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An experimental cone-beam Micro-CT system for small animal imaging

机译:用于小动物成像的实验性锥束Micro-CT系统

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An experimental cone-beam Micro-CT system for small animal imaging is presented in the paper. The system is designed to obtain high-resolution anatomic information and will be integrated with our bioluminescence tomography system. A flat panel X-ray detector (CMOS technology with a column Csl scintillator plate, 50 micron pixel size, 120 mm × 120 mm photodiode area) and a micro-focus X-ray source (13 to 40 μm of focal spot size) are used in the system. The object (mouse or rat) is placed on a three-degree (two translations and one rotation) programming stage and could be located to an accurate position in front of the detector. The large field of view (FOV) of the system allows us to acquire the whole body imaging of a normal mouse in one scanning which usually takes about 6 to 15 minutes. Raw data from X-ray detector show spatial variation caused by dark image offset, pixel gain and defective pixels, therefore data pre-processing is needed before reconstruction. Geometry calibrations are also used to reduce the artifacts caused by geometric misalignment. In order to accelerate FDK filtered backprojection method, we develop a reconstruction software using GPU hardware in our system. System spacial resolution and image uniformity and voxel noise have been assessed and mouse reconstruction images are illuminated in the paper. Experiment results show that this system is suitable for small animal imaging.
机译:本文介绍了用于小动物成像的实验性锥束Micro-CT系统。该系统旨在获取高分辨率的解剖信息,并将与我们的生物发光层析成像系统集成。平板X射线检测器(具有Csl柱状闪烁器板,50微米像素尺寸,120毫米×120毫米光电二极管面积的CMOS技术)和微焦点X射线源(焦点尺寸为13至40μm)是在系统中使用。将物体(鼠标或老鼠)放在三度(两次平移和一圈)编程阶段,并可以将其放置在检测器前面的准确位置。该系统的大视野(FOV)使我们能够在一次扫描中获取正常鼠标的全身成像,通常需要大约6到15分钟的时间。来自X射线检测器的原始数据显示出由暗图像偏移,像素增益和缺陷像素引起的空间变化,因此在重建之前需要进行数据预处理。几何校准还用于减少由几何未对准引起的伪影。为了加速FDK滤波的反投影方法,我们在系统中使用GPU硬件开发了一个重建软件。已经评估了系统空间分辨率,图像均匀性和体素噪声,并在纸上照亮了鼠标重建图像。实验结果表明,该系统适用于小型动物成像。

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