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Phase-referenced interferometer with subwavelength and subhertz sensitivity applied to the study of cell membrane dynamics

机译:亚波长和亚赫兹灵敏度的相位参考干涉仪在细胞膜动力学研究中的应用

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摘要

We report a highly sensitive means of measuring cellular dynamics with a novel interferometer that can measure motional phase changes. The system is based on a modified Michelson interferometer with a composite laser beam of 1550-nm low-coherence light and 775-nm CW light. The sample is prepared on a coverslip that is highly reflective at 775nm. By referencing the heterodyne phase of the 1550-nm light reflected from the sample to that of the 775-nm light reflected from the coverslip, small motions in the sample are detected, and motional artifacts from vibrations in the interferometer are completely eliminated. We demonstrate that the system is sensitive to motions as small as 3.6nm and velocities as small as 1nm/s. Using the instrument, we study transient volume changes of a few (approximately three) cells in a monolayer immersed in weakly hypotonic and hypertonic solutions.
机译:我们报告了一种可以测量运动相位变化的新型干涉仪来测量细胞动力学的高度灵敏的方法。该系统基于改进的迈克尔逊干涉仪,具有1550 nm低相干光和775 nm CW光的复合激光束。样品是在775nm高反射​​率的盖玻片上制备的。通过将样品反射的1550 nm光的外差相和盖玻片反射的775 nm光的外差相进行检测,可以检测到样品中的微小运动,从而完全消除了干涉仪中振动引起的运动伪影。我们证明了该系统对小至3.6nm的运动和小至1nm / s的速度敏感。使用该仪器,我们研究了浸入弱低渗和高渗溶液的单层细胞中几个(大约三个)细胞的瞬时体积变化。

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