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用于生物医学检测的太赫兹扫描近场光学显微镜:最新进展、挑战与未来展望

Terahertz scanning near-field optical microscopy for biomedical detection: Recent advances, challenges, and future perspectives.

作者信息

Yan Shihan, Cheng Guanyin, Yang Zhongbo, Guo Yuansen, Chen Ligang, Fu Ying, Qiu Fucheng, Wilksch Jonathan J, Wang Tianwu, Sun Yiwen, Fan Junchao, Wei Xunbin, Han Jiaguang, Sun Fei, Xu Shixiang, Wang Huabin

机构信息

Center of Super-Resolution Optics and Chongqing Engineering Research Center of High-Resolution and Three-Dimensional Dynamic Imaging Technology, Chongqing Institute of Green and Intelligent Technology, Chinese Academy of Sciences, Chongqing 400714, China; Chongqing School, University of Chinese Academy of Sciences, Chongqing 400714, China.

Department of Microbiology and Immunology, The Peter Doherty Institute for Infection and Immunity, University of Melbourne, Melbourne, Victoria 3000, Australia.

出版信息

Biotechnol Adv. 2025 Mar-Apr;79:108507. doi: 10.1016/j.biotechadv.2024.108507. Epub 2024 Dec 19.

Abstract

Terahertz (THz) radiation is widely recognized as a non-destructive, label-free, and highly- sensitive tool for biomedical detections. Nevertheless, its application in precision biomedical fields faces challenges due to poor spatial resolution caused by intrinsically long wavelength characteristics. THz scanning near-field optical microscopy (THz-SNOM), which surpasses the Rayleigh criterion, offers micrometer and nanometer-scale spatial resolution, making it possible to perform precise bioinspection with THz imaging. THz-SNOM is attracting considerable attention for its potential in advanced biomedical research and diagnosis. Currently, its family typically includes four members based on distinct principles, which are suitable for different biological applications. This review provides an overview of the principles of these THz-SNOM modalities, outlines their various applications, identifies the obstacles hindering their performance, and envisions their future development.

摘要

太赫兹(THz)辐射作为一种用于生物医学检测的无损、无标记且高灵敏度的工具,已得到广泛认可。然而,由于其固有的长波长特性导致空间分辨率较差,其在精密生物医学领域的应用面临挑战。太赫兹扫描近场光学显微镜(THz-SNOM)突破了瑞利判据,提供了微米和纳米级的空间分辨率,使得利用太赫兹成像进行精确的生物检测成为可能。THz-SNOM因其在先进生物医学研究和诊断中的潜力而备受关注。目前,基于不同原理,其家族通常包括四个成员,适用于不同的生物学应用。本文综述概述了这些THz-SNOM模式的原理,概述了它们的各种应用,指出了阻碍其性能的障碍,并展望了它们的未来发展。

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