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使用逐搏三维螺旋脂肪选择性成像对呼吸运动进行基于非模型的校正。

Non-model-based correction of respiratory motion using beat-to-beat 3D spiral fat-selective imaging.

作者信息

Keegan Jennifer, Gatehouse Peter D, Yang Guang-Zhong, Firmin David N

机构信息

Cardiovascular Magnetic Resonance Unit, Royal Brompton Hospital, London, UK.

出版信息

J Magn Reson Imaging. 2007 Sep;26(3):624-9. doi: 10.1002/jmri.20941.

Abstract

PURPOSE

To demonstrate the feasibility of retrospective beat-to-beat correction of respiratory motion, without the need for a respiratory motion model.

MATERIALS AND METHODS

A high-resolution three-dimensional (3D) spiral black-blood scan of the right coronary artery (RCA) of six healthy volunteers was acquired over 160 cardiac cycles without respiratory gating. One spiral interleaf was acquired per cardiac cycle, prior to each of which a complete low-resolution fat-selective 3D spiral dataset was acquired. The respiratory motion (3D translation) on each cardiac cycle was determined by cross-correlating a region of interest (ROI) in the fat around the artery in the low-resolution datasets with that on a reference end-expiratory dataset. The measured translations were used to correct the raw data of the high-resolution spiral interleaves.

RESULTS

Beat-to-beat correction provided consistently good results, with the image quality being better than that obtained with a fixed superior-inferior tracking factor of 0.6 and better than (N = 5) or equal to (N = 1) that achieved using a subject-specific retrospective 3D translation motion model.

CONCLUSION

Non-model-based correction of respiratory motion using 3D spiral fat-selective imaging is feasible, and in this small group of volunteers produced better-quality images than a subject-specific retrospective 3D translation motion model.

摘要

目的

证明无需呼吸运动模型即可对呼吸运动进行逐搏回顾性校正的可行性。

材料与方法

在160个心动周期内,对6名健康志愿者的右冠状动脉(RCA)进行高分辨率三维(3D)螺旋黑血扫描,无需呼吸门控。每个心动周期采集一个螺旋间隔,在采集每个螺旋间隔之前,先采集一个完整的低分辨率脂肪选择性3D螺旋数据集。通过将低分辨率数据集中动脉周围脂肪中的感兴趣区域(ROI)与参考呼气末数据集上的ROI进行互相关,确定每个心动周期的呼吸运动(3D平移)。测量得到的平移用于校正高分辨率螺旋间隔的原始数据。

结果

逐搏校正始终能提供良好的结果,图像质量优于使用固定的上下跟踪因子0.6获得的图像质量,且优于(N = 5)或等于(N = 1)使用特定受试者回顾性3D平移运动模型获得的图像质量。

结论

使用3D螺旋脂肪选择性成像对呼吸运动进行基于非模型的校正是可行的,并且在这一小群志愿者中,该方法产生的图像质量优于特定受试者回顾性3D平移运动模型。

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