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对将光学传感技术融入骨科手术设备的展望。

Perspective on the integration of optical sensing into orthopedic surgical devices.

机构信息

Biophotonics@Tyndall, IPIC, Tyndall National Institute, Lee Maltings, Dyke Parade, Cork, Ireland.

Cork University Hospital and South Infirmary Victoria University Hospital, Department of Orthopaedic, Ireland.

出版信息

J Biomed Opt. 2022 Jan;27(1). doi: 10.1117/1.JBO.27.1.010601.

Abstract

SIGNIFICANCE

Orthopedic surgery currently comprises over 1.5 million cases annually in the United States alone and is growing rapidly with aging populations. Emerging optical sensing techniques promise fewer side effects with new, more effective approaches aimed at improving patient outcomes following orthopedic surgery.

AIM

The aim of this perspective paper is to outline potential applications where fiberoptic-based approaches can complement ongoing development of minimally invasive surgical procedures for use in orthopedic applications.

APPROACH

Several procedures involving orthopedic and spinal surgery, along with the clinical challenge associated with each, are considered. The current and potential applications of optical sensing within these procedures are discussed and future opportunities, challenges, and competing technologies are presented for each surgical application.

RESULTS

Strong research efforts involving sensor miniaturization and integration of optics into existing surgical devices, including K-wires and cranial perforators, provided the impetus for this perspective analysis. These advances have made it possible to envision a next-generation set of devices that can be rigorously evaluated in controlled clinical trials to become routine tools for orthopedic surgery.

CONCLUSIONS

Integration of optical devices into surgical drills and burrs to discern bone/tissue interfaces could be used to reduce complication rates across a spectrum of orthopedic surgery procedures or to aid less-experienced surgeons in complex techniques, such as laminoplasty or osteotomy. These developments present both opportunities and challenges for the biomedical optics community.

摘要

意义

仅在美国,骨科手术目前每年就有超过 150 万例,并且随着人口老龄化,手术数量还在迅速增长。新兴的光学传感技术有望减少副作用,并采用新的、更有效的方法来改善骨科手术后的患者预后。

目的

本文旨在概述光纤技术的潜在应用,以补充正在开发的微创骨科手术方法。

方法

考虑了几种涉及骨科和脊柱手术的程序,以及与每种手术相关的临床挑战。讨论了这些程序中光学传感的当前和潜在应用,并为每个手术应用提出了未来的机会、挑战和竞争技术。

结果

涉及传感器小型化和将光学元件集成到现有手术设备(包括 K 线和颅骨穿孔器)的大量研究工作为本次观点分析提供了动力。这些进展使得设想下一代设备成为可能,这些设备可以在对照临床试验中进行严格评估,成为骨科手术的常规工具。

结论

将光学设备集成到手术钻头和磨具中以识别骨/组织界面,可以降低一系列骨科手术的并发症发生率,或帮助经验较少的外科医生完成复杂技术,如椎板切开术或截骨术。这些发展为生物医学光学领域带来了机遇和挑战。

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