首页> 外文会议>2013 IEEE Nuclear Science Symposium and Medical Imaging Conference >A comparison of resolution recovery performed in projection-space and image-space for a high resolution small animal PET scanner
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A comparison of resolution recovery performed in projection-space and image-space for a high resolution small animal PET scanner

机译:高分辨率小型动物PET扫描仪在投影空间和图像空间中执行的分辨率恢复的比较

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摘要

Advances in PET scanner design and image reconstruction methods have lead to the development of high resolution emission tomographic scanners. Traditional PET reconstruction methods that do not take into account the mispositioning of the lines of response (parallax error) result in blurring images and increased distortion with increased distance from the center of the field-of-view. The image quality can be improved by performing resolution recovery (RR) using a point spread function (PSF) which describes the response of the system to point source. For a high-resolution small animal PET scanner, we studied the resolution recovery modeling in projection-space using a Gaussian-PSF or Monte-Carlo (MC) simulated PSF. We also studied the RR in image-space using the Gaussian-PSF. For this work, we used data that were acquired by scanning a Micro Deluxe phantom and a healthy mouse. The resolution recovery approach which used Gaussian-PSF, with a fixed FWHM, improved the spatial resolution and enhanced image contrast compared to the standard image reconstruction. The resolution recovery method which used the MC simulated spatially variant-PSF further improved the resolution compared to the simple Gaussian-based PSF.
机译:PET扫描仪设计和图像重建方法的进步导致了高分辨率发射断层扫描仪的发展。传统的PET重建方法没有考虑响应线的位置不正确(视差误差),导致图像模糊,并且随着距视场中心距离的增加,失真也会增加。通过使用描述系统对点源响应的点扩展函数(PSF)执行分辨率恢复(RR),可以提高图像质量。对于高分辨率小动物PET扫描仪,我们使用高斯PSF或蒙特卡洛(MC)模拟的PSF研究了投影空间中的分辨率恢复模型。我们还使用高斯PSF研究了图像空间中的RR。对于这项工作,我们使用了通过扫描Micro Deluxe幻像和健康的老鼠而获得的数据。与标准图像重建相比,使用具有固定FWHM的高斯PSF的分辨率恢复方法提高了空间分辨率并增强了图像对比度。与简单的基于高斯的PSF相比,使用MC模拟的空间变异PSF的分辨率恢复方法进一步提高了分辨率。

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