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Compton scattering imaging system with two scanning configurations

机译:康普顿散射成像系统,具有两种扫描配置

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The judicious use of Compton scattered radiation continues to be a relevant challenge for the future of tomographic imaging. In this context, a new modality of Compton scattering tomography has been recently proposed. This new system has the advantage of being fixed, with a source and detectors placed on a ring passing through the source. The objective of this paper is to explore new possibilities for this new modality: scanning both small and large objects via a double scanning configuration. In fact, when an object under study is small and can be placed inside the detector ring, its scanning will be performed by the interior configuration. Otherwise, a large object placed outside the system will be scanned by the exterior configuration. The modeling of data acquisition of these two scanning modes leads to a new Radon transform on circular arcs (CirArcRT), established for the first time. Image reconstruction requires the inversion of CirArcRT, which is obtained via geometric inversion (GI). In fact, GI allows converting the circular arcs into corresponding half-lines, and consequently, the CirArcRT into a new Radon transform on half-lines, whose inversion is established. Numerical simulations are carried out to demonstrate the feasibility of the new modality. The ability for the same system to scan both small and large objects enlarges the fields of applications for tomography from biomedical imaging to nondestructive testing in industry as well as cultural heritage objects imaging. (C) 2020 SPIE and IS&T
机译:康普顿分散的辐射的明智使用仍然是断层影像未来的有关挑战。在这方面,最近已经提出了康普顿散射断层扫描的新模式。这种新系统具有固定的优点,具有放置在通过源的环上的源和探测器。本文的目的是探讨这种新模型的新可能性:通过双扫描配置扫描小型和大物体。事实上,当正在研究的物体小并且可以放置在检测器环内时,其扫描将由内部配置执行。否则,将通过外部配置扫描放置在系统外部的大物体。这些两种扫描模式的数据采集的建模导致了第一次建立的圆弧(Cirarcrt)上的新氡变换。图像重建需要Cirarcrt的反转,通过几何反转(Gi)获得。事实上,GI允许将圆弧转换为相应的半线,因此,Cirarcrt进入半线上的新氡变换,其反转。进行了数值模拟,以证明新型方式的可行性。扫描小型和大物体的相同系统的能力将从生物医学成像从生物医学成像到工业中的非破坏性测试以及文化遗产对象成像来扩大了分层的应用领域。 (c)2020个SPIE和IS&T

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