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用于生物医学研究和临床实践的各种光纤综述。

Review of diverse optical fibers used in biomedical research and clinical practice.

作者信息

Keiser Gerd, Xiong Fei, Cui Ying, Shum Perry Ping

机构信息

Boston University, Department of Electrical and Computer Engineering, 8 Saint Mary's Street, Boston, Massachusetts 02215, United States.

City University London, Department of Electrical and Electronic Engineering, Northampton Square, London, EC1V 0HB, United Kingdom.

出版信息

J Biomed Opt. 2014 Aug;19(8):080902. doi: 10.1117/1.JBO.19.8.080902.

Abstract

Optical fiber technology has significantly bolstered the growth of photonics applications in basic life sciences research and in biomedical diagnosis, therapy, monitoring, and surgery. The unique operational characteristics of diverse fibers have been exploited to realize advanced biomedical functions in areas such as illumination, imaging, minimally invasive surgery, tissue ablation, biological sensing, and tissue diagnosis. This review paper provides the necessary background to understand how optical fibers function, to describe the various categories of available fibers, and to illustrate how specific fibers are used for selected biomedical photonics applications. Research articles and vendor data sheets were consulted to describe the operational characteristics of conventional and specialty multimode and single-mode solid-core fibers, double-clad fibers, hard-clad silica fibers, conventional hollow-core fibers, photonic crystal fibers, polymer optical fibers, side-emitting and side-firing fibers, middle-infrared fibers, and optical fiber bundles. Representative applications from the recent literature illustrate how various fibers can be utilized in a wide range of biomedical disciplines. In addition to helping researchers refine current experimental setups, the material in this review paper will help conceptualize and develop emerging optical fiber-based diagnostic and analysis tools.

摘要

光纤技术极大地推动了光子学在基础生命科学研究以及生物医学诊断、治疗、监测和手术等领域的应用发展。人们利用各种光纤独特的运行特性,在照明、成像、微创手术、组织消融、生物传感和组织诊断等领域实现了先进的生物医学功能。本文综述提供了必要的背景知识,以帮助理解光纤的工作原理,描述现有光纤的各类别,并说明特定光纤如何用于选定的生物医学光子学应用。通过查阅研究文章和供应商数据表,描述了传统和特种多模及单模实心光纤、双包层光纤、硬包层石英光纤、传统空心光纤、光子晶体光纤、聚合物光纤、侧面发射和侧面激发光纤、中红外光纤以及光纤束的运行特性。近期文献中的代表性应用说明了各种光纤如何在广泛的生物医学学科中得到利用。除了帮助研究人员优化当前的实验装置外,本文综述中的内容还将有助于构思和开发新兴的基于光纤的诊断和分析工具。

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