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A #x03BB;/30 resolution laser speckle pattern biosensor for dynamic studies on live samples

机译:一种λ/ 30分辨率激光散斑模式生物传感器,用于实时样品的动态研究

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Nowadays there is a big interest in the research of cell behaviour in different sciences, like biology, physics, and medicine. For this reason, many interdisciplinary research projects have been developed in many countries. The main goal of the realization of the proposed biosensor is to obtain a super high resolution optical detection of nano-scaled movements of live cells. We used a very straightforward principle, the interference of laser light with the membrane of the cells under investigation. The laser light is focused on the target cell, while observing the picture through an optical microscope. The laser light creates an interference image (speckle pattern) that is projected on a screen and monitored by a CCD camera. This interference pattern is perturbed by any movement or displacement of the cells, and this interaction is recorded in real time by the CCD. While the contrast in standard optical microscopy is very low, the advantage of this approach is that the coherence of laser light produce constructive or destructive patterns that can be detected with very high signal-to-noise ratio. The displacement resolution we can achieve is better than λ/30, that is in the order of 20nm.
机译:目前存在的细胞行为在不同学科研究的一个大的利益,如生物学,物理学,医学等。出于这个原因,许多跨学科的研究项目已经开发了许多国家。实现所提出的生物传感器的主要目的是获得活细胞的纳米级运动的超高分辨率光学检测。我们用一个非常简单的原理,激光与细胞所研究的膜的干扰。所述激光聚焦在靶细胞上,同时通过光学显微镜观察图像。激光创建了投射到屏幕上,并通过CCD照相机监测干涉图像(斑点图案)。该干涉图案由细胞的任何运动或位移扰动,而这种相互作用是由CCD实时记录。虽然在标准光学显微镜的对比度非常低,这种方法的优点是,可以用非常高的信噪比被检测的激光产生长或相消图案的一致性。位移分辨率可以达到比λ/ 30的表现,也就是在20纳米的顺序。

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