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Unraveling Cell Processes: Interference Imaging Interwoven with Data Analysis

机译:揭示细胞过程:干扰成像与数据分析交织

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摘要

The paper presents results on the application of interference microscopy and wavelet-analysis for cell visualization and studies of cell dynamics. We demonstrate that interference imaging of erythrocytes can reveal reorganization of the cytoskeleton and inhomogenity in the distribution of hemoglobin, and that interference imaging of neurons can show intracellular compartmentalization and submembrane structures. We investigate temporal and spatial variations of the refractive index for different cell types: isolated neurons, mast cells and erythrocytes. We show that the refractive dynamical properties differ from cell type to cell type and depend on the cellular compartment. Our results suggest that low frequency variations (0.1–0.6 Hz) result from plasma membrane processes and that higher frequency variations (20–26 Hz) are related to the movement of vesicles. Using double-wavelet analysis, we study the modulation of the 1 Hz rhythm in neurons and reveal its changes under depolarization and hyperpolarization of the plasma membrane. We conclude that interference microscopy combined with wavelet analysis is a useful technique for non-invasive cell studies, cell visualization, and investigation of plasma membrane properties.
机译:本文介绍了干扰显微镜和小波分析在细胞可视化和细胞动力学研究中的应用结果。我们证明红细胞的干扰成像可以揭示血红蛋白分布中的细胞骨架重组和不均匀性,并且神经元的干扰成像可以显示细胞内区室化和亚膜结构。我们研究了不同细胞类型的折射率的时空变化:分离的神经元,肥大细胞和红细胞。我们表明屈光动力学特性随细胞类型的不同而不同,并且取决于细胞室。我们的结果表明,质膜过程导致低频变化(0.1–0.6 Hz),而较高的频率变化(20–26 Hz)与囊泡的运动有关。使用双小波分析,我们研究了神经元中1 Hz节奏的调制并揭示了其在质膜去极化和超极化下的变化。我们得出的结论是,干涉显微镜与小波分析相结合是用于非侵入性细胞研究,细胞可视化和质膜特性研究的有用技术。

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