Ray tracing reconstruction investigation for C-arm tomosynthesis

Nuhad A. Malalla, Ying Chen
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Abstract

C-arm tomosynthesis is a three dimensional imaging technique. Both x-ray source and the detector are mounted on a C-arm wheeled structure to provide wide variety of movement around the object. In this paper, C-arm tomosynthesis was introduced to provide three dimensional information over a limited view angle (less than 180o) to reduce radiation exposure and examination time. Reconstruction algorithms based on ray tracing method such as ray tracing back projection (BP), simultaneous algebraic reconstruction technique (SART) and maximum likelihood expectation maximization (MLEM) were developed for C-arm tomosynthesis. C-arm tomosynthesis projection images of simulated spherical object were simulated with a virtual geometric configuration with a total view angle of 40 degrees. This study demonstrated the sharpness of in-plane reconstructed structure and effectiveness of removing out-of-plane blur for each reconstruction algorithms. Results showed the ability of ray tracing based reconstruction algorithms to provide three dimensional information with limited angle C-arm tomosynthesis.
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c臂断层合成的射线追踪重建研究
c臂断层合成是一种三维成像技术。x射线源和探测器都安装在c臂轮式结构上,以提供物体周围各种各样的运动。本文引入了c臂断层合成技术,在有限的视角(小于180度)内提供三维信息,以减少辐射暴露和检查时间。提出了基于射线追踪法的c臂断层合成重建算法,如射线追踪回投影(BP)、同步代数重建技术(SART)和最大似然期望最大化(MLEM)。以总视角为40度的虚拟几何构型模拟模拟球形物体的c臂断层合成投影图像。本研究证明了各重建算法在面内重构结构的清晰度和去除面外模糊的有效性。结果表明,基于光线追踪的重建算法能够提供有限角度c臂断层合成的三维信息。
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