Department of Radiology, Washington University, St. Louis, Missouri.
Department of Surgery and Siteman Cancer Center, Washington University School of Medicine, St. Louis, Missouri.
J Nucl Med. 2020 Aug;61(8):1113-1122. doi: 10.2967/jnumed.118.220426. Epub 2020 Apr 17.
Gone are the days when medical imaging was used primarily to visualize anatomic structures. The emergence of molecular imaging (MI), championed by radiolabeled F-FDG PET, has expanded the information content derived from imaging to include pathophysiologic and molecular processes. Cancer imaging, in particular, has leveraged advances in MI agents and technology to improve the accuracy of tumor detection, interrogate tumor heterogeneity, monitor treatment response, focus surgical resection, and enable image-guided biopsy. Surgeons are actively latching on to the incredible opportunities provided by medical imaging for preoperative planning, intraoperative guidance, and postoperative monitoring. From label-free techniques to enabling cancer-selective imaging agents, image-guided surgery provides surgical oncologists and interventional radiologists both macroscopic and microscopic views of cancer in the operating room. This review highlights the current state of MI and sensing approaches available for surgical guidance. Salient features of nuclear, optical, and multimodal approaches will be discussed, including their strengths, limitations, and clinical applications. To address the increasing complexity and diversity of methods available today, this review provides a framework to identify a contrast mechanism, suitable modality, and device. Emerging low-cost, portable, and user-friendly imaging systems make the case for adopting some of these technologies as the global standard of care in surgical practice.
医学影像学的应用已不再局限于观察解剖结构,分子影像学(MI)的出现,特别是放射性核素标记的 F-FDG PET 的应用,使得从影像学中获取的信息内容扩展到包括病理生理和分子过程。癌症影像学尤其利用 MI 试剂和技术的进步提高了肿瘤检测的准确性,探究了肿瘤异质性,监测了治疗反应,聚焦了手术切除,并实现了图像引导下的活检。外科医生正在积极利用医学影像学为术前规划、术中引导和术后监测提供的令人难以置信的机会。从无标记技术到启用癌症选择性成像试剂,图像引导手术为外科肿瘤学家和介入放射科医生提供了在手术室中观察癌症的宏观和微观视图。本文综述了目前可用于手术指导的 MI 和传感方法的现状。将讨论核、光学和多模态方法的突出特点,包括它们的优势、局限性和临床应用。为了解决当今可用方法日益复杂和多样化的问题,本文提供了一个框架,用于识别对比度机制、合适的模态和设备。新兴的低成本、便携式和用户友好的成像系统为采用其中一些技术作为手术实践中的全球标准护理提供了依据。