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Microscopic Object Classification through Passive Motion Observations with Holographic Microscopy

机译:全息显微镜通过被动运动观察对微观对象进行分类

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Digital holographic microscopy provides the ability to observe throughout a volume that is large compared to its resolution element without the need to refocus through the volume. This capability enables simultaneous observations of large numbers of small objects within such a volume. We have constructed a microscope that can observe a volume 0.4 x 0.4 x 1.0 μm with submicrometer resolution for observation of microorganisms and minerals in liquid environments in earth and on potential planetary missions. Because environmental samples are likely to contain mixtures of inorganics and microorganisms that are of comparable sizes near the resolution limit of the instrument, discrimination of living and non-living objects may be difficult. The motion of motile organisms can be used to readily distinguish them from non-motile objects (live or inorganic), but additional methods are required to distinguish non-motile organisms and inorganic objects that are of comparable size but different composition and structure. In this paper we evaluate the use of passive motion to make this discrimination by evaluating diffusion and buoyancy characteristics of objects in the field of view.
机译:数字全息显微术提供了在与其分辨率元件相比更大的整个体积中进行观察的能力,而无需在整个体积中重新聚焦。此功能使您可以同时观察该体积内的大量小物体。我们构建了一个显微镜,可以观察到0.4 x 0.4 x 1.0μm的体积,具有亚微米级的分辨率,用于观察地球和潜在的行星飞行任务中的液体环境中的微生物和矿物质。由于环境样品可能包含无机物和微生物的混合物,它们的大小接近仪器的分辨率极限,因此难以区分有生命的物体和无生命的物体。运动有机体的运动可以用来将它们与非运动有机体(有生命的或无机的)轻松地区分开,但是还需要其他方法来区分大小不等但组成和结构不同的非运动有机体和无机体。在本文中,我们通过评估视野中物体的扩散和浮力特性来评估使用被动运动进行这种区分。

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