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A high resolution TOF-PET concept with axial geometry and digital SiPM readout

机译:具有轴向几何形状和数字SiPM读数的高分辨率TOF-PET概念

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摘要

The axial arrangement of long scintillation crystals is a promising concept in PET instrumentation to address the need for optimized resolution and sensitivity. Individual crystal readout and arrays of wavelength shifter strips placed orthogonally to the crystals lead to a 3D-detection of the annihilations photons. A fully operational demonstrator scanner, developed by the AX-PET collaboration, proved the potential of this concept in terms of energy and spatial resolution as well as sensitivity. This paper describes a feasibility study, performed on axial prototype detector modules with 100 mm long LYSO crystals, read out by the novel digital Silicon Photomultipliers (dSiPM) from Philips. With their highly integrated readout electronics and excellent intrinsic time resolution, dSiPMs allow for compact, axial detector modules which may extend the potential of the axial PET concept by time of flight capabilities (TOF-PET). A coincidence time resolution of 211 ps (FWHM) was achieved in the coincidence of two axial modules read out by dSiPMs, fully maintaining the demonstrated performance of the AX-PET detector.
机译:在PET仪器中,长闪烁晶体的轴向排列是一个有前途的概念,可以满足对最佳分辨率和灵敏度的需求。与晶体正交放置的单个晶体读数和波长偏移带阵列可导致3D检测the灭光子。由AX-PET合作开发的功能齐全的演示扫描仪,从能量,空间分辨率以及灵敏度方面证明了这一概念的潜力。本文描述了一项可行性研究,该研究是在100毫米长的LYSO晶体的轴向原型探测器模块上进行的,该模型由飞利浦的新型数字硅光电倍增管(dSiPM)读出。凭借高度集成的读出电子设备和出色的固有时间分辨率,dSiPM允许使用紧凑的轴向检测器模块,从而可以通过飞行时间功能(TOF-PET)扩展轴向PET概念的潜力。通过dSiPM读取的两个轴向模块的重合实现了211 ps(FWHM)的重合时间分辨率,完全保持了AX-PET检测器的性能。

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