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首页> 外文期刊>Biomedical Optics Express >Investigation of depth-resolved nanoscale structural changes in regulated cell proliferation and chromatin decondensation
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Investigation of depth-resolved nanoscale structural changes in regulated cell proliferation and chromatin decondensation

机译:深度解析的纳米结构变化在调控细胞增殖和染色质去浓缩中的研究

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摘要

We present depth-resolved spatial-domain low-coherence quantitative phase microscopy, a simple approach that utilizes coherence gating to construct a depth-resolved structural feature vector quantifying sub-resolution axial structural changes at different optical depths within the sample. We show that this feature vector is independent of sample thickness variation, and identifies nanoscale structural changes in clinically prepared samples. We present numerical simulations and experimental validation to demonstrate the feasibility of the approach. We also perform experiments using unstained cells to investigate the nanoscale structural changes in regulated cell proliferation through cell cycle and chromatin decondensation induced by histone acetylation.
机译:我们介绍了深度分辨的空间域低相干定量相显微镜,这是一种利用相干门控来构建深度分辨的结构特征向量的简单方法,该向量可以量化样品中不同光学深度下的亚分辨率轴向结构变化。我们表明,此特征向量与样品厚度变化无关,并在临床制备的样品中鉴定出纳米级结构变化。我们目前数值模拟和实验验证,以证明该方法的可行性。我们还使用未染色的细胞进行实验,以研究通过细胞周期和组蛋白乙酰化诱导的染色质缩聚而调控细胞增殖的纳米级结构变化。

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