、勾画(FWHM、斜率陡度)和诊断置信度水平(3 分李克特量表)。

结果

可以对所有患者进行运动校正,但只能观察到 30 名移动病变的患者。在所检查的 134 个恶性病变中,病变定量、勾画和诊断置信度水平的平均改善分别为 22%、64%和 23%。

结论

该方法通过同时进行短期 MRI 为 PET 数据的呼吸和心脏运动校正提供了一种可行的临床设置。该采集序列和所有重建步骤均公开可用,以促进多中心研究和各种运动校正场景。

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