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Digital holographic micro-interferometry of nonradiative transitions in biological specimens

机译:生物标本中的非抗动过渡的数字全息微观干涉学

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Digital holography is widely used nowadays for interferometric studies of various objects and processes. However, peculiarities of objects under study often imply difficulties in holograms recording, reconstruction and processing. One of the major factors is a typically large number of singular points at phase distributions caused by either low signal to noise ratio at the recorded holograms or sample inhomogeneities. The basic operations applied for absolute phase extracting from digital holograms are noise filtration, phase unwrapping and subtraction of phase distributions. In this paper we demonstrate that the sequence of these operations may drastically affect the resulting image quality and the data obtained. An optimized algorithm suitable for studies of dynamic processes in biological media on microscopic level has been developed. The algorithm was applied for monitoring of nonradiative deactivation processes occurring in onion cell specimens at photosensitized generation of singlet oxygen.
机译:现在广泛地使用数字全息术用于对各种物体和过程的干涉测量研究。然而,在研究中的物体的特点通常意味着全息图记录,重建和处理的困难。其中一个主要因素是在记录的全息图或样本不均匀性的低信号到噪声比率引起的相位分布的奇异点。应用于数字全息图的绝对相提取的基本操作是噪声过滤,相位展开和相位分布的减法。在本文中,我们证明这些操作的序列可能会大大影响得到的图像质量和所获得的数据。已经开发出一种优化的算法,适用于在微观水平上研究生物介质中的动态过程。应用该算法用于监测在光敏氧的洋葱细胞标本中发生的非抗激活过程的监测。

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