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本文引用的文献

1
Moxifloxacin Labeling-Based Multiphoton Microscopy of Skin Cancers in Asians.基于莫西沙星标签的亚洲人皮肤癌的多光子显微镜研究。
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2
Precise in vivo tissue micro-Raman spectroscopy with simultaneous reflectance confocal microscopy monitoring using a single laser.利用单激光实现精确的体内组织微拉曼光谱学与反射共聚焦显微镜监测。
Opt Lett. 2019 Mar 15;44(6):1383-1386. doi: 10.1364/OL.44.001383.
3
In vivo multiphoton microscopy of melasma.体内双色激光共聚焦显微镜观察黄褐斑。
Pigment Cell Melanoma Res. 2019 May;32(3):403-411. doi: 10.1111/pcmr.12756. Epub 2018 Dec 21.
4
Three-photon tissue imaging using moxifloxacin.三光子组织成像技术应用于莫西沙星。
Sci Rep. 2018 Jun 20;8(1):9415. doi: 10.1038/s41598-018-27371-8.
5
Two-photon microscopy of fungal keratitis-affected rabbit cornea ex vivo using moxifloxacin as a labeling agent.利用莫西沙星作为示踪剂的真菌性角膜炎兔眼角膜的双光子显微镜观察
Exp Eye Res. 2018 Sep;174:51-58. doi: 10.1016/j.exer.2018.05.018. Epub 2018 May 19.
6
Comparison between reflectance confocal microscopy and 2-photon microscopy in early detection of cutaneous radiation injury in a mouse model in vivo.反射式共聚焦显微镜与双光子显微镜在小鼠体内皮肤放射性损伤早期检测中的比较
J Biophotonics. 2018 Oct;11(10):e201700337. doi: 10.1002/jbio.201700337. Epub 2018 Jul 5.
7
Visualization of laser tattoo removal treatment effects in a mouse model by two-photon microscopy.通过双光子显微镜观察小鼠模型中激光纹身去除治疗效果
Biomed Opt Express. 2017 Jul 20;8(8):3735-3748. doi: 10.1364/BOE.8.003735. eCollection 2017 Aug 1.
8
Brain tumor delineation enhanced by moxifloxacin-based two-photon/CARS combined microscopy.基于莫西沙星的双光子/相干反斯托克斯拉曼散射联合显微镜增强脑肿瘤轮廓描绘。
Biomed Opt Express. 2017 Mar 9;8(4):2148-2161. doi: 10.1364/BOE.8.002148. eCollection 2017 Apr 1.
9
In vivo multiphoton-microscopy of picosecond-laser-induced optical breakdown in human skin.人皮肤中皮秒激光诱导光学击穿的体内多光子显微镜研究
Lasers Surg Med. 2017 Aug;49(6):555-562. doi: 10.1002/lsm.22655. Epub 2017 Mar 23.
10
Moxifloxacin: Clinically compatible contrast agent for multiphoton imaging.莫西沙星:用于多光子成像的临床兼容造影剂。
Sci Rep. 2016 Jun 10;6:27142. doi: 10.1038/srep27142.

基于莫西沙星的高速联合反射共聚焦和双光子显微镜技术。

High-speed combined reflectance confocal and moxifloxacin based two-photon microscopy.

作者信息

Kim Bumju, Le Hoan, Oh Byung-Ho, Kim Ki Hean

机构信息

Division of Integrative Biosciences and Biotechnology, Pohang University of Science and Technology, 77 Cheongam-ro, Nam-gu, Pohang, Gyeongbuk 37673, South Korea.

Department of Dermatology, College of Medicine, Yonsei University, 50-1 Yonsei-ro, Seodaemun-gu, Seoul, 03722, South Korea.

出版信息

Biomed Opt Express. 2020 Feb 21;11(3):1555-1567. doi: 10.1364/BOE.385763. eCollection 2020 Mar 1.

DOI:10.1364/BOE.385763
PMID:32206428
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7075626/
Abstract

Reflectance confocal microscopy (RCM) is a non-invasive high-resolution optical imaging technique used in clinical settings as a diagnostic method. However, RCM has limited diagnostic ability by providing non-specific morphological information only based on reflection contrast. Various multimodal imaging techniques have been developed to compensate the limitations of RCM, but multimodal techniques are often slow in imaging speed compared to RCM alone. In this report, we combined RCM with moxifloxacin based two-photon microscopy (TPM) for high-speed multimodal imaging. Moxifloxacin based TPM used clinically compatible moxifloxacin for cell labeling and could do non-invasive cellular imaging at 30 frames/s together with RCM. Performance of the combined microscopy was characterized in the imaging of mouse skin and cornea, . Detail tissue microstructures including cells, extra-cellular matrix (ECM), and vasculature were visualized. The combined microscopy was applied to human skin cancer specimens, and both cells and ECM in the skin cancer and normal skin regions were visualized at high imaging speeds. The combined microscopy can be useful in the clinical applications of RCM by providing multiple contrasts.

摘要

反射共聚焦显微镜(RCM)是一种非侵入性高分辨率光学成像技术,在临床环境中用作诊断方法。然而,RCM仅基于反射对比度提供非特异性形态学信息,其诊断能力有限。已经开发了各种多模态成像技术来弥补RCM的局限性,但与单独的RCM相比,多模态技术的成像速度通常较慢。在本报告中,我们将RCM与基于莫西沙星的双光子显微镜(TPM)相结合,用于高速多模态成像。基于莫西沙星的TPM使用临床兼容的莫西沙星进行细胞标记,并且可以与RCM一起以30帧/秒的速度进行非侵入性细胞成像。在小鼠皮肤和角膜成像中对联合显微镜的性能进行了表征。包括细胞、细胞外基质(ECM)和脉管系统在内的详细组织微观结构得以可视化。联合显微镜应用于人类皮肤癌标本,皮肤癌和正常皮肤区域的细胞和ECM均以高成像速度可视化。联合显微镜通过提供多种对比度,可在RCM的临床应用中发挥作用。