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An insight into statistical refractive index properties of cell internal structure via low-coherence statistical amplitude microscopy

机译:通过低相干统计振幅显微镜深入了解细胞内部结构的统计折射率特性

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摘要

Refractive index properties, especially at the nanoscale, have shown great potential in cancer diagnosis and screening. Due to the intrinsic complexity and weak refractive index fluctuation, the reconstruction of internal structures of a biological cell has been challenging. In this paper, we propose a simple and practical approach to derive the statistical properties of internal refractive index fluctuations within a biological cell with a new optical microscopy method – Low-coherence Statistical Amplitude Microscopy (SAM). We validated the capability of SAM to characterize the statistical properties of cell internal structures, which is described by numerical models of one-dimensional Gaussian random field. We demonstrated the potential of SAM in cancer detection with an animal model of intestinal carcinogenesis – multiple intestinal neoplasia mouse model. We showed that SAM-derived statistical properties of cell nuclear structures could detect the subtle changes that are otherwise undetectable by conventional cytopathology.
机译:折射率特性,特别是在纳米尺度上,已显示出在癌症诊断和筛查中的巨大潜力。由于内在的复杂性和弱的折射率波动,生物细胞内部结构的重建一直具有挑战性。在本文中,我们提出了一种简单实用的方法,即使用一种新的光学显微镜方法–低相干统计振幅显微镜(SAM)来得出生物细胞内部折射率波动的统计特性。我们验证了SAM表征细胞内部结构统计特性的能力,这由一维高斯随机场的数值模型来描述。我们用肠癌发生的动物模型(多肠肿瘤小鼠模型)证明了SAM在癌症检测中的潜力。我们表明,SAM派生的细胞核结构统计特性可以检测出常规细胞病理学无法检测到的细微变化。

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