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多层螺旋CT:图像时间分辨率。

Multislice helical CT: image temporal resolution.

作者信息

Hui H, Pan T, Shen Y

机构信息

ImagingTech, Inc., Waukesha, WI 53186, USA.

出版信息

IEEE Trans Med Imaging. 2000 May;19(5):384-90. doi: 10.1109/42.870249.

Abstract

A multislice helical computed tomography (CT) halfscan (HS) reconstruction algorithm is proposed for cardiac applications. The imaging performances (in terms of the temporal resolution, z-axis resolution, image noise, and image artifacts) of the HS algorithm are compared to the existing algorithms using theoretical models and clinical data. A theoretical model of the temporal resolution performance (in terms of the temporal sensitivity profile) is established for helical CT, in general, i.e., for any number of detector rows and any reconstruction algorithm used. It is concluded that the HS reconstruction results in improved image temporal resolution than the corresponding 180 degrees LI (linear interpolation) reconstruction and is more immune to the inconsistent data problem induced by cardiac motions. The temporal resolution of multislice helical CT with the HS algorithm is comparable to that of single-slice helical CT with the HS algorithm. In practice, the 180 degrees LI and HS-LI algorithms can be used in parallel to generate two image sets from the same scan acquisition, one (180 degrees LI) for improved z-resolution and noises, and the other (HS-LI) for improved image temporal resolution.

摘要

提出了一种用于心脏成像的多层螺旋计算机断层扫描(CT)半扫描(HS)重建算法。使用理论模型和临床数据,将HS算法的成像性能(在时间分辨率、z轴分辨率、图像噪声和图像伪影方面)与现有算法进行比较。一般而言,即对于任何数量的探测器排和所使用的任何重建算法,建立了螺旋CT时间分辨率性能(根据时间灵敏度曲线)的理论模型。得出的结论是,与相应的180度线性插值(LI)重建相比,HS重建可提高图像时间分辨率,并且对心脏运动引起的数据不一致问题更具免疫力。采用HS算法的多层螺旋CT的时间分辨率与采用HS算法的单层螺旋CT相当。在实际应用中,180度LI和HS-LI算法可以并行使用,从同一扫描采集中生成两组图像,一组(180度LI)用于提高z分辨率和噪声,另一组(HS-LI)用于提高图像时间分辨率。

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