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TandemPET- A High Resolution Small Animal Virtual Pinhole-Based PET Scanner: Initial Design Study

机译:TandemPET-高分辨率小动物基于虚拟针孔的PET扫描仪:初始设计研究

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摘要

Mice are the perhaps the most common species of rodents used in biomedical research, but many of the current generation of small animal PET scanners are non-optimal for imaging these small rodents due to their relatively low resolution. Consequently, a number of researchers have investigated the development of high-resolution scanners to address this need. In this investigation, the design of a novel, high-resolution system based on the dual-detector, virtual-pinhole PET concept was explored via Monte Carlo simulations. Specifically, this system, called TandemPET, consists of a 5 cm × 5 cm high-resolution detector made-up of a 90 × 90 array of 0.5 mm × 0.5 mm × 10 mm (pitch= 0.55 mm) LYSO detector elements in coincidence with a lower resolution detector consisting of a 68 × 68 array of 1.5 mm × 1.5 mm × 10 mm LYSO detector elements (total size= 10.5 cm × 10.5 cm). Analyses indicated that TandemPET’s optimal geometry is to position the high-resolution detector 3 cm from the center-of-rotation, with the lower resolution detector positioned 9 cm from center. Measurements using modified NEMA NU4-2008-based protocols revealed that the spatial resolution of the system is ~0.5 mm FWHM, after correction of positron range effects. Peak sensitivity is 2.1%, which is comparable to current small animal PET scanners. Images from a digital mouse brain phantom demonstrated the potential of the system for identifying important neurological structures.
机译:小鼠可能是生物医学研究中使用的最常见的啮齿动物物种,但是由于它们的分辨率相对较低,当前许多小型动物PET扫描仪中的许多都不适合对这些小型啮齿动物进行成像。因此,许多研究人员已经研究了高分辨率扫描仪的开发来满足这一需求。在这项调查中,通过蒙特卡洛模拟研究了基于双检测器虚拟针孔PET概念的新型高分辨率系统的设计。具体而言,称为TandemPET的系统由5 cm×5 cm高分辨率检测器组成,该检测器由90×90阵列的0.5 mm×0.5 mm×10 mm(间距= 0.55 mm)的LYSO检测器元件组成,与分辨率较低的检测器,由68×68的1.5 mm×1.5 mm×10 mm LYSO检测器元件组成(总尺寸= 10.5 cm×10.5 cm)。分析表明,TandemPET的最佳几何形状是将高分辨率检测器放置在距旋转中心3厘米处,将较低分辨率检测器放置在距旋转中心9厘米处。使用修正的基于NEMA NU4-2008的协议进行的测量表明,在校正正电子距离效应后,系统的空间分辨率约为0.5 mm FWHM。峰灵敏度为2.1%,与当前的小型动物PET扫描仪相当。来自数字鼠标大脑幻影的图像证明了该系统识别重要神经系统结构的潜力。

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