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3-D localization of radioactive hotspots via portable gamma cameras

机译:通过便携式伽马相机对放射性热点进行3D定位

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摘要

A portable stereo gamma camera has been built, based on two hybrid pixelated detectors, each of them comprising a 1 mm thick CdTe substrate bump-bonded to the Timepix readout chip, a pixelated CMOS ASIC consisting of 256 x 256 pixels with 55 mu m pitch.The technique described in this paper allows the automatic estimation of the distances between the prototype and the located radioactive sources by using triangulation based on epipolar geometry. The 3-D Cartesian coordinates of the sources are provided even when they are hidden behind an occluding material, such as a wall, or inside a barrel. Furthermore, the combination of the prototype with a depth sensor enables a wide range of applications, including the 3-D volumetric reconstruction of the scene under study as well as the capability of autonomously determining if an object is occluding the located radioactive sources.We discuss here the main features of the whole methodology developed and we also present the experimental results obtained at laboratory scale.
机译:基于两个混合像素化检测器,构建了一个便携式立体声伽玛相机,每个检测器都包含一个凸块结合到Timepix读出芯片上的1毫米厚CdTe基板,一个像素化CMOS ASIC,由256 x 256个像素组成,间距为55μm本文所述的技术允许通过使用基于对极几何的三角测量来自动估计原型与所定位的放射源之间的距离。即使将源隐藏在诸如墙壁之类的阻塞材料或枪管内部,也可以提供源的3-D笛卡尔坐标。此外,将原型与深度传感器结合使用可实现广泛的应用,包括正在研究的场景的3D体积重建以及自主确定物体是否正在遮挡定位的放射源的能力。在这里,开发了整个方法的主要特征,我们还介绍了在实验室规模获得的实验结果。

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