Meng Yang, Shaw Chris C, Liu Xinming, Altunbas Mustafa C, Wang Tianpeng, Chen Lingyun, Tu Shu-Ju, Kappadath S Cheenu, Lai Chao-Jen
Digital Imaging Research Lab, Department of Imaging Physics, The University of Texas, M. D. Anderson Cancer Center, Houston, TX 77030-4009.
Proc SPIE Int Soc Opt Eng. 2006 Mar 2;6142:6142451. doi: 10.1117/12.656690.
To compare two detector systems - one based on the charge-coupled device (CCD) and image amplifier, the other based on a-Si/CsI flat panel, for cone beam computed-tomography (CT) imaging of small animals.A high resolution, high framing rate detector system for the cone beam CT imaging of small animals was developed. The system consists of a 2048x3072x12 bit CCD optically coupled to an image amplifier and an x-ray phosphor screen. The CCD has an intrinsic pixel size of 12 mum but the effective pixel size can be adjusted through the magnification adjustment of the optical coupling systems. The system is used in conjunction with an x-ray source and a rotating stage for holding and rotating the scanned object in the cone beam CT imaging experiments. The advantages of the system include but are not limited to the ability to adjust the effective pixel size and to achieve extremely high spatial resolution and temporal resolution. However, the need to use optical coupling compromises the detective quanta efficiency (DQE) of the system. In this paper, the imaging characteristics of the system were presented and compared with those of an a-Si/CsI flat-panel detector system.
为比较两种探测器系统——一种基于电荷耦合器件(CCD)和图像放大器,另一种基于非晶硅/碘化铯平板探测器,用于小动物锥束计算机断层扫描(CT)成像。开发了一种用于小动物锥束CT成像的高分辨率、高帧率探测器系统。该系统由一个2048×3072×12位的CCD组成,该CCD通过光学方式耦合到一个图像放大器和一个X射线荧光屏上。CCD的固有像素尺寸为12微米,但有效像素尺寸可通过光学耦合系统的放大倍数调整来调节。该系统与X射线源和一个旋转平台配合使用,在锥束CT成像实验中用于固定和旋转被扫描物体。该系统的优点包括但不限于能够调整有效像素尺寸以及实现极高的空间分辨率和时间分辨率。然而,使用光学耦合的需求会降低系统的探测量子效率(DQE)。本文介绍了该系统的成像特性,并与非晶硅/碘化铯平板探测器系统的成像特性进行了比较。