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Exploring cell dynamics at nanoscale with digital holographic microscopy for diagnostic purposes

机译:利用数字全息显微镜在纳米级探索细胞动力学以进行诊断

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摘要

Digital holographic microscopy (DHM) is a technique that allows obtaining, from a single recorded hologram, quantitative phase image of living cell with interferometric accuracy. 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. The quantitative phase images allow the derivation of highly relevant cell parameters, including dry mass density and spatial distribution. Thanks to a decoupling procedure, cell thickness and intracellular refractive index can be measured separately. Consequently, cell morphology, shape as well as cell membrane fluctuations can be accurately monitor. As far as red blood cell are considered, Mean corpuscular volume (MCV) and mean corpuscular hemoglobin concentration (MCHC), two highly relevant clinical parameters, have been measured non-invasively at a single cell level. The DHM nanometric axial and microsecond temporal sensitivities have permitted to measure the red blood cell membrane fluctuations (CMF) over the whole cell surface.
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。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。定量相图可以推导高度相关的细胞参数,包括干质量密度和空间分布。由于采用了去耦程序,因此可以分别测量细胞厚度和细胞内折射率。因此,可以准确地监测细胞形态,形状以及细胞膜波动。就红细胞而言,已经在单个细胞水平上非侵入性地测量了平均血球体积(MCV)和平均血球血红蛋白浓度(MCHC)这两个高度相关的临床参数。 DHM纳米轴向和微秒的时间敏感性已允许测量整个细胞表面的红细胞膜波动(CMF)。

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