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Spatial resolution of the Multiple Coincidences Compton Camera

机译:多重巧合康普顿相机的空间分辨率

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In this paper we investigate the limits of spatial image resolution of Multiple Coincidences Compton Camera (MCCC). This technique is based on a simultaneous acquisition of several gammas emitted in cascade from a single nucleus. Contrary to a standard Compton camera, MCCC can theoretically provide a location of a radioactive source without complicated tomographic reconstruction. The commonly mentioned disadvantage of this method is the low probability of coincident triple gamma detection, which is necessary for the source localization. In this paper we investigate an additional fundamental restriction of the multiple coincidence approach which seriously limits the image resolution that can be achieved by MCCC. Our results suggest that it is possible to get better result in terms of spatial image resolution by reconstructing the Compton camera data without multiple coincidence principle than when using the MCCC concept.
机译:在本文中,我们研究了多重巧合康普顿相机(MCCC)的空间图像分辨率的局限性。该技术基于从单个核级联发射的几个伽马的同时采集。与标准的康普顿相机相反,MCCC在理论上可以提供放射源的位置,而无需进行复杂的层析成像重建。该方法通常提到的缺点是同时进行三重伽马检测的可能性较低,这对于源定位是必需的。在本文中,我们研究了多重重合方法的其他基本限制,该限制严重限制了MCCC可以实现的图像分辨率。我们的结果表明,与使用MCCC概念相比,通过不具有多个重合原理的康普顿相机数据来重建康普顿相机数据,可以获得更好的空间图像分辨率结果。

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