The Univ. of Texas at Dallas, United States.
The Univ. of Texas Southwestern Medical Ctr. at Dallas, United States.
J Biomed Opt. 2021 Jan;26(1). doi: 10.1117/1.JBO.26.1.010901.
Surgical microscopes provide adjustable magnification, bright illumination, and clear visualization of the surgical field and have been increasingly used in operating rooms. State-of-the-art surgical microscopes are integrated with various imaging modalities, such as optical coherence tomography (OCT), fluorescence imaging, and augmented reality (AR) for image-guided surgery.
This comprehensive review is based on the literature of over 500 papers that cover the technology development and applications of surgical microscopy over the past century. The aim of this review is threefold: (i) providing a comprehensive technical overview of surgical microscopes, (ii) providing critical references for microscope selection and system development, and (iii) providing an overview of various medical applications.
More than 500 references were collected and reviewed. A timeline of important milestones during the evolution of surgical microscope is provided in this study. An in-depth technical overview of the optical system, mechanical system, illumination, visualization, and integration with advanced imaging modalities is provided. Various medical applications of surgical microscopes in neurosurgery and spine surgery, ophthalmic surgery, ear-nose-throat (ENT) surgery, endodontics, and plastic and reconstructive surgery are described.
Surgical microscopy has been significantly advanced in the technical aspects of high-end optics, bright and shadow-free illumination, stable and flexible mechanical design, and versatile visualization. New imaging modalities, such as hyperspectral imaging, OCT, fluorescence imaging, photoacoustic microscopy, and laser speckle contrast imaging, are being integrated with surgical microscopes. Advanced visualization and AR are being added to surgical microscopes as new features that are changing clinical practices in the operating room.
The combination of new imaging technologies and surgical microscopy will enable surgeons to perform challenging procedures and improve surgical outcomes. With advanced visualization and improved ergonomics, the surgical microscope has become a powerful tool in neurosurgery, spinal, ENT, ophthalmic, plastic and reconstructive surgeries.
手术显微镜提供可调节的放大倍数、明亮的照明以及对手术区域的清晰可视化,并且已经在手术室中越来越多地使用。最先进的手术显微镜与各种成像模式(如光学相干断层扫描(OCT)、荧光成像和增强现实(AR))集成在一起,用于图像引导手术。
这篇综述基于超过 500 篇文献,涵盖了过去一个世纪手术显微镜技术的发展和应用。本综述的目的有三:(i)提供手术显微镜的全面技术概述;(ii)为显微镜选择和系统开发提供关键参考文献;(iii)概述各种医学应用。
共收集并回顾了 500 多篇参考文献。本研究提供了手术显微镜发展过程中重要里程碑的时间线。深入技术概述了光学系统、机械系统、照明、可视化以及与先进成像模式的集成。描述了手术显微镜在神经外科和脊柱外科、眼科手术、耳鼻喉科(ENT)手术、牙髓病学和整形与重建手术中的各种医学应用。
手术显微镜在高端光学、明亮无阴影照明、稳定灵活的机械设计以及多功能可视化等技术方面取得了显著进展。新的成像模式,如高光谱成像、OCT、荧光成像、光声显微镜和激光散斑对比成像,正在与手术显微镜集成。先进的可视化和 AR 作为新功能被添加到手术显微镜中,正在改变手术室中的临床实践。
新的成像技术与手术显微镜的结合将使外科医生能够进行具有挑战性的手术并改善手术结果。随着先进的可视化和改进的人体工程学,手术显微镜已成为神经外科、脊柱、耳鼻喉科、眼科、整形与重建手术中强大的工具。