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A Monte Carlo study of high energy prompt gamma-ray detection with LSO crystals

机译:蒙特卡洛研究用LSO晶体进行高能瞬发伽马射线探测的研究

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摘要

A novel imaging approach for small animals (mice) has been proposed and investigated primarily by Monte Carlo simulation. The new approach is called prompt gamma-ray imaging or PGI. This approach consists of irradiating small animals in the thermal neutron beam of a nuclear reactor to produce prompt gamma rays from the elements in the sample by the radiative capture (n, /spl gamma/) reaction. These prompt gamma rays are emitted in energies and coincident chains that are characteristic of each element. Therefore, they can be used for imaging by using the principles derived from PET and SPECT imaging. In addition, the transmitted neutrons from the beam can be simultaneously used for very sensitive structure imaging, which provides the desired co-registration. For PET and SPECT imaging this must be obtained by a separate CT or MRI scanning device. In this new approach, the common gamma-ray energy range is from several kev to 11 Mev. The detection of high energy prompt gamma rays for this purpose is studied here by using currently available PET scanners; especially those that use LSO crystals. MCNP5is used to simulate these detection related issues.
机译:已经提出了一种针对小动物(小鼠)的新颖成像方法,并主要通过蒙特卡洛模拟进行了研究。这种新方法称为即时伽马射线成像或PGI。该方法包括在核反应堆的热中子束中照射小动物,以通过辐射捕获(n,/ spl gamma /)反应从样品中的元素产生快速的伽玛射线。这些迅速的伽马射线以能量和重合链发射,这是每个元素的特征。因此,它们可以通过使用源自PET和SPECT成像的原理进行成像。另外,从电子束传输来的中子可同时用于非常敏感的结构成像,从而提供所需的共配准。对于PET和SPECT成像,必须通过单独的CT或MRI扫描设备获得。在这种新方法中,常见的伽马射线能量范围是从几千伏到11兆瓦。为此,使用目前可用的PET扫描仪研究了为此目的而检测高能瞬发伽马射线的方法。特别是那些使用LSO晶体的晶体。 MCNP5用于模拟这些与检测相关的问题。

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