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首页> 外文期刊>Journal of Applied Physics >Iterative reconstruction using a Monte Carlo based system transfer matrix for dedicated breast positron emission tomography
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Iterative reconstruction using a Monte Carlo based system transfer matrix for dedicated breast positron emission tomography

机译:使用基于蒙特卡洛的系统转移矩阵进行迭代重建,以进行专用的乳房正电子发射断层扫描

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摘要

To maximize sensitivity, it is desirable that ring Positron Emission Tomography (PET) systems dedicated for imaging the breast have a small bore. Unfortunately, due to parallax error this causes substantial degradation in spatial resolution for objects near the periphery of the breast. In this work, a framework for computing and incorporating an accurate system matrix into iterative reconstruction is presented in an effort to reduce spatial resolution degradation towards the periphery of the breast. The GATE Monte Carlo Simulation software was utilized to accurately model the system matrix for a breast PET system. A strategy for increasing the count statistics in the system matrix computation and for reducing the system element storage space was used by calculating only a subset of matrix elements and then estimating the rest of the elements by using the geometric symmetry of the cylindrical scanner. To implement this strategy, polar voxel basis functions were used to represent the object, resulting in a block-circulant system matrix. Simulation studies using a breast PET scanner model with ring geometry demonstrated improved contrast at 45% reduced noise level and 1.5 to 3 times resolution performance improvement when compared to MLEM reconstruction using a simple line-integral model. The GATE based system matrix reconstruction technique promises to improve resolution and noise performance and reduce image distortion at FOV periphery compared to line-integral based system matrix reconstruction.
机译:为了最大程度地提高灵敏度,希望专用于对乳房成像的环形正电子发射断层扫描(PET)系统的孔径较小。不幸的是,由于视差误差,这导致靠近乳房外围的物体的空间分辨率大大降低。在这项工作中,提出了一种用于计算并将准确的系统矩阵合并到迭代重建中的框架,以减少朝向乳房外围的空间分辨率下降。利用GATE蒙特卡罗模拟软件对乳腺PET系统的系统矩阵进行精确建模。通过仅计算矩阵元素的一个子集,然后通过使用圆柱形扫描仪的几何对称性来估计其余元素,使用了一种用于增加系统矩阵计算中的计数统计量并减少系统元素存储空间的策略。为了实现该策略,使用极体素基本函数来表示对象,从而生成块循环系统矩阵。与具有简单线积分模型的MLEM重建相比,使用具有环形几何形状的胸部PET扫描仪模型进行的模拟研究表明,对比度降低了45%,噪声水平降低了,分辨率性能提高了1.5到3倍。与基于行积分的系统矩阵重构相比,基于GATE的系统矩阵重构技术有望提高分辨率和噪声性能,并减少FOV外围的图像失真。

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