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Computationally efficient iterative transmission imaging for the Inveon DPET

机译:Inveon DPET的计算有效迭代透射成像

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Transmission measurements are performed on PET tomographs to create attenuation correction factors in support of quantitatively accurate images. The Inveon dedicated PET (DPET), a state-of-the-art small animal imaging system is an example of such a system. We report on the design and implementation of an iterative reconstruction approach that incorporates an explicit model of the system geometry. Although iterative algorithms are known to be computationally costly compared with analytic reconstruction methods, we show that the weighted least-squares computation considered in our case can be made computationally efficient. Indeed, we show that a high-quality transmission image can be reconstructed in under a minute. Computational speed is gained algorithmically through the use of relaxation and ordered-subsets, and implementation wise through the use of Intel's SSE vector instructions and multi-core techniques. Experimental results are provided for both phantom and real data.
机译:在PET断层扫描仪上执行透射测量,以创建衰减校正因子,以支持定量准确的图像。 Inveon专用PET(DPET)是最新的小型动物成像系统,是此类系统的一个示例。我们报告了一种迭代重建方法的设计和实现,该方法结合了系统几何的显式模型。尽管已知迭代算法与解析重构方法相比在计算上昂贵,但我们表明,在我们的情况下考虑的加权最小二乘计算可以使计算效率更高。实际上,我们表明可以在一分钟内重建高质量的传输图像。通过使用松弛和有序子集在算法上获得计算速度,并通过使用英特尔的SSE矢量指令和多核技术来明智地实现计算速度。提供了幻像和真实数据的实验结果。

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