首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Simultaneously Capturing Real-time Images in Two Emission Channels Using a Dual Camera Emission Splitting System: Applications to Cell Adhesion
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Simultaneously Capturing Real-time Images in Two Emission Channels Using a Dual Camera Emission Splitting System: Applications to Cell Adhesion

机译:使用双摄像头发射分离系统同时捕获两个发射通道中的实时图像:细胞粘附的应用

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摘要

Multi-color immunofluorescence microscopy to detect specific molecules in the cell membrane can be coupled with parallel plate flow chamber assays to investigate mechanisms governing cell adhesion under dynamic flow conditions. For instance, cancer cells labeled with multiple fluorophores can be perfused over a potentially reactive substrate to model mechanisms of cancer metastasis. However, multi-channel single camera systems and color cameras exhibit shortcomings in image acquisition for real-time live cell analysis. To overcome these limitations, we used a dual camera emission splitting system to simultaneously capture real-time image sequences of fluorescently labeled cells in the flow chamber. Dual camera emission splitting systems filter defined wavelength ranges into two monochrome CCD cameras, thereby simultaneously capturing two spatially identical but fluorophore-specific images. Subsequently, psuedocolored one-channel images are combined into a single real-time merged sequence that can reveal multiple target molecules on cells moving rapidly across a region of interest.
机译:用于检测细胞膜中特定分子的多色免疫荧光显微镜可以与平行板流动室测定结合使用,以研究在动态流动条件下控制细胞粘附的机制。例如,可以在潜在的反应性底物上灌注标记有多个荧光团的癌细胞,以模拟癌症转移的机制。但是,多通道单摄像机系统和彩色摄像机在实时活细胞分析的图像采集方面存在缺陷。为了克服这些限制,我们使用了双摄像头发射分离系统来同时捕获流动室中荧光标记细胞的实时图像序列。双摄像头发射分离系统将定义的波长范围过滤到两个黑白CCD摄像头中,从而同时捕获两个空间相同但荧光团特定的图像。随后,将伪彩色的单通道图像合并为单个实时合并序列,该序列可以揭示细胞快速跨感兴趣区域移动的多个目标分子。

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