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System modeling of a DOI-capable half-ring PET insert device for breast cancer imaging

机译:用于乳腺癌成像的能力发球式半环PET插入装置的系统建模

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We have developed a new type of PET insert system that, when integrated into a whole-body PET scanner, offers the possibility of imaging the breast and chest wall region with higher resolution and sensitivity than a whole-body PET scanner alone. The focus of this paper is to describe a system model that can be used within a fully 3D iterative reconstruction algorithm to accurately model the measured data. We have modeled the most important components of the system matrix, including the spatially-variant geometric factor, inter-crystal penetration, and body attenuation. Due to the irregular sampling of the insert system, we compute the system matrix using the native detector geometry. Based on subdividing each detector volume into subvolumes, we show that this approach can model DOI crystals and non-DOI crystals under a common framework. We present some of our first results using data acquired by the physical PET insert system. More detailed modeling or normalization strategies will need to be employed to obtain the most benefit from the reconstruction algorithm.
机译:我们已经开发了一种新型的PET插入系统,当集成到全身PET扫描仪中时,提供了比全身PET扫描仪更高的分辨率和灵敏度对乳房和胸壁区域进行成像的可能性。本文的重点是描述一种系统模型,可以在完全3D迭代重建算法内用于准确地模拟测量数据。我们已经建模了系统矩阵最重要的组件,包括空间变体几何因子,晶体间穿透和身体衰减。由于插入系统的不规则采样,我们使用本机检测器几何来计算系统矩阵。基于将每个探测器体积细分为亚波质,我们表明这种方法可以在共同框架下模拟DOI晶体和非DOI晶体。我们使用物理宠物插入系统获取的数据展示我们的一些第一个结果。需要采用更详细的建模或正常化策略来获得重建算法中最有利的策略。

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