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分子影像引导下的精准手术的现状与展望。

The current status and future prospects for molecular imaging-guided precision surgery.

机构信息

Interventional Molecular Imaging Laboratory, Department of Radiology, Leiden University Medical Center, Leiden, the Netherlands.

Section of Nuclear Medicine, Department of Radiology, Leiden University Medical Center, Leiden, the Netherlands.

出版信息

Cancer Imaging. 2022 Sep 6;22(1):48. doi: 10.1186/s40644-022-00482-2.

Abstract

Molecular imaging technologies are increasingly used to diagnose, monitor, and guide treatment of i.e., cancer. In this review, the current status and future prospects of the use of molecular imaging as an instrument to help realize precision surgery is addressed with focus on the main components that form the conceptual basis of intraoperative molecular imaging. Paramount for successful interventions is the relevance and accessibility of surgical targets. In addition, selection of the correct combination of imaging agents and modalities is critical to visualize both microscopic and bulk disease sites with high affinity and specificity. In this context developments within engineering/imaging physics continue to drive the growth of image-guided surgery. Particularly important herein is enhancement of sensitivity through improved contrast and spatial resolution, features that are critical if sites of cancer involvement are not to be overlooked during surgery. By facilitating the connection between surgical planning and surgical execution, digital surgery technologies such as computer-aided visualization nicely complement these technologies. The complexity of image guidance, combined with the plurality of technologies that are becoming available, also drives the need for evaluation mechanisms that can objectively score the impact that technologies exert on the performance of healthcare professionals and outcome improvement for patients.

摘要

分子成像技术越来越多地用于诊断、监测和指导癌症等疾病的治疗。在这篇综述中,我们将讨论分子成像作为一种帮助实现精准手术的工具的现状和未来前景,重点介绍构成术中分子成像概念基础的主要组成部分。成功干预的关键是手术目标的相关性和可及性。此外,选择正确的成像剂和模式组合对于以高亲和力和特异性可视化微观和大块疾病部位至关重要。在这方面,工程/成像物理学的发展继续推动图像引导手术的发展。特别重要的是通过提高对比度和空间分辨率来提高灵敏度,这些特性对于在手术过程中不忽略癌症受累部位至关重要。通过促进手术计划和手术执行之间的连接,计算机辅助可视化等数字化手术技术很好地补充了这些技术。图像引导的复杂性,加上越来越多的可用技术,也推动了需要评估机制的发展,这些机制可以客观地评估技术对医疗保健专业人员绩效和患者预后改善的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/002d/9446692/0746fc801f99/40644_2022_482_Fig1_HTML.jpg

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