近场光学显微镜在生物学研究中的应用。

Takayuki Umakoshi
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引用次数: 0

摘要

近场扫描光学显微镜(NSOM)是一种基于金属尖端纳米级近场光的超分辨率光学显微镜。它可以与各种类型的光学测量技术相结合,包括拉曼光谱,红外吸收光谱和光致发光测量,为各种科学领域提供独特的分析能力。特别是,为了理解先进材料和物理现象的纳米尺度细节,NSOM在材料科学和物理化学领域经常被采用。然而,由于最近的关键发展显示了生物学研究的巨大潜力,NSOM最近也在生物学领域获得了很多关注。在本文中,我们介绍了NSOM在生物应用方面的最新进展。成像速度的大幅提高显示了NSOM在生物动力学超分辨率光学观测中的应用前景。此外,由于先进的技术,稳定成像和宽带成像成为可能,这为生物领域提供了一种独特的成像方法。由于迄今为止NSOM尚未在生物学研究中得到很好的利用,因此需要探索几个房间以确定其独特的优势。我们讨论了NSOM在生物领域应用的可能性和前景。这篇综述文章是日本文章《近场扫描光学显微镜的发展及其在生物学研究中的应用》的扩展版,发表于SEIBUTSU BUTSURI Vol. 62, p. 128-130(2022)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Near-field optical microscopy toward its applications for biological studies.

Near-field optical microscopy toward its applications for biological studies.

Near-field optical microscopy toward its applications for biological studies.

Near-field optical microscopy toward its applications for biological studies.

Near-field scanning optical microscopy (NSOM) is a super-resolution optical microscopy based on nanometrically small near-field light at a metallic tip. It can be combined with various types of optical measurement techniques, including Raman spectroscopy, infrared absorption spectroscopy, and photoluminescence measurements, which provides unique analytical capabilities to a variety of scientific fields. In particular, to understand nanoscale details of advance materials and physical phenomena, NSOM has been often adopted in the fields of material science and physical chemistry. However, owing to the recent critical developments showing the great potential for biological studies, NSOM has also recently gained much attention in the biological field. In this article, we introduce recent developments made in NSOM, aiming at biological applications. The drastic improvement in the imaging speed has shown a promising application of NSOM for super-resolution optical observation of biological dynamics. Furthermore, stable imaging and broadband imaging were made possible owing to the advanced technologies, which provide a unique imaging method to the biological field. As NSOM has not been well exploited in biological studies to date, several rooms need to be explored to determine its distinct advantages. We discuss the possibility and perspective of NSOM for biological applications. This review article is an extended version of the Japanese article, Development of Near-field Scanning Optical Microscopy toward Its Application for Biological Studies, published in SEIBUTSU BUTSURI Vol. 62, p. 128-130 (2022).

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