首页> 外文会议>2010 IEEE Nuclear Science Symposium : Conference Record >Ultra fast 3-D PET image reconstruction using highly compressed, memory-resident system matrices with optimised SIMD access patterns
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Ultra fast 3-D PET image reconstruction using highly compressed, memory-resident system matrices with optimised SIMD access patterns

机译:使用高度压缩的内存驻留系统矩阵和优化的SIMD访问模式进行超快速3-D PET图像重建

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Fully 3D PET image reconstruction for large detector systems still remains a challenging computational task due to the tremendous number of Lines-of-Response. The reconstruction software PRESTO (PET REconstruction Software TOolkit) allows to use accurate geometrical weighting schemes for the forward/backward projection, e.g. Volume-of-Intersection, while using all measured LORs separately. PRESTO exploits matrix redundancies to realise a strongly compressed, memory-resident system matrix. In this way, the needed time to calculate matrix weights no longer influences the reconstruction time. Nevertheless, in the first implementation the addressing of matrix weights, projection values and voxel values in disfavoured memory access patterns caused severe computational inefficiencies due to the limited memory bandwidth. In this work, the image data and projection data in memory as well as the order of mathematical operations have been re-organised to provide an optimal merit for the Single Instruction Multiple Data (SIMD) approach. A global speedup factor of 15 for has been achieved while obtaining identical results.
机译:由于大量的响应线,用于大型探测器系统的全3D PET图像重建仍然是一项艰巨的计算任务。重建软件PRESTO(PET重建软件TOolkit)允许对正向/反向投影使用精确的几何加权方案,例如相交体积,同时分别使用所有测得的LOR。 PRESTO利用矩阵冗余来实现高度压缩的内存驻留系统矩阵。这样,计算矩阵权重所需的时间不再影响重建时间。然而,在第一种实现方式中,不利的存储器访问模式中矩阵权重,投影值和体素值的寻址由于有限的存储器带宽而导致严重的计算效率低下。在这项工作中,内存中的图像数据和投影数据以及数学运算的顺序已经重新组织,以为单指令多数据(SIMD)方法提供最佳性能。获得了15的全局加速因子,同时获得了相同的结果。

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