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Gamma-Ray imaging for nuclear security and safety: Towards 3-D gamma-ray vision

机译:用于核保安和安全的伽马射线成像:迈向3D伽马射线视觉

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摘要

The development of portable gamma-ray imaging instruments in combination with the recent advances in sensor and related computer vision technologies enable unprecedented capabilities in the detection, localization, and mapping of radiological and nuclear materials in complex environments relevant for nuclear security and safety. Though multi-modal imaging has been established in medicine and biomedical imaging for some time, the potential of multi-modal data fusion for radiological localization and mapping problems in complex indoor and outdoor environments remains to be explored in detail. In contrast to the well-defined settings in medical or biological imaging associated with small field-of-view and well-constrained extension of the radiation field, in many radiological search and mapping scenarios, the radiation fields are not constrained and objects and sources are not necessarily known prior to the measurement The ability to fuse radiological with contextual or scene data in three dimensions, in analog to radiological and functional imaging with anatomical fusion in medicine, provides new capabilities enhancing image clarity, context, quantitative estimates, and visualization of the data products. We have developed new means to register and fuse gamma-ray imaging with contextual data from portable or moving platforms. These developments enhance detection and mapping capabilities as well as provide unprecedented visualization of complex radiation fields, moving us one step closer to the realization of gamma-ray vision in three dimensions.
机译:便携式伽马射线成像仪器的发展与传感器和相关计算机视觉技术的最新发展相结合,使得在与核安保和安全相关的复杂环境中对放射性和核材料的检测,定位和标测具有空前的能力。尽管在医学和生物医学成像领域已经建立了多模态成像技术已有一段时间,但仍有待详细探讨在复杂的室内和室外环境中进行多模态数据融合解决放射定位和制图问题的潜力。与医学或生物成像中定义良好的设置(与视野较小且辐射场扩展受到严格限制)相比,在许多放射学搜索和制图场景中,辐射场不受限制,对象和源是受限的在测量之前未必知道三维融合放射学与上下文或场景数据的能力,类似于放射学和功能成像以及医学中的解剖学融合,提供了增强图像清晰度,上下文,定量估计和可视化的新功能。数据产品。我们已经开发出新的方法来将伽马射线成像与来自便携式或移动平台的上下文数据配准并融合。这些发展增强了检测和测绘功能,并提供了复杂辐射场的空前可视化,使我们向实现三维三维视觉的方向迈进了一步。

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