...
首页> 外文期刊>Medical Physics >Anniversary paper: History and status of CAD and quantitative image analysis: the role of Medical Physics and AAPM.
【24h】

Anniversary paper: History and status of CAD and quantitative image analysis: the role of Medical Physics and AAPM.

机译:周年纪念论文:CAD的历史和现状以及定量图像分析:医学物理学和AAPM的作用。

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The roles of physicists in medical imaging have expanded over the years, from the study of imaging systems (sources and detectors) and dose to the assessment of image quality and perception, the development of image processing techniques, and the development of image analysis methods to assist in detection and diagnosis. The latter is a natural extension of medical physicists' goals in developing imaging techniques to help physicians acquire diagnostic information and improve clinical decisions. Studies indicate that radiologists do not detect all abnormalities on images that are visible on retrospective review, and they do not always correctly characterize abnormalities that are found. Since the 1950s, the potential use of computers had been considered for analysis of radiographic abnormalities. In the mid-1980s, however, medical physicists and radiologists began major research efforts for computer-aided detection or computer-aided diagnosis (CAD), that is, using the computer output as an aid to radiologists-as opposed to a completely automatic computer interpretation-focusing initially on methods for the detection of lesions on chest radiographs and mammograms. Since then, extensive investigations of computerized image analysis for detection or diagnosis of abnormalities in a variety of 2D and 3D medical images have been conducted. The growth of CAD over the past 20 years has been tremendous-from the early days of time-consuming film digitization and CPU-intensive computations on a limited number of cases to its current status in which developed CAD approaches are evaluated rigorously on large clinically relevant databases. CAD research by medical physicists includes many aspects-collecting relevant normal and pathological cases; developing computer algorithms appropriate for the medical interpretation task including those for segmentation, feature extraction, and classifier design; developing methodology for assessing CAD performance; validating the algorithms using appropriate cases to measure performance and robustness; conducting observer studies with which to evaluate radiologists in the diagnostic task without and with the use of the computer aid; and ultimately assessing performance with a clinical trial. Medical physicists also have an important role in quantitative imaging, by validating the quantitative integrity of scanners and developing imaging techniques, and image analysis tools that extract quantitative data in a more accurate and automated fashion. As imaging systems become more complex and the need for better quantitative information from images grows, the future includes the combined research efforts from physicists working in CAD with those working on quantitative imaging systems to readily yield information on morphology, function, molecular structure, and more-from animal imaging research to clinical patient care. A historical review of CAD and a discussion of challenges for the future are presented here, along with the extension to quantitative image analysis.
机译:多年来,物理学家在医学成像中的作用不断扩大,从对成像系统(源和检测器)和剂量的研究到对图像质量和感知的评估,图像处理技术的发展以及图像分析方法的发展,一直到协助检测和诊断。后者是医学物理学家在开发成像技术以帮助医师获得诊断信息并改善临床决策方面目标的自然延伸。研究表明,放射科医生不会在回顾性检查中可见的图像上检测到所有异常,并且他们并不总是正确地表征发现的异常。自1950年代以来,一直考虑使用计算机来分析放射线异常。然而,在1980年代中期,医学物理学家和放射科医生开始了针对计算机辅助检测或计算机辅助诊断(CAD)的重大研究工作,即使用计算机输出作为放射科医生的辅助工具,而不是使用全自动计算机。解释首先集中于在胸部X光片和X光照片上检测病变的方法。从那时起,已经进行了广泛的计算机图像分析研究,以检测或诊断各种2D和3D医学图像中的异常。在过去的20年中,CAD的增长是巨大的-从耗时的胶片数字化和CPU密集型计算的早期开始(在有限的情况下)到目前的状态,在此状态下已对大型临床相关的CAD方法进行了严格的评估数据库。医学物理学家的CAD研究包括许多方面-收集相关的正常和病理病例;开发适合于医学解释任务的计算机算法,包括用于分割,特征提取和分类器设计的算法;开发评估CAD性能的方法;使用适当的情况验证算法,以衡量性能和鲁棒性;在不使用计算机辅助工具的情况下进行观察者研究,以评估放射科医生的诊断任务;并最终通过临床试验评估效果。通过验证扫描仪的定量完整性和开发成像技术,以及以更准确和自动化的方式提取定量数据的图像分析工具,医学物理学家在定量成像中也起着重要作用。随着成像系统变得越来越复杂,从图像中获取更好的定量信息的需求不断增长,未来将包括从事CAD工作的物理学家与从事定量成像系统研究的人们的联合研究工作,以轻松获得有关形态,功能,分子结构等方面的信息从动物影像研究到临床病人护理。本文介绍了CAD的历史回顾和对未来挑战的讨论,以及对定量图像分析的扩展。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号