Department of Biomedical Engineering, Washington University in St Louis, St Louis, MO 63130, USA.
Phys Med Biol. 2012 May 7;57(9):2517-38. doi: 10.1088/0031-9155/57/9/2517. Epub 2012 Apr 11.
Virtual-pinhole PET (VP-PET) imaging is a new technology in which one or more high-resolution detector modules are integrated into a conventional PET scanner with lower resolution detectors. It can locally enhance the spatial resolution and contrast recovery near the add-on detectors, and depending on the configuration, may also increase the sensitivity of the system. This novel scanner geometry makes the reconstruction problem more challenging compared to the reconstruction of data from a stand-alone PET scanner, as new techniques are needed to model and account for the non-standard acquisition. In this paper, we present a general framework for fully 3D modeling of an arbitrary VP-PET insert system. The model components are incorporated into a statistical reconstruction algorithm to estimate an image from the multi-resolution data. For validation, we apply the proposed model and reconstruction approach to one of our custom-built VP-PET systems-a half-ring insert device integrated into a clinical PET/CT scanner. Details regarding the most important implementation issues are provided. We show that the proposed data model is consistent with the measured data, and that our approach can lead to reconstructions with improved spatial resolution and lesion detectability.
虚拟针孔 PET(VP-PET)成像是一种新技术,它将一个或多个高分辨率探测器模块集成到具有较低分辨率探测器的传统 PET 扫描仪中。它可以局部提高附加探测器附近的空间分辨率和对比度恢复,并且根据配置,还可能提高系统的灵敏度。与从独立 PET 扫描仪采集数据的重建相比,这种新型扫描仪几何形状使得重建问题更加具有挑战性,因为需要新技术来建模和说明非标准采集。在本文中,我们提出了一种用于任意 VP-PET 插入系统的完全 3D 建模的通用框架。模型组件被合并到统计重建算法中,以从多分辨率数据中估计图像。为了验证,我们将提出的模型和重建方法应用于我们的一个定制的 VP-PET 系统之一 - 集成到临床 PET/CT 扫描仪中的半环插入装置。提供了有关最重要的实现问题的详细信息。我们表明,所提出的数据模型与测量数据一致,并且我们的方法可以导致具有改进的空间分辨率和病变可检测性的重建。