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Dual-energy computed radiography: improvements in processing

机译:双能计算机射线照相:处理方面的改进

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Abstract: We have reported on a single-exposure dual-energy system based on computed radiography (CR) technology. In a clinical study conducted over a two year period, the dual-energy system proved to be highly successful in improving the detection (p=0.0005) and characterization (p=0.005) of pulmonary nodules when compared to conventional screen-film radiography. The basic components of our dual-energy detector system include source filtration with gadolinium to produce a bi-modal x-ray spectrum and a cassette containing four CR imaging plates. The front and back plates record the low-energy and high-energy images, respectively, and the middle two plates serve as an intermediate filter. Since our initial report, a number of improvements have been made to make the system more practical. An automatic registration algorithm based on image features has been developed to align the front and back image plates. There have been two improvements in scatter correction: a simple correction is now made to account for scatter within the multi-plate detector; and a correction algorithm is applied to account for scatter variations between patients. An improved basis material decomposition (BMD) algorithm has been developed to facilitate automatic operation of the algorithm. Finally, two new noise suppression techniques are under investigation: one adjusts the noise filtering parameters depending on the strength of edge signals in the detected image in order to greatly reduce quantum mottle while minimizing the introduction of artifacts; a second routine uses knowledge of the region of valid low-energy and high-energy image data to suppress noise with minimal introduction of artifacts. This paper is a synthesis of recent work aimed at improving the performance of dual-energy CR conducted at three institutions: Philips Medical Systems, the University of Wisconsin, and Duke University. !27
机译:摘要:我们已经报道了一种基于计算机射线照相(CR)技术的单曝光双能量系统。在一项为期两年的临床研究中,与常规的屏幕胶片X射线照相术相比,双能系统被证明在改善肺结节的检测(p = 0.0005)和表征(p = 0.005)方面非常成功。我们的双能量检测器系统的基本组件包括使用source进行源过滤以产生双峰X射线光谱以及包含四个CR成像板的暗盒。前板和后板分别记录低能量和高能量图像,中间的两个板用作中间滤镜。自从我们的初次报告以来,为了使该系统更加实用,已经进行了许多改进。已经开发了基于图像特征的自动配准算法来对齐正面和背面印版。散射校正有两个改进:现在进行简单校正以解决多板检测器中的散射;并应用校正算法来解决患者之间的分散差异。已经开发了一种改进的基础材料分解(BMD)算法,以促进该算法的自动操作。最后,正在研究两种新的噪声抑制技术:一种是根据检测到的图像中边缘信号的强度来调整噪声过滤参数,以在最大程度减少量子斑驳的同时最大程度地减少伪影的引入。第二例程使用有效的低能量和高能量图像数据区域的知识来抑制噪声,同时减少伪影。本文是对旨在改善双能CR性能的最新工作的总结,该工作在以下三个机构进行:飞利浦医疗系统,威斯康星大学和杜克大学。 !27

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