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Quantitative phase-digital holographic microscopy: a new imaging modality to identify original cellular biomarkers of diseases

机译:定量相数字全息显微术:一种新的成像方式,以识别疾病的原始细胞生物标志物

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摘要

Quantitative phase microscopy (QPM) has recently emerged as a powerful label-free technique in the field of living cell imaging allowing to non-invasively measure with a nanometric axial sensitivity cell structure and dynamics. Since the phase retardation of a light wave when transmitted through the observed cells, namely the quantitative phase signal (QPS), is sensitive to both cellular thickness and intracellular refractive index related to the cellular content, its accurate analysis allows to derive various cell parameters and monitor specific cell processes, which are very likely to identify new cell biomarkers. Specifically, quantitative phase-digital holographic microscopy (QP-DHM), thanks to its numerical flexibility facilitating parallelization and automation processes, represents an appealing imaging modality to both identify original cellular biomarkers of diseases as well to explore the underlying pathophysiological processes.
机译:定量相显微镜(QPM)最近在活细胞成像领域中成为一种功能强大的无标记技术,允许以纳米轴向灵敏度对细胞结构和动力学进行非侵入性测量。由于光波通过被观察细胞时的相位延迟,即定量相位信号(QPS),对细胞厚度和与细胞含量有关的细胞内折射率均敏感,因此其精确分析可以得出各种细胞参数和监控特定的细胞过程,这些过程很可能会识别出新的细胞生物标志物。具体地说,定量相数字全息显微镜(QP-DHM)凭借其易于并行化和自动化过程的数值灵活性,代表了一种有吸引力的成像方式,既可以识别疾病的原始细胞生物标志物,也可以探索潜在的病理生理过程。

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