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Medical imaging, PACS, and imaging informatics: retrospective.

机译:医学影像,PACS和影像信息学:回顾性研究。

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Historical reviews of PACS (picture archiving and communication system) and imaging informatics development from different points of view have been published in the past (Huang in Euro J Radiol 78:163-176, 2011; Lemke in Euro J Radiol 78:177-183, 2011; Inamura and Jong in Euro J Radiol 78:184-189, 2011). This retrospective attempts to look at the topic from a different angle by identifying certain basic medical imaging inventions in the 1960s and 1970s which had conceptually defined basic components of PACS guiding its course of development in the 1980s and 1990s, as well as subsequent imaging informatics research in the 2000s. In medical imaging, the emphasis was on the innovations at Georgetown University in Washington, DC, in the 1960s and 1970s. During the 1980s and 1990s, research and training support from US government agencies and public and private medical imaging manufacturers became available for training of young talents in biomedical physics and for developing the key components required for PACS development. In the 2000s, computer hardware and software as well as communication networks advanced by leaps and bounds, opening the door for medical imaging informatics to flourish. Because many key components required for the PACS operation were developed by the UCLA PACS Team and its collaborative partners in the 1980s, this presentation is centered on that aspect. During this period, substantial collaborative research efforts by many individual teams in the US and in Japan were highlighted. Credits are due particularly to the Pattern Recognition Laboratory at Georgetown University, and the computed radiography (CR) development at the Fuji Electric Corp. in collaboration with Stanford University in the 1970s; the Image Processing Laboratory at UCLA in the 1980s-1990s; as well as the early PACS development at the Hokkaido University, Sapporo, Japan, in the late 1970s, and film scanner and digital radiography developed by Konishiroku Photo Ind. Co. Ltd. (Konica-Minolta), Japan, in the 1980-1990s. Major support from the US National Institutes of Health and other federal agencies and private medical imaging industry are appreciated. The NATO (North Atlantic Treaty Organization) Advanced Study Institute (ASI) sponsored the International PACS Conference at Evian, France, in 1990, the contents and presentations of which convinced a half dozen high-level US military healthcare personnel, including surgeons and radiologists, that PACS was feasible and would greatly streamline the current military healthcare services. The impact of the post-conference summary by these individuals to their superiors opened the doors for long-term support of PACS development by the US Military Healthcare Services. PACS and imaging informatics have thus emerged as a daily clinical necessity.
机译:过去已经发表过从不同角度对PACS(图片存档和通信系统)和影像信息学发展的历史评论(Huang in Euro J Radiol 78:163-176,2011; Lemke in Euro J Radiol 78:177-183 ,2011; Inamura和Jong在Euro J Radiol 78:184-189,2011中)。本回顾性研究试图通过识别1960年代和1970年代的某些基础医学影像学发明,从不同的角度看待这个主题,这些发明在概念上定义了指导PACS在1980年代和1990年代发展的基本组成部分,以及随后的影像学信息学研究。在2000年代。在医学成像方面,重点是1960年代和1970年代华盛顿特区的乔治城大学的创新。在1980年代和1990年代,美国政府机构以及公共和私人医学成像制造商提供了研究和培训支持,以培训生物医学物理学的年轻人才并开发PACS开发所需的关键组件。在2000年代,计算机硬件和软件以及通信网络得到了突飞猛进的发展,为医学影像信息学的发展打开了大门。由于PACS操作所需的许多关键组件是由UCLA PACS团队及其合作伙伴在1980年代开发的,因此本演示文稿集中在这一方面。在此期间,着重强调了美国和日本许多个人团队的大量合作研究成果。这些荣誉尤其要归功于乔治敦大学的模式识别实验室,以及1970年代与斯坦福大学合作在富士电机公司开发的计算机射线照相(CR); 1980年代至1990年代加州大学洛杉矶分校的图像处理实验室;以及在1970年代后期在日本札幌北海道大学进行的早期PACS开发以及在1980-1990年代由日本Konishiroku Photo Ind。Co. Ltd.(柯尼卡美能达)开发的胶片扫描仪和数字射线照相技术。 。感谢美国国立卫生研究院和其他联邦机构以及私人医学成像行业的大力支持。北约(北大西洋公约组织)高级研究学院(ASI)于1990年在法国埃维昂发起了国际PACS大会,会议的内容和介绍说服了包括外科医师和放射科医生在内的六名美国高级军事医疗人员, PACS是可行的,并且将大大简化当前的军事医疗服务。这些人的会后总结对他们上级的影响为美国军事医疗服务局为PACS开发的长期支持打开了大门。因此,PACS和影像信息学已成为日常临床必需品。

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