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Mammography Tomosynthesis System for High Performance 3D Imaging

机译:高性能3D成像的乳房X线术造影系统

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Tomosynthesis provides a major advance in image quality compared to conventional projection mammography by effectively eliminating the effects of superimposed tissue on anatomical structures of interest. Early tomosynthesis systems focused primarily on feasibility assessment by providing 3-dimensional images to determine performance advantages. However, tomosynthesis image quality depends strongly on three key parameters: 1) detector performance at low dose, 2) angular range and number of projections acquired in the tomosynthesis scan, and 3) reconstruction algorithm processing characteristics used to create slice images from the measured projections. In this work, a new GE mammo-graphy tomosynthesis research system was developed that incorporates key improvements in each of these three areas compared to an early feasibility prototype system in use at Massachusetts General Hospital from 2000 to 2004. The performance gains that can be achieved by these enhancements are cha-racterized, and clinical images acquired with the system at the University of Michigan Cancer and Geriatrics Center are presented. The advanced research system also provides the ability to acquire mechanically co-registered x-ray tomosynthesis and ultrasound images of the breast, and initial dual modality images are also presented.
机译:通过有效地消除叠加组织对感兴趣的解剖结构的影响,Tomos合成在图像质量中提供了图像质量的主要前进。早期的自动合成系统主要专注于通过提供三维图像来确定性能优势的可行性评估。然而,Tomosynest图像质量在三个关键参数上强烈取决于:1)低剂量的检测器性能,2)角度范围和在断层合成扫描中获取的投影的数量,以及3)重建算法处理特性,用于从测量的投影中创建切片图像的重建算法处理特性。在这项工作中,开发了一种新的GE Mammo-Graphy Tomosynest研究系统,其在2000年至2004年的Massachusetts综合医院的早期可行性原型系统相比,这三个方面的每个三个方面的关键改进。可以实现的性能提升通过这些增强功能是Cha-actized,并提出了在密歇根大学癌症和老年教育中心的系统获得的临床图像。先进的研究系统还提供了获取机械共同登记的X射线X射线X射线的能力和超声图像的乳房,并且还呈现了初始双模态图像。

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