Transformative effects of fluorescence imaging technologies on current vascular surgical practices: An updated review

IF 2.5 4区 医学 Q3 BIOCHEMICAL RESEARCH METHODS
Tao Fang, Jianxin Dong, Zhilei Xie
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引用次数: 0

Abstract

Fluorescence imaging technologies have revolutionized vascular surgery by enabling real-time visualization of vascular anatomy, blood circulation, and tissue perfusion, thus improving intraoperative decision-making. This review provides a comprehensive analysis of key fluorescence modalities, including Fluorescence-Guided Surgery (FGS), Near-Infrared (NIR) fluorescence imaging, and Indocyanine Green (ICG) angiography, highlighting their roles in optimizing tissue perfusion assessment, vessel patency evaluation, and identifying anatomical variations. Unlike existing literature, this review addresses critical gaps in current practices by comparing these technologies and exploring their applications across a range of vascular procedures such as peripheral vascular surgery, coronary artery bypass grafting, and oncological operations. The review further delves into the potential future directions for fluorescence imaging in vascular surgery, emphasizing emerging technologies, challenges in clinical implementation, and how these advancements can enhance surgical precision, patient outcomes, and intraoperative guidance. By synthesizing the latest developments, this review offers valuable insights into the evolving role of fluorescence imaging in vascular surgery and its potential to transform surgical practices.
荧光成像技术在当前血管外科实践中的变革性作用:最新综述。
荧光成像技术通过实现血管解剖、血液循环和组织灌注的实时可视化,从而改善术中决策,从而彻底改变了血管手术。本文综述了包括荧光引导手术(FGS)、近红外(NIR)荧光成像和吲哚菁绿(ICG)血管造影在内的关键荧光模式的全面分析,强调了它们在优化组织灌注评估、血管畅通评估和识别解剖变异方面的作用。与现有文献不同,本综述通过比较这些技术并探索其在血管手术(如外周血管手术、冠状动脉搭桥术和肿瘤手术)中的应用,解决了当前实践中的关键空白。这篇综述进一步探讨了荧光成像在血管手术中的潜在未来方向,强调了新兴技术、临床实施中的挑战,以及这些进步如何提高手术精度、患者预后和术中指导。通过综合最新进展,本文综述了荧光成像在血管外科中的发展作用及其改变外科实践的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
SLAS Technology
SLAS Technology Computer Science-Computer Science Applications
CiteScore
6.30
自引率
7.40%
发文量
47
审稿时长
106 days
期刊介绍: SLAS Technology emphasizes scientific and technical advances that enable and improve life sciences research and development; drug-delivery; diagnostics; biomedical and molecular imaging; and personalized and precision medicine. This includes high-throughput and other laboratory automation technologies; micro/nanotechnologies; analytical, separation and quantitative techniques; synthetic chemistry and biology; informatics (data analysis, statistics, bio, genomic and chemoinformatics); and more.
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