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首页> 外文期刊>Journal of instrumentation: an IOP and SISSA journal >Design and performance evaluation of high resolution small animal PET scanner based on monolithic crystal: a simulation study
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Design and performance evaluation of high resolution small animal PET scanner based on monolithic crystal: a simulation study

机译:基于单片晶体的高分辨率小动物PET扫描仪的设计与性能评价:模拟研究

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摘要

Dedicated small-animal PET scanners functionality can be optimized by improving the sensitivity and spatial resolution of the scanner. Approximately most of the developed and commercially available small-animal PET scanners are equipped with pixelated scintillators; therefore, their spatial resolution is limited to the crystal pixel size. Complex fabrication, low-sensitivity, and disability in depth of interaction calculation (DOI) are the major disadvantages of pixelated crystals. However, monolithic scintillator crystals are known as one of the most commonly used substitutions, as they have higher sensitivity, DOI recognition, and lower cost. We already designed and implemented a dedicated small-animal PET scanner based on pixelated scintillator crystals and silicon photomultiplier (SiPM). In this study, we plan to present a newoptimized design based on the monolithic crystal, with similar performance by the previous scanner. Then we would optimize the thickness of the monolithic crystals for animal PET scanners as a function of sensitivity and spatial resolution. All simulations were performed based on GEANT4, a validated Monte Carlo toolkit. We simulated a recently fabricated scanner with pixelated crystals and compared it with a simulated scanner based on an optimized monolithic crystal. The experimental setup used for comparison and validation is a small Animal PET consisting of ten pixelated modules. This study anticipates that by replacing a pixelated crystal (consist of 24 × 24 LYSO elements, and 2 × 2 × 10mm~3 crystal size) with a monolithic crystal (with 8mm thickness and 50.2 × 50.2 entrance area), the average spatial resolution stays the same and sensitivity grows ~ 17% in the center of AFOV and also the fabrication cost dives remarkably. Simulation reveals that although the depth of interaction DOI was not taken into consideration, the crystals with 6mmthickness have acceptable spatial resolution (~ 1.3mm FWHM at the centre of the AFOV) and relativ
机译:可以通过提高扫描仪的灵敏度和空间分辨率来优化专用的小动物PET扫描仪功能。大部分开发和市售的小型动物PET扫描仪配有像素化闪烁体;因此,它们的空间分辨率限于晶体像素尺寸。在相互作用计算深度(DOI)深度的复杂制造,低灵敏度和残疾是像素化晶体的主要缺点。然而,单片闪烁体晶体被称为最常用的取代之一,因为它们具有更高的灵敏度,DOI识别和更低的成本。我们已经根据像素化闪烁体晶体和硅光电倍增器(SIPM)设计和实施了专用的小型动物PET扫描仪。在本研究中,我们计划基于单片晶体呈现新优化的设计,通过先前的扫描仪具有类似的性能。然后我们将优化动物PET扫描仪整体晶体的厚度,作为灵敏度和空间分辨率的函数。所有模拟都是基于Geant4进行的,经过验证的Monte Carlo Toolkit。我们模拟了最近制造的扫描仪具有像素化晶体,并基于优化的单片晶体与模拟扫描仪进行比较。用于比较和验证的实验设置是由十个像素化模块组成的小动物宠物。该研究预期通过用单片晶体(具有8mm厚度和50.2×50.2入口区域)的单片晶体(具有24×24 Lyso元素和2×2×10mm〜3晶体尺寸),平均空间分辨率停留同样的和敏感性在AFOV的中心生长〜17%,并且制造成本显着潜水。仿真揭示了,尽管没有考虑互动的深度,但具有6mmthickness的晶体具有可接受的空间分辨率(在AFOV中心〜1.3mm fwhm)和相对

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