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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Characterization of a high resolution and high sensitivity pre-clinical PET scanner with 3D event reconstruction
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Characterization of a high resolution and high sensitivity pre-clinical PET scanner with 3D event reconstruction

机译:具有3D事件重建的高分辨率,高灵敏度临床前PET扫描仪的表征

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COMPET is a preclinical PET scanner aiming towards a high sensitivity, a high resolution and MRI compatibility by implementing a novel detector geometry. In this approach, long scintillating LYSO crystals are used to absorb the y-rays. To determine the point of interaction (POI) between y-ray and crystal, the light exiting the crystals on one of the long sides is collected with wavelength shifters (WLS) perpendicularly arranged to the crystals. This concept has two main advantages: (1) The parallax error is reduced to a minimum and is equal for the whole field of view (FOV). (2) The POI and its energy deposit is known in all three dimension with a high resolution, allowing for the reconstruction of Compton scattered y-rays. Point (1) leads to a uniform point source resolution (PSR) distribution over the whole FOV, and also allows to place the detector close to the object being imaged. Both points (1) and (2) lead to an increased sensitivity and allow for both high resolution and sensitivity at the same time, while keeping a low number of readout channels.In total, COMPET incorporates 1080 readout channels (600 crystals, 480 WLS). It has an axial FOV of 80 mm and adjustable bore opening between 30 mm and 80 mm. It consists of four modules with five layers each. Simulations show a PSR of below 1 mm in the transaxial plane and a sensitivity of up to 16% in the center of the FOV. The readout is based on time over threshold signals, sampled with an FPGA, which allows for the measurement of high event rates at the order of mega-counts per seconds. Its compact design and compatibility to high magnetic fields will allow to use it as an insert for an already existing MRI scanner.A first semi-layer with 12 WLS and 10 LYSO crystal was built and connected to the COMPET readout system. Coincidence data between this module and a tagger crystal using a small Ge-68 and a 60 MBq F-18 source was taken.
机译:COMPET是一种临床前PET扫描仪,旨在通过实现新颖的探测器几何形状来实现高灵敏度,高分辨率和MRI兼容性。在这种方法中,长闪烁的LYSO晶体用于吸收y射线。为了确定y射线与晶体之间的相互作用点(POI),使用与晶体垂直排列的波长偏移器(WLS)收集长边之一上离开晶体的光。该概念具有两个主要优点:(1)视差误差减小到最小,并且对于整个视场(FOV)相等。 (2)POI及其能量沉积在三个维度上都具有很高的分辨率,可以重建康普顿散射y射线。点(1)导致整个FOV上均匀的点源分辨率(PSR)分布,并且还允许将检测器放置在靠近要成像的对象的位置。点(1)和(2)都导致灵敏度提高,并同时保持高分辨率和灵敏度,同时保持少量的读出通道.COMPET总共包含1080个读出通道(600个晶体,480 WLS )。它的轴向FOV为80毫米,可调节的孔径在30毫米至80毫米之间。它由四个模块组成,每个模块有五层。仿真显示,跨轴平面的PSR低于1 mm,FOV中心的灵敏度高达16%。读数基于超过阈值的信号,并通过FPGA进行采样,从而可以以每秒数百万的数量级测量高事件发生率。其紧凑的设计和对强磁场的兼容性将使其可用作已存在的MRI扫描仪的插入物。第一层具有12个WLS和10个LYSO晶体的半层被构建并连接到COMPET读出系统。使用小型Ge-68和60 MBq F-18光源获取该模块与标记晶体之间的重合数据。

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