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自由呼吸啮齿动物的呼吸期相关微型计算机断层扫描成像

Respiratory phase-correlated micro-CT imaging of free-breathing rodents.

作者信息

Ertel Dirk, Kyriakou Yiannis, Lapp Robert M, Kalender Willi A

机构信息

Institute of Medical Physics, University of Erlangen-Nürnberg, Erlangen, Germany.

出版信息

Phys Med Biol. 2009 Jun 21;54(12):3837-46. doi: 10.1088/0031-9155/54/12/015. Epub 2009 Jun 2.

Abstract

We provide a dedicated phase-correlated imaging procedure for respiratory gating in micro-CT imaging with automatic detection of the optimal data window providing the least amount of motion blurring. A rawdata-based motion function (kymogram) was used for synchronization purposes and for identification of the optimal data window used for phase-correlated image reconstruction. Measurements were performed on a dual-source micro-CT scanner. Projection data were acquired over ten rotations for multi-segment phase-correlated reconstruction. Visual assessment was performed on datasets of ten free-breathing subjects. The kymogram approach provided a reliable synchronization signal for phase-correlated image reconstruction. Also, it allowed for the identification of phase intervals of increased and decreased motion and the corresponding detection of the optimal reconstruction phase. Phase-correlated images showed a strong improvement with respect to motion blurring compared to standard image reconstruction. A reconstruction for the calculated optimal data window provided the least amount of motion blurring and even allowed for the assessment of small structures in the lung. The dedicated retrospective phase-correlated image reconstruction procedure for respiratory gating is a feasible approach for motion-free imaging. A subject-specific optimal reconstruction phase can minimize motion blurring and further improve image quality.

摘要

我们提供了一种专门的相位相关成像程序,用于微计算机断层扫描(micro-CT)成像中的呼吸门控,可自动检测出能提供最少运动模糊量的最佳数据窗口。基于原始数据的运动函数(时间-强度曲线)用于同步目的,并用于识别用于相位相关图像重建的最佳数据窗口。测量在双源微CT扫描仪上进行。投影数据在十次旋转过程中采集,用于多段相位相关重建。对十名自由呼吸受试者的数据集进行了视觉评估。时间-强度曲线方法为相位相关图像重建提供了可靠的同步信号。此外,它还能识别运动增加和减少的相位区间,并相应地检测出最佳重建相位。与标准图像重建相比,相位相关图像在运动模糊方面有显著改善。针对计算出的最佳数据窗口进行的重建产生的运动模糊量最少,甚至能够评估肺部的小结构。用于呼吸门控的专门回顾性相位相关图像重建程序是一种可行的无运动成像方法。特定受试者的最佳重建相位可以将运动模糊降至最低,并进一步提高图像质量。

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