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用于可视化培养中动态组织特性的非线性光学显微镜进展。

Advances in nonlinear optical microscopy for visualizing dynamic tissue properties in culture.

作者信息

Yeh Alvin T, Gibbs Holly, Hu Jin-Jia, Larson Adam M

机构信息

Department of Biomedical Engineering, Texas A & M University, College Staion, TX 77843, USA.

出版信息

Tissue Eng Part B Rev. 2008 Mar;14(1):119-31. doi: 10.1089/teb.2007.0284.

Abstract

Optical microscopy encompasses high-resolution imaging techniques that can be used to non-destructively investigate and characterize living biological systems and engineered tissue constructs in culture. In particular, nonlinear optical microscopy (NLOM) is well suited for the visualization and quantification of processes involved in cell-extracellular matrix interactions in vivo. Current NLOM technology enables concomitant molecular imaging and visualization of microstructural organization that could provide a direct link between signal transduction and biological effect at microscopic length scales that culminate into tissue macroscopic properties and function. This review highlights the fundamentals of nonlinear optical interactions between light and tissue and presents a direction for future technology development to better complement quantitative, high-throughput assays of the modern life sciences.

摘要

光学显微镜涵盖了高分辨率成像技术,可用于对培养中的活生物系统和工程组织构建体进行无损研究和表征。特别是,非线性光学显微镜(NLOM)非常适合于体内细胞与细胞外基质相互作用过程的可视化和定量分析。当前的NLOM技术能够同时进行分子成像和微观结构组织的可视化,这可以在微观长度尺度上提供信号转导与生物效应之间的直接联系,而这种联系最终会影响组织的宏观特性和功能。本综述重点介绍了光与组织之间非线性光学相互作用的基本原理,并为未来技术发展提出了一个方向,以便更好地补充现代生命科学的定量、高通量分析方法。

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