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Accurate image reconstruction for DOI-PET systems and its implications for the development of economic, compact PET (ezPET) systems

机译:用于DOI-PET系统的准确图像重建及其对经济,紧凑型宠物(EZPET)系统的影响

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We study the use of computationally efficient sinogram restoration (SR) approach for reconstruction of PET data acquired by systems with depth-of-interaction (DOI-PET) capability. Our preliminary results show that the proposed approach can yield images of excellent resolution uniformity for a hypothetical compact system with a field-of-view (FOV) as large as 98% of the detector ring size. In comparison with images generated by the conventional rebinning approach, the resolution uniformity across the FOV in the image produced by incorporating SR is improved by a factor of 6, and the spatial resolution at the edge of the FOV is improved by a factor of 2. Moreover, the SR approach produces better intensity recovery and peak positioning. Integration of the use of DOI detectors and SR reconstruction can thus provide a new way for developing economic, compact PET (ezPET) systems. We demonstrate that this ezPET design can produce images of quality comparable with those obtained by a conventional system that employs a detector ring ~50% larger than the compact system. The much reduced detector ring size of the ezPET system can provide greatly reduced production cost, improved image resolution and resolution uniformity, and increased system sensitivity.
机译:我们研究了使用计算上有效的Sinogram Retoriver(SR)方法来重建由具有相互作用深度(DOI-PET)能力的系统获取的PET数据。我们的初步结果表明,该方法可以为假设的紧凑型系统产生优异的分辨率均匀性的图像,具有视野(FOV)的探测器环尺寸的98%。与传统的重构方法产生的图像相比,通过将Sr产生的图像中的图像中的叠加均匀性提高了一倍6,并且FOV边缘处的空间分辨率得到改善为2倍。此外,SR方法产生更好的强度恢复和峰定位。因此,使用DOI探测器和SR重建的集成可以为开发经济,紧凑型宠物(EZPET)系统提供一种新的方式。我们证明,这种Ezpet设计可以产生与由传统系统获得的质量相当的图像,该系统采用探测器环〜50%大于紧凑型系统。 Ezpet系统的探测器环尺寸的大大降低可以提供大大降低的生产成本,改善的图像分辨率和分辨率均匀性,并提高了系统敏感性。

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