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Monte Carlo feasibility study for in vivo small animals beta detection: From beta to cerenkov luminescence imaging

机译:体内小动物beta检测的蒙特卡罗可行性研究:从beta到cerenkov发光成像

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In this work we investigated using Monte Carlo simulations the feasibility of beta imaging of small animals with CLI, direct and indirect beta detection and bremsstrahlung using beta minus emitters. This study shows pro and cons of the different physical approaches for beta emitter imaging for small animals. Monte Carlo simulations were implemented using GAMOS plugin for GEANT4 considering a slab of mouse muscle and a radioactive source (32P or 90Y) placed at 0.5 mm depth. We found that direct beta detection and CLI are best approaches in term of resolution while the use of a thin scintillator increases the signal but the spatial resolution is degraded. Bremsstrahlung presents lower signal and it does not represent the best choice in small animal imaging. We conclude that CLI is a more flexible approach for in vivo beta minus emitter imaging.
机译:在这项工作中,我们使用蒙特卡洛模拟研究了使用CLI进行小型动物进行beta成像,使用beta负发射器进行直接和间接beta检测以及致辐射的可行性。这项研究显示了针对小动物的β发射体成像的不同物理方法的优缺点。使用GAMOS插件针对GEANT4进行了蒙特卡洛模拟,其中考虑了一块老鼠肌肉和放置在0.5毫米深度处的放射源(32P或90Y)。我们发现,就分辨率而言,直接beta检测和CLI是最好的方法,而使用薄型闪烁体会增加信号,但空间分辨率会降低。 ms致发光信号较低,在小动物成像中并不代表最佳选择。我们得出结论,CLI是用于体内β减去发射极成像的更灵活的方法。

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