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特定成像系统

Specific Systems for Imaging.

作者信息

Sum Chi Hong, Shortall Samantha Marisha, Nicastro Jessica Antoinetta, Slavcev Roderick

机构信息

University of Waterloo, Waterloo, ON, Canada.

出版信息

Exp Suppl. 2018;110:69-97. doi: 10.1007/978-3-319-78259-1_3.

Abstract

Microscopy allows for the characterization of small objects invisible to the naked eye, a technique that, since its conception, has played a key role in the development across nearly every field of science and technology. Given the nanometer size of the materials explored in the field of nanotechnology, the contributions of modern microscopes that can visualize these materials are indispensable, and the ever-improving technology is paramount to the future success of the field. This chapter will focus on four fundamental areas of microscopy used in the field of nanotechnology including fluorescence microscopy (Sect. 3.1), particle tracking and photoactivated localization microscopy (Sect. 3.2), quantum dots and fluorescence resonance energy transfer (Sect. 3.3), and cellular MRI and PET labeling (Sect. 3.4). The functionality, as well as the current and recommended usage of each given imaging system, will be discussed.

摘要

显微镜技术能够对肉眼不可见的微小物体进行表征,自其诞生以来,该技术在几乎每一个科技领域的发展中都发挥了关键作用。鉴于纳米技术领域所探索材料的纳米尺寸,能够可视化这些材料的现代显微镜的贡献不可或缺,而且不断改进的技术对于该领域未来的成功至关重要。本章将聚焦于纳米技术领域中使用的显微镜技术的四个基本领域,包括荧光显微镜技术(3.1节)、粒子追踪与光激活定位显微镜技术(3.2节)、量子点与荧光共振能量转移(3.3节)以及细胞磁共振成像和正电子发射断层显像标记(3.4节)。将讨论每个给定成像系统的功能以及当前和推荐的使用方法。

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