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Simulation of a Compton-based Detector for Low-Dose High-Resolution Time-of-flight Positron Emission Tomography

Kepler Domurat-Sousa, Cameron M Poe, Maya S McDaniel, Eric Spieglan, Joao F Shida, Evan Angelico,Bernhard W Adams, Patrick J La Riviere,Henry J Frisch, Allison H Squires

ArXiv(2024)

Cited 1|Views23
Abstract
Two major challenges in time-of-flight positron emission tomography (TOF-PET) are low spatial resolution and high radioactive dose to the patient, both of which result from limitations in detection technology rather than fundamental physics. A new type of TOF-PET detector employing low-atomic number (low-Z) scintillation media and large-area, high-resolution photodetectors to record Compton scattering locations in the detector has been proposed as a promising alternative, but the minimum technical requirements for such a system have not yet been established. Here we present a simulation study evaluating the potential of a proposed low-Z detection medium, linear alkylbenzene (LAB) doped with a switchable molecular recorder, for next-generation TOF-PET detection. We developed a custom Monte Carlo simulation of full-body TOF-PET using the TOPAS Geant4 software package. By quantifying contributions and tradeoffs for energy, spatial, and timing resolution of the detector, we show that at reasonable combination of specifications, our likelihood-based identification of pairs of first interaction locations in the simulated detector identifies 87.1% of pairs with zero or negligible error, and correctly rejects 90% of all in-patient scatters. The same specifications give TOF-PET sensitivity of ~66.7% and PSF width 4.6 mm with clear contrast. A detector with these specifications provides a clear image of a brain phantom simulated at less than 1% of a standard radiotracer dose.
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Time-of-Flight PET,Radiation Detection,Scintillation Detectors,Neutron Detection,Neutron Lifetime Measurement
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要点】:该论文提出了一种使用低原子序数闪烁介质和大型高分辨率光检测器的TOF-PET探测器新设计,通过模拟评估了其对于下一代TOF-PET检测的潜力。

方法】:研究者使用TOPAS Geant4软件包开发了一个定制的三维蒙特卡洛模拟,以评估使用可切换分子记录器掺杂的线性烷基苯(LAB)作为低Z介质在TOF-PET中的应用潜力。

实验】:模拟结果显示,这种新型的低Z探测器在提高TOF-PET的灵敏度超过5倍的同时,保持了与现有技术相当或更好的空间分辨率,并且相比最先进的光学晶体材料,信噪比提高了40-50%。这些改进使得在低于标准放射性示踪剂剂量的1%下,也能清晰成像脑部模型,这可能为TOF-PET技术的广泛应用和新的临床应用打开了大门。