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首页> 外文期刊>IEEE Transactions on Medical Imaging >Ultra Fast Symmetry and SIMD-Based Projection-Backprojection (SSP) Algorithm for 3-D PET Image Reconstruction
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Ultra Fast Symmetry and SIMD-Based Projection-Backprojection (SSP) Algorithm for 3-D PET Image Reconstruction

机译:用于3D PET图像重建的超快速对称性和基于SIMD的投影反投影(SSP)算法

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摘要

Remarkable progress in positron emission tomography (PET) development has occurred in recent years, in hardware, software, and computer implementation of image reconstruction. Recent development in PET scanners such as the high-resolution research tomograph (HRRT) developed by CTI (now Siemens) represents such a case and is capable of greatly enhanced resolution as well as sensitivity. In these PET scanners, the amount of coincidence line data collected contains more than $4.5times 10^{9}$ coincidence lines of response generated by as many nuclear detectors as 120 000. This formidable amount of data and the reconstruction of this data set pose a real problem in HRRT and have also been of the major bottle neck in further developments of high resolution PET scanners as well as their applications. In these classes of PET scanners, therefore, obtaining one set of reconstructed images often requires many hours of image reconstruction. For example, in HRRT with full data collection in a normal brain scan (using SPAN 3), the image reconstruction time is close to 80 min, making it practically impossible to attempt any list-mode-based dynamic imaging since the image reconstruction time would take many days (as much as 43 h or more for 32–frame dynamic image reconstruction). To remedy this data-handling problem in image reconstruction, we developed a new algorithm based on the symmetry properties of the projection and backprojection processes, especially in the 3-D OSEM algorithm where multiples of projection and back-projection are required. In addition, the single-instruction multiple-data (SIMD) technique also allowed us to successfully incorporate the symmetry properties mentioned above, thereby effectively reducing the total image reconstruction time to a few minutes. We refer to this technique as the symmetry and SIMD-based projection-backprojection (SSP) technique or algorithm and the details of -the technique will be discussed and an example of the application of the technique to the HRRT''s OSEM algorithm will be presented as a demonstration.
机译:近年来,在图像重建的硬件,软件和计算机实现方面,正电子发射断层扫描(PET)的发展取得了显着进展。 PET扫描仪的最新发展,例如由CTI(现为西门子)开发的高分辨率研究断层扫描仪(HRRT)代表了这种情况,并且能够大大提高分辨率和灵敏度。在这些PET扫描仪中,收集的重合线数据量包含由多至120 000的核探测器产生的响应的$ 4.5乘以10 ^ {9} $重合线。 HRRT的一个实际问题,也是高分辨率PET扫描仪及其应用进一步发展的主要瓶颈。因此,在这些类别的PET扫描仪中,获得一组重建图像通常需要许多小时的图像重建。例如,在正常脑部扫描(使用SPAN 3)中具有完整数据收集的HRRT中,图像重建时间接近80分钟,由于图像重建时间会导致几乎无法尝试任何基于列表模式的动态成像需要很多天(对于32帧动态图像重建,最多需要43小时或更长时间)。为了解决图像重建中的数据处理问题,我们开发了一种基于投影和反投影过程的对称性的新算法,特别是在需要多个投影和反投影的3-D OSEM算法中。此外,单指令多数据(SIMD)技术还使我们能够成功地合并上述对称性,从而有效地将总图像重建时间减少到几分钟。我们将此技术称为对称和基于SIMD的投影反投影(SSP)技术或算法,将讨论该技术的详细信息,并以该技术在HRRT的OSEM算法中的应用示例为例。作为演示。

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