无体外呼吸替代物的四维计算机断层扫描(4D-CT)重建

Shu-xu Zhang, Yu Hui, Sheng-qu Lin, Hai-nan Zhang
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摘要

目的:探讨基于空间相邻图像相似原理和互信息测度的四维计算机断层扫描(4D-CT)重建方法的可行性。方法:采用GE光速16型CT扫描机在Cine模式下获取自由呼吸患者的CT数据,时间内的Cine等于患者的呼吸时间加1秒(约4-6s),每行CT扫描获取8 ~ 15片CT图像。利用vc++和VTK软件工具编写软件程序,对CT数据进行重新排序,重建4D-CT。然后,根据空间相邻图像的相似性原则和图像间的互信息度量,将所有同相位的CT数据进行排序,形成一个序列,并利用该软件完成不同相位CT数据的三维重建。结果:所有CT数据根据空间相邻图像的相似性原则和图像间的互信息度量,被准确地分类成不同的序列。与未排序的CT数据相比,排序后的CT数据三维重建中的运动伪影明显减少,所有排序后的CT序列都能得到反映自由呼吸特征的4D-CT。结论:基于空间相邻图像的相似性原理和互信息测度,可在任意一台通用多层CT扫描仪上实现时间分辨4D-CT重建,4D-CT数据采集与重建过程不受CT扫描仪硬件或软件的限制,具有可行性和广泛适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Four-Dimensional Computerized Tomography (4D-CT) Reconstruction without an External Breath Surrogate
Objective: To investigate the feasibility of a four-dimensional computerized tomography (4D-CT) reconstruction method based on the similarity principle of spatial adjacent images and mutual information measure. Methods: The CT data of patient underwent free breathing were acquired in Cine mode by a GE Light Speed 16 CT scanner, the Cine during time was equal to the breathing period of the patient plus one second (about 4-6s) and 8 to 15 slices CT image were acquired by a row CT detector in every Cine scan. A software program was developed by using VC++ and VTK software tools to re-sort the CT data and reconstruct the 4D-CT. Then all of the CT data with same phase were sorted by the program into a same series based on the similarity principle of spatial adjacent images and mutual information measure among them, and 3D reconstruction of different phase CT data were completed by using the software. Results: All of the CT data were sort accurately into different series based on the similarity principle of spatial adjacent images and mutual information measures among them. Compared with the unsorted CT data, the motion artifacts in the 3D reconstruction of sorted CT data were reduced significantly, and all of the sorted CT series result in a 4D-CT that reflected the characteristic of the free breathing. Conclusion: Time-resolved 4D-CT reconstruction can be implemented with any general multi-slice CT scanners based on the similarity principle of spatial adjacent images and mutual information measure, the process of the 4D--CT data acquisition and reconstruction were not restricted to the hardware or software of the CT scanner and has the feasibility and extensive applicability.
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