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基于单个LYSO晶体管的啮齿动物PET扫描仪原型的实验验证。

Experimental validation of a rodent PET scanner prototype based on a single LYSO crystal tube.

作者信息

Freire Marta, Gonzalez-Montoro Andrea, Cañizares Gabriel, Rezaei Ahmadreza, Nuyts Johan, Berr Stuart S, Williams Mark B, Benlloch Jose M, Gonzalez Antonio J

机构信息

Instituto de Instrumentación para la Imagen Molecular (i3M-CSIC-UPV), Valencia, Spain.

Department of Imaging and Pathology, Nuclear Medicine & Molecular imaging, KU Leuven, Leuven, Belgium.

出版信息

IEEE Trans Radiat Plasma Med Sci. 2022 Jul;6(6):697-706. doi: 10.1109/trpms.2021.3124448. Epub 2021 Nov 1.

Abstract

Improving sensitivity and spatial resolution in small animal Positron Emission Tomography imaging instrumentation constitutes one of the main goals of nuclear imaging research. These parameters are degraded by the presence of gaps between the detectors. The present manuscript experimentally validates our prototype of an edge-less pre-clinical PET system based on a single LYSO:Ce annulus with an inner diameter of 62 mm and 10 outer facets of 26 × 52 mm. Scintillation light is read out by arrays of 8 × 8 SiPMs coupled to the facets, using a projection readout of the rows and columns signals. The readout provides accurate Depth of Interaction (DOI). We have implemented a calibration that mitigates the DOI-dependency of the transaxial and axial impact coordinates, and the energy photopeak gain. An energy resolution of 23.4 ± 1.8% was determined. Average spatial resolution of 1.4 ± 0.2 and 1.3 ± 0.4 mm FWHM were achieved for the radial and axial directions, respectively. We found a peak sensitivity of 3.8% at the system center, and a maximum NECR at 40.6 kcps for 0.27 mCi. The image quality was evaluated using reconstructed images of an array of sources and the NEMA image quality phantom was also studied.

摘要

提高小动物正电子发射断层扫描成像设备的灵敏度和空间分辨率是核成像研究的主要目标之一。探测器之间的间隙会降低这些参数。本文通过实验验证了我们基于单个内径为62毫米、有10个26×52毫米外侧面的LYSO:Ce环的无边缘临床前PET系统原型。闪烁光由耦合到侧面的8×8硅光电倍增管阵列读出,采用行和列信号的投影读出方式。该读出方式可提供准确的相互作用深度(DOI)。我们实施了一种校准,以减轻横向和轴向撞击坐标以及能量光电峰增益对DOI的依赖性。确定能量分辨率为23.4±1.8%。径向和轴向方向的平均空间分辨率分别达到1.4±0.2和1.3±0.4毫米半高宽。我们发现系统中心的峰值灵敏度为3.8%,对于0.27毫居里,最大归一化等效计数率在40.6千计数每秒。使用源阵列的重建图像评估图像质量,并对NEMA图像质量体模进行了研究。

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