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Opposed-view dark-field digital holographic microscopy

机译:反对视野暗场数字全息显微镜

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摘要

Scattering and absorption belong to the major problems in imaging the internal layers of a biological specimen. Due to the structural inhomogeneity of the specimen, the distribution of the structures in the upper layers of a given internal structure of interest is different from the lower layers that may result in different interception of scattered light, falling into the angular aperture of the microscope objective, from the object in each imaging view. Therefore, different spatial frequencies of the scattered light can be acquired from different (top and bottom) views. We have arranged an opposed-view dark-field digital holographic microscope (DHM) to collect the scattered light concurrently from both views with the aim to increase the contrast of internal structures and improve the signal-to-noise ratio. Implementing a DHM system gives the possibility to implement digital refocusing process and obtain multilayer images from each side without a depth scan of the object. The method is explained and the results are presented exemplary for a Drosophila embryo.
机译:散射和吸收属于对生物样本内层成像的主要问题。由于样品的结构不均匀性,给定内部感兴趣结构的上层中的结构分布与下层不同,下层可能会导致不同的散射光拦截,落入显微镜物镜的角孔中,来自每个成像视图中的对象。因此,可以从不同的(顶视图和底视图)获取散射光的不同空间频率。我们已经安排了对视暗场数字全息显微镜(DHM)从两个视图同时收集散射光,目的是增加内部结构的对比度并改善信噪比。实施DHM系统可实现数字重新聚焦过程,并从每一侧获取多层图像而无需深度扫描对象。说明了该方法,并以果蝇胚胎为例给出了结果。

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