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Parallel image reconstruction for 3D positron emission tomography from incomplete 2D projection data

机译:来自不完全2D投影数据的3D正电子发射断层扫描的并行图像重建

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The problem of excessive computational time in 3D Positron Emission Tomography (3D PET) reconstruction is defined, and we present an approach for solving this problem through the construction of an inexpensive parallel processing system and the adoption of the FAVOR algorithm. Currently, the 3D reconstruction of the 610 images of a total body procedure would require 80 hours and the 3D reconstruction of the 620 images of a dynamic study would require 110 hours. An inexpensive parallel processing system for 3D PET reconstruction is constructed from the integration of board level products from multiple vendors. The system achieves its computational performance through the use of 6U VME four i860 processor boards, the processor boards from five manufacturers are discussed from our perspective. The new 3D PET reconstruction algorithm FAVOR, FAst VOlume Reconstructor, that promises a substantial speed improvement is adopted. Preliminary results from parallelizing FAVOR are utilized in formulating architectural improvements for this problem. In summary, we are addressing the problem of excessive computational time in 3D PET image reconstruction, through the construction of an inexpensive parallel processing system and the parallelization of a 3D reconstruction algorithm that uses the incomplete data set that is produced by current PET systems.
机译:在三维正电子发射断层扫描过多的计算时间的问题(3D PET)重建被定义,并且我们提出了通过廉价的并行处理系统的结构和通过FAVOR算法的解决这个问题的方法。目前,总体过程的610图像的3D重构需要80小时,并且动态研究的620图像的3D重构需要110小时。用于3D宠物重建的廉价并行处理系统由来自多个供应商的板级产品的集成构成。该系统通过使用6U VME四个I860处理器板实现其计算性能,从我们的角度讨论了来自五种制造商的处理器板。新的3D PET重建算法利用,快速重建器,即承​​诺大量速度改进。并行化青睐的初步结果用于制定这个问题的架构改进。总之,我们正在通过构建廉价的并行处理系统和使用由当前PET系统产生的不完整数据集的3D重建算法的平行化,来解决3D PET图像重建中过度计算时间的问题。

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