基于quadHIDAC测量的正电子湮灭非共线性的简单半经验模型

Don Vernekoh, K. Schafers, J. Wessels
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引用次数: 0

摘要

正电子湮灭非共线性是制约PET实现空间分辨率的物理因素之一。quadHIDAC是一种高分辨率小动物PET扫描仪,具有独特的检测原理,依靠多线比例室探测器。在22Na点源的模拟和测量比较中,观察到轻微的差异,这是由于所使用的非共线性模型的不适当。因此,建立了一个新的简单的非共线性模型,并根据观测数据进行了调整。本文将介绍quadHIDAC的独特特性,即在大径向偏移上测量单光子相互作用的高三维空间分辨率,为分离测量和模拟中的正电子范围和探测器分辨率影响提供了完美的环境。这使得研究由正电子发射源的湮灭非共线性引起的纯空间分辨率退化成为可能。此外,模拟,包括提出的非共线性实现,为可能改进的HIDAC设置在一个示范性斑马鱼发射模型上进行,其中不同设置的相关重建图像进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A simple semi-empirical model for positron annihilation non-collinearity based on quadHIDAC measurements
Positron annihilation non-collinearity is one physical factor that constraints the achievable spatial resolution in PET. The quadHIDAC is a high resolution small animal PET scanner with a unique detection principle, relying on multi-wire proportional chamber detectors. In a comparison of simulation and measurement of a 22Na point source, slight discrepancies are observed, which are addressed to an inappropriateness of the used non-collinearity model. Hence, a new simple model for non-collinearity is developed and adjusted to the observed data. It will be presented that the exclusive properties of the quadHIDAC, i.e., high 3D spatial resolution for single photon interactions measured on large radial offsets, offer a perfect environment to separate positron range and detector resolution influences from the measurements and simulations. This allows the investigation of the pure spatial resolution degradation induced by the annihilation non-collinearity of positron emitting sources. Furthermore, simulations, including the proposed non-collinearity implementation, for a possible improved HIDAC setup on an illustrative zebrafish emission model are performed, where associated reconstructed images for the different setups are compared.
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