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Optimization of a depth of interaction encoding PET block detector for a PET/MRI insert

机译:用于PET / MRI插入物的相互作用深度编码PET块检测器的优化

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摘要

Preclinical positron emission tomography, combined with magnetic resonance imaging (PET/MRI), is increasingly used as a tool to simultaneously characterize functional processes in vivo. Many emerging preclinical applications, however, are limited by PET detection sensitivity, especially when generating short imaging frames for quantitative studies. One such application is dynamic multifunctional imaging, which probes multiple aspects of a biological process, using relationships between the datasets to quantify interactions. These studies have limited accuracy due to the relatively low sensitivity of modern preclinical PET/MRI systems.The goal of this project is to develop a preclinical PET/MRI insert with detection sensitivity above 15% (250–750 keV) to improve quantitation in dynamic PET imaging. To achieve this sensitivity, we have developed a detector module incorporating a 2 cm thick crystal block, which will be arranged into a system with 8 cm axial FOV, targeting mice and rats. To maintain homogenous spatial resolution, the detector will incorporate dual-ended depth-of-interaction (DOI) encoding with silicon photomultiplier (SiPM) based photodetector arrays. The specific aim of this work is to identify a detector configuration with adequate performance for the proposed system. We have optimized the SiPM array geometry and tested two crystal array materials with pitch ranging from 0.8 to 1.2 mm and various surface treatments and reflectors. From these configurations, we have identified the best balance between crystal separation, energy resolution, and DOI resolution.The final detector module uses two rectangular SiPM arrays with 5 × 6 and 5 × 4 elements. The photodetector arrays are coupled to a 19 × 19 array of 1 mm pitch LYSO crystals with polished surfaces and a diffuse reflector. The prototype design has 14.3% ± 2.9% energy resolution, 3.57 ± 0.88 mm DOI resolution, and resolves all elements in the crystal array, giving it sufficient performance to serve as the basis for the proposed high sensitivity PET/MRI insert.
机译:临床前正电子发射断层扫描与磁共振成像(PET / MRI)结合越来越多地用作同时表征体内功能过程的工具。然而,许多新兴的临床前应用受到PET检测灵敏度的限制,尤其是在生成用于定量研究的短成像框架时。一种这样的应用是动态多功能成像,它利用数据集之间的关系来量化相互作用,从而探测生物过程的多个方面。由于现代临床前PET / MRI系统的灵敏度相对较低,因此这些研究的准确性有限。该项目的目标是开发临床前PET / MRI插入物,其检测灵敏度超过15%(250–750 keV),以改善动态定量PET成像。为了达到这种灵敏度,我们开发了一种检测器模块,该模块包含一个2 cm厚的晶体块,该模块将被布置成一个轴向COV为8 cm的系统,以老鼠和大鼠为目标。为了保持均匀的空间分辨率,该探测器将结合双端交互深度(DOI)编码和基于硅光电倍增管(SiPM)的光电探测器阵列。这项工作的特定目的是为所建议的系统确定具有适当性能的检测器配置。我们优化了SiPM阵列的几何形状,并测试了两种晶体阵列材料,其间距从0.8到1.2 mm,并进行了各种表面处理和反射。通过这些配置,我们确定了晶体分离,能量分辨率和DOI分辨率之间的最佳平衡。最终的检测器模块使用两个具有5×6和5×4元素的矩形SiPM阵列。光电探测器阵列耦合到19×19的1 mm间距LYSO晶体阵列,该阵列具有抛光表面和漫反射器。原型设计具有14.3%±2.9%的能量分辨率,3.57±0.88 mm DOI分辨率,并解析了晶体阵列中的所有元素,使其具有足够的性能,可作为拟议的高灵敏度PET / MRI插入物的基础。

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