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采用平板成像器的锥束计算机断层扫描:图像滞后的影响。

Cone-beam computed tomography with a flat-panel imager: effects of image lag.

作者信息

Siewerdsen J H, Jaffray D A

机构信息

Department of Radiation Oncology, William Beaumont Hospital, Royal Oak, Michigan 48073, USA.

出版信息

Med Phys. 1999 Dec;26(12):2635-47. doi: 10.1118/1.598803.

Abstract

A system for cone-beam computed tomography (CBCT) has been developed based upon the technology of active matrix flat-panel imagers (FPIs), and the system has demonstrated the potential for fully three-dimensional volumetric imaging with high spatial and contrast resolution. This paper investigates the effects of image lag (arising from charge trapping and release in the FPI pixels) upon CBCT reconstructions. Hypotheses were derived based upon a simple, geometrical/physical model, suggesting that image lag in the projection data results primarily in two artifacts: a spatial blurring artifact in the direction opposite to the direction of rotation (called a "comet") and a line artifact along the direction of the first few projections (called a "streak"). The hypotheses were tested by means of computer simulations and experimental measurements that yielded CBCT images of a simple cylindrical water phantom containing an attenuating rod of varying size and composition. The computer simulations generated projection images based upon analysis of the system geometry and a simple model of the FPI that allowed free adjustment of the image lag. Experimental measurements involved CBCT scans of the phantom under various conditions and modes of acquisition followed by examination of the resulting CBCT axial slices for lag artifacts. Measurements were performed as a function of exposure level, position and contrast of the rod, and for three modes of acquisition designed to isolate and/or minimize the two hypothesized artifacts. The results clearly illustrate the comet and streak artifacts, particularly in relation to high-contrast objects imaged at high exposure levels. The significance of such artifacts under clinical conditions is expected to be small, considering the magnitude of the effect relative to the morphology and composition of typical anatomy. The artifacts may become appreciable, however, in the presence of high-contrast objects, such as marker BBs, dental fillings, and metal prosthetics. A procedural method of reducing lag artifacts is demonstrated.

摘要

基于有源矩阵平板成像器(FPI)技术开发了一种锥束计算机断层扫描(CBCT)系统,该系统已展示出进行具有高空间分辨率和对比度分辨率的全三维容积成像的潜力。本文研究了图像滞后(由FPI像素中的电荷俘获和释放引起)对CBCT重建的影响。基于一个简单的几何/物理模型得出了假设,表明投影数据中的图像滞后主要导致两种伪影:在与旋转方向相反的方向上的空间模糊伪影(称为“彗星”)和沿最初几个投影方向的线状伪影(称为“条纹”)。通过计算机模拟和实验测量对这些假设进行了检验,这些测量产生了一个简单圆柱形水体模的CBCT图像,该体模包含一根尺寸和成分各异的衰减棒。计算机模拟基于对系统几何结构的分析和一个允许自由调整图像滞后的FPI简单模型生成投影图像。实验测量包括在各种条件和采集模式下对体模进行CBCT扫描,然后检查所得CBCT轴向切片中的滞后伪影。测量是作为曝光水平、棒的位置和对比度的函数进行的,并且针对三种旨在分离和/或最小化两种假设伪影的采集模式进行。结果清楚地显示了彗星伪影和条纹伪影,特别是在高曝光水平下对高对比度物体成像时。考虑到相对于典型解剖结构的形态和成分而言这种影响的大小,预计在临床条件下这些伪影的影响较小。然而,在存在高对比度物体(如标记弹丸、牙科填充物和金属假体)的情况下,这些伪影可能会变得明显。展示了一种减少滞后伪影的程序方法。

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