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Erythrocytes analysis with a Digital Holographic Microscope

机译:用数字全息显微镜分析红细胞

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Digital holographic microscopy (DHM) is a technique that allows obtaining, from a single recorded hologram, quantitative phase image of living cell with interferometric accuracy (Marquet et al., 2005). Specifically the optical phase shift induced by the specimen on the transmitted wave front can be regarded as a powerful endogenous contrast agent, depending on both the thickness and the refractive index of the sample. We have recently proposed (Rappaz et al., 2005) a new and efficient decoupling procedure allowing to directly obtain separate measurements of the thickness and the integral refractive index of a given living cell. Consequently, it has been possible, for the first time to our knowledge, to accurately measure (with a precision of 0.0003) the mean refractive index of living erythrocytes.. On the other hand, the cellular thickness measurements allow to calculate the volume and shape of erythrocytes. In addition, DHM, thanks to its subwavelength phase shift measurements, was found to yield an efficient tool to assess erythrocyte cell membrane fluctuations (ECMF). Typically, ECMF characterized by an amplitude within the range of 45 nm were observed.
机译:数字全息显微术(DHM)是一种技术,它可以从单个记录的全息图中以干涉测量精度获得活细胞的定量相位图像(Marquet等,2005)。具体而言,取决于样品的厚度和折射率,可以将样品在透射波前引起的光学相移视为强大的内源性造影剂。我们最近提出了(Rappaz等,2005)一种新的有效的去耦程序,该程序可以直接获得给定活细胞的厚度和积分折射率的单独测量值。因此,据我们所知,首次有可能准确地(以0.0003的精度)测量活血红细胞的平均折射率。另一方面,细胞厚度的测量可以计算体积和形状红细胞。另外,由于其子波长相移测量,DHM被发现可以提供一种评估红细胞膜波动(ECMF)的有效工具。通常,观察到以45 nm范围内的振幅为特征的ECMF。

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