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Feasibility study on TOF-PET with fill factor improved SiPMs

机译:填充因子改进的SiPM的TOF-PET的可行性研究

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Due to the uncertainty of the annihilation event's position along a given line-of-response (LOR), there is a large amount of statistical noise that is inherent to conventional PET image reconstruction. To overcome the poor spatial resolution of PET, time-of-flight positron emission tomography (TOF-PET) has been suggested. The use of the time-of-flight PET provides significant improvements to the image quality and 3 dimensional imaging, in this study, 2×2 mm~2 SiPMs, operated in the Geiger avalanche mode, were designed and fabricated on epitaxial silicon wafers. Fabricated SiPMs whose doping structure is N + /P/π/P + , have a high geometric fill-factor with quenching resistors of the high resistive poly-silicon layer and a high sensitivity to short-wavelength light with the shallow-junction. Fundamental characteristics of SiPM were measured and analyzed. Achievable timing resolution was investigated and quantified with a LYSO crystal and SiPMs.
机译:由于the灭事件沿给定响应线(LOR)的位置存在不确定性,因此存在大量常规PET图像重建固有的统计噪声。为了克服PET的较差的空间分辨率,已经提出了飞行时间正电子发射断层扫描(TOF-PET)。飞行时间PET的使用显着改善了图像质量和3D成像,在这项研究中,在外延硅晶片上设计并制造了以Geiger雪崩模式运行的2×2 mm〜2 SiPM。掺杂结构为N + / P /π/ P +的已制造SiPM具有高几何填充系数,并具有高电阻多晶硅层的淬灭电阻,并且对浅结的短波长光具有高灵敏度。测量并分析了SiPM的基本特性。使用LYSO晶体和SiPM对可实现的定时分辨率进行了研究和量化。

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