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使用角分辨低相干干涉测量法对体外细胞阵列的相干光散射引起的长程相关性进行分析。

Analysis of long range correlations due to coherent light scattering from in-vitro cell arrays using angle-resolved low coherence interferometry.

作者信息

Pyhtila John W, Ma Hongwei, Simnick Andrew J, Chilkoti Ashutosh, Wax Adam

机构信息

Duke University, Department of Biomedical Engineering, Fitzpatrick Center for Photonics, Durham, North Carolina 27708.

出版信息

J Biomed Opt. 2006 May-Jun;11(3):34022. doi: 10.1117/1.2209561.

Abstract

Angle-resolved low coherence interferometry (a/LCI) enables depth-resolved measurements of scattered light that can be used to recover subsurface structural information, such as the size of cell nuclei. Measurements of nuclear morphology, however, can be complicated by coherent scattering between adjacent cell nuclei. Previous studies have eliminated this component by applying a window filter to Fourier transformed angular data, based on the justification that the coherent scattering must necessarily occur over length scales greater than the cell size. To fully study this effect, results of experiments designed to test the validity of this approach are now presented. The a/LCI technique is used to examine light scattered by regular cell arrays, created using stamped adhesive micropatterned substrates. By varying the array spacing, it is demonstrated that cell-to-cell correlations have a predictable effect on light scattering distributions. These results are compared to image analysis of fluorescence micrographs of the cell array samples. The a/LCI results show that the impact of coherent scattering on nuclear morphology measurements can be eliminated through data filtering.

摘要

角分辨低相干干涉测量法(a/LCI)能够对散射光进行深度分辨测量,这些散射光可用于恢复诸如细胞核大小等地下结构信息。然而,相邻细胞核之间的相干散射会使细胞核形态的测量变得复杂。以往的研究通过对傅里叶变换后的角度数据应用窗口滤波器来消除这一成分,其依据是相干散射必然发生在大于细胞大小的长度尺度上。为了全面研究这种效应,现在展示了旨在测试该方法有效性的实验结果。a/LCI技术用于检测由使用冲压粘性微图案化基板创建的规则细胞阵列散射的光。通过改变阵列间距,证明了细胞间相关性对光散射分布有可预测的影响。将这些结果与细胞阵列样品荧光显微照片的图像分析结果进行比较。a/LCI结果表明,通过数据滤波可以消除相干散射对细胞核形态测量的影响。

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