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通过 X 射线成像程序提高患者剂量。

Higher patient doses through X-ray imaging procedures.

机构信息

Massachusetts General Hospital, Boston, MA 02114, USA.

Duke University Medical Center, Durham, NC 27708, USA.

出版信息

Phys Med. 2020 Nov;79:80-86. doi: 10.1016/j.ejmp.2020.10.017. Epub 2020 Nov 11.

Abstract

Medical imaging using X-rays has been one of the most popular imaging modalities ever since the discovery of X-rays 125 years ago. With unquestionable benefits, concerns about radiation risks have frequently been raised. Computed tomography (CT) and fluoroscopic guided interventional procedures have the potential to impart higher radiation exposure to patients than radiographic examinations. Despite technological advances, there have been instances of increased doses per procedure mainly because of better diagnostic information in images. However, cumulative dose from multiple procedures is creating new concerns as effective doses >100 mSv are not uncommon. There is a need for action at all levels. Manufacturers must produce equipment that can provide a quality diagnostic image at substantially lesser dose and better implementation of optimization strategies by users. There is an urgent need for the industry to develop CT scanners with sub-mSv radiation dose, a goal that has been lingering. It appears that a new monochromatic X-ray source will lead to replacement of X-ray tubes all over the world in coming years and will lead to a drastic reduction in radiation doses. This innovation will impact all X-ray imaging and will help dose reduction. For interventional procedures, the likely employment of robotic systems in practice may drastically reduce radiation exposures to operators- but patient exposure will still remain an issue. Training needs always need to be emphasized and practiced.

摘要

自 125 年前发现 X 射线以来,X 射线医学成像一直是最受欢迎的成像方式之一。尽管 X 射线具有不可置疑的益处,但人们对其辐射风险的担忧也时有发生。与 X 射线检查相比,计算机断层扫描(CT)和荧光透视引导介入性操作可能会给患者带来更高的辐射暴露。尽管技术有所进步,但由于图像中的诊断信息更好,每次检查的剂量增加的情况时有发生。然而,由于多次检查的累积剂量,有效剂量>100mSv 并不罕见,这引起了新的关注。在各个层面都需要采取行动。制造商必须生产出能够以更低剂量提供高质量诊断图像的设备,用户也必须更好地实施优化策略。该行业急需开发辐射剂量低于毫希沃特的 CT 扫描仪,这一目标一直悬而未决。看来,新型单色 X 射线源将在未来几年内取代世界各地的 X 射线管,并将导致辐射剂量大幅降低。这项创新将影响所有 X 射线成像,并有助于减少剂量。对于介入性操作,机器人系统在实际中的可能应用可能会大大降低操作人员的辐射暴露,但患者的暴露仍将是一个问题。培训需求始终需要强调和实践。

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