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Spectral domain phase microscopy: A new tool for measuring cellular dynamics and cytoplasmic flow

机译:光谱域相显微镜:一种用于测量细胞动力学和细胞质流的新工具

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摘要

Broadband interferometry is an attractive technique for the detection of cellular motions because it provides depth-resolved interferometric phase information via coherence gating. Here a phase sensitive technique called spectral domain phase microscopy (SDPM) is presented. SDPM is a functional extension of spectral domain optical coherence tomography that allows for the detection of cellular motions and dynamics with nanometer-scale sensitivity. This sensitivity is made possible by the inherent phase stability of spectral domain OCT combined with common-path interferometry. The theory that underlies this technique is presented, the sensitivity of the technique is demonstrated by the measurement of the thermal expansion coefficient of borosilicate glass, and the response of an Amoeba proteus to puncture of its cell membrane is measured. We also exploit the phase stability of SDPM to perform Doppler flow imaging of cytoplasmic streaming in A. proteus. We show reversal of cytoplasmic flow in response to stimuli, and we show that the cytoplasmic flow is laminar (i.e. parabolic) in nature. We are currently investigating the use of SDPM in a variety of different cell types.
机译:宽带干涉术是用于检测细胞运动的一种有吸引力的技术,因为它通过相干门控提供了深度解析的干涉相信息。这里介绍了一种称为谱域相显微镜(SDPM)的相敏技术。 SDPM是光谱域光学相干断层扫描的功能扩展,可以检测具有纳米级灵敏度的细胞运动和动态。光谱域OCT固有的相位稳定性与共径干涉法相结合,可以使这种灵敏度成为可能。提出了该技术的基础理论,通过测量硼硅酸盐玻璃的热膨胀系数证明了该技术的敏感性,并测量了变形虫变形杆菌对其细胞膜穿刺的响应。我们还利用SDPM的相稳定性来进行变形杆菌细胞质流的多普勒血流成像。我们显示了响应刺激的细胞质流逆转,并且我们显示了细胞质流在本质上是层流的(即抛物线形的)。我们目前正在研究SDPM在各种不同类型的细胞中的使用。

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