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首页> 外文期刊>Clinical and experimental pharmacology & physiology >Quantitative phase microscopy: a new tool for investigating the structure and function of unstained live cells.
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Quantitative phase microscopy: a new tool for investigating the structure and function of unstained live cells.

机译:定量相显微镜:一种用于研究未染色活细胞结构和功能的新工具。

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1. The optical transparency of unstained live cell specimens limits the extent to which information can be recovered from bright-field microscopic images because these specimens generally lack visible amplitude-modulating components. However, visualization of the phase modulation that occurs when light traverses these specimens can provide additional information. 2. Optical phase microscopy and derivatives of this technique, such as differential interference contrast (DIC) and Hoffman modulation contrast (HMC), have been used widely in the study of cellular materials. With these techniques, enhanced contrast is achieved, which is useful in viewing specimens, but does not allow quantitative information to be extracted from the phase content available in the images. 3. An innovative computational approach to phase microscopy, which provides mathematically derived information about specimen phase-modulating characteristics, has been described recently. Known as quantitative phase microscopy (QPM), this method derives quantitative phase measurements from images captured using a bright-field microscope without phase- or interference-contrast optics. 4. The phase map generated from the bright-field images by the QPM method can be used to emulate other contrast image modes (including DIC and HMC) for qualitative viewing. Quantitative phase microscopy achieves improved discrimination of cellular detail, which permits more rigorous image analysis procedures to be undertaken compared with conventional optical methods. 5. The phase map contains information about cell thickness and refractive index and can allow quantification of cellular morphology under experimental conditions. As an example, the proliferative properties of smooth muscle cells have been evaluated using QPM to track growth and confluency of cell cultures. Quantitative phase microscopy has also been used to investigate erythrocyte cell volume and morphology in different osmotic environments. 6. Quantitative phase microscopy is a valuable, new, non-destructive, non-interventional experimental tool for structural and functional cellular investigations.
机译:1.未染色的活细胞标本的光学透明度限制了从明场显微图像中恢复信息的程度,因为这些标本通常缺乏可见的幅度调制成分。但是,当光穿过这些样本时发生的相位调制的可视化可以提供其他信息。 2.光学相显微镜和该技术的衍生物,例如微分干涉对比(DIC)和霍夫曼调制对比(HMC),已广泛用于细胞材料的研究。使用这些技术,可以实现增强的对比度,这在查看样本时很有用,但不允许从图像中可用的相含量中提取定量信息。 3.最近描述了一种创新的相位显微镜计算方法,该方法提供了有关样品相位调制特性的数学推导信息。这种方法被称为定量相位显微镜(QPM),它是通过使用无相位或干涉对比光学器件的明场显微镜捕获的图像得出定量相位测量结果的。 4.通过QPM方法从明场图像生成的相位图可用于模拟其他对比度图像模式(包括DIC和HMC)以进行定性查看。定量相显微镜可以更好地区分细胞细节,与传统的光学方法相比,可以进行更严格的图像分析程序。 5.相图包含有关细胞厚度和折射率的信息,并可以在实验条件下定量细胞形态。例如,已使用QPM评估了平滑肌细胞的增殖特性,以追踪细胞培养物的生长和融合。定量相显微镜也已用于研究不同渗透环境下的红细胞体积和形态。 6.定量相显微镜是一种用于结构和功能细胞研究的有价值的,新的,非破坏性的,非介入性的实验工具。

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