多光谱活体内显微镜用于同时对微血管进行亮场和荧光成像。

Q3 Immunology and Microbiology
Barry G. H. Janssen, Mohamadreza Najiminaini, Yan Min Zhang, Parsa Omidi, Jeffrey J. L. Carson
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引用次数: 0

摘要

内视显微镜可以观察微循环血流。这通常需要荧光探针来观察传统明场显微镜无法观察到的结构和动态过程。传统的光学显微镜无法同时进行明视野和荧光成像。此外,传统显微镜只能观察一种荧光标签。本研究介绍了多光谱动态视频显微镜,它在标准光学显微镜中结合了明视野和荧光显微镜。该技术可同时实时观察荧光标记结构与其周围直接物理环境的关系。这一进展为微循环中标记结构的方向、运动和功能提供了背景信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Multispectral intravital microscopy for simultaneous bright-field and fluorescence imaging of the microvasculature

Multispectral intravital microscopy for simultaneous bright-field and fluorescence imaging of the microvasculature

Multispectral intravital microscopy for simultaneous bright-field and fluorescence imaging of the microvasculature

Multispectral intravital microscopy for simultaneous bright-field and fluorescence imaging of the microvasculature

Intravital video microscopy permits the observation of microcirculatory blood flow. This often requires fluorescent probes to visualize structures and dynamic processes that cannot be observed with conventional bright-field microscopy. Conventional light microscopes do not allow for simultaneous bright-field and fluorescent imaging. Moreover, in conventional microscopes, only one type of fluorescent label can be observed. This study introduces multispectral intravital video microscopy, which combines bright-field and fluorescence microscopy in a standard light microscope. The technique enables simultaneous real-time observation of fluorescently-labeled structures in relation to their direct physical surroundings. The advancement provides context for the orientation, movement, and function of labeled structures in the microcirculation.

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来源期刊
Applied Microscopy
Applied Microscopy Immunology and Microbiology-Applied Microbiology and Biotechnology
CiteScore
3.40
自引率
0.00%
发文量
10
审稿时长
10 weeks
期刊介绍: Applied Microscopy is a peer-reviewed journal sponsored by the Korean Society of Microscopy. The journal covers all the interdisciplinary fields of technological developments in new microscopy methods and instrumentation and their applications to biological or materials science for determining structure and chemistry. ISSN: 22875123, 22874445.
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