Helical dual source cone-beam micro-CT

S. Johnston, G. Johnson, C. Badea
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Abstract

While helical scanning is well established in the clinical arena, most micro-CT scanners use circular cone beam trajectories and approximate reconstructions based on a filtered backprojection (FBP) algorithm. This may be sufficient for some applications, but in studies of larger animals, such as rats, the size of the detector can constrain the field of view and extend scan time. To address this problem, we have designed and implemented helical scanning and reconstruction procedures for an in-house-developed dual source cone-beam micro-CT system. The reconstruction uses a simultaneous algebraic reconstruction technique combined with total variation regularization (SART-TV). We implemented this algorithm on a graphics processing unit (GPU) to reduce run time. The results demonstrate the speed and accuracy of the GPU-based SART-TV algorithm. The helical scan enables the reconstruction of volumes with extended field of view for whole body micro-CT imaging of large rodents.
螺旋双源锥束微型ct
虽然螺旋扫描在临床领域已经很成熟,但大多数微型ct扫描仪使用圆锥形光束轨迹和基于滤波反向投影(FBP)算法的近似重建。这对于某些应用来说可能是足够的,但是在对大动物(如老鼠)的研究中,探测器的尺寸会限制视野并延长扫描时间。为了解决这个问题,我们为自己开发的双源锥束微ct系统设计并实施了螺旋扫描和重建程序。重构采用了结合全变分正则化(SART-TV)的同步代数重构技术。我们在图形处理单元(GPU)上实现该算法以减少运行时间。实验结果证明了基于gpu的SART-TV算法的速度和准确性。螺旋扫描能够重建具有扩展视野的体积,用于大型啮齿动物的全身微ct成像。
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