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Biological cell (pollen grain) refractive index tomography with digital holographic microscopy

机译:具有数字全息显微镜的生物细胞(花粉晶粒)折射率断层扫描

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This paper present a novel approach to perform the tomography of biological specimen based on Digital Holographic Microscopy (DHM). A hologram results from the interference between a reference wave and an object wave reflected from or transmitted through a sample. In the hologram, both amplitude and phase of the field transmitted through the object are registered. In DHM, the object field is recovered when the hologram is processed by a digitally computed replica of the reference wave, allowing quantitative measurement of both phase and amplitude. Phase measurements provide high accuracy optical path length measurements across the specimen along the optical axis. To proceed to a tomographic reconstruction of the refractive index of the sample based on this quantitative phase measurement, such 2-dimentionnal data must be recorded for different sample orientations covering an angle of 180?to cover all the object spatial frequencies in the reciprocal space. The representation of the data in function of the angle is known as a sinogram. The 3-dimentionnal refractive index can then be reconstructed from the sinograms by a filtered backprojection algorithm. In our system, the specimen is inserted in a glass micropipette to permit its rotation. To our knowledge, a quantitative tomography of the refractive index of a pollen cell with a resolution in the micron range is presented for the first time.
机译:本文提出了一种基于数字全息显微镜(DHM)的生物样本的断层扫描的新方法。全息图是由参考波和通过样本反射或传输的物体波之间的干扰产生的。在全息图中,记录通过对象传输的场的幅度和相位。在DHM中,当通过参考波的数字计算的复制品处理全息图时,恢复物体字段,允许对两个相位和幅度进行定量测量。相位测量在沿着光轴沿着样品提供高精度光路长度测量。为了基于该定量相位测量来前进到样品的折射率的断层重建,必须记录这种2尺寸的数据,以覆盖180的角度的不同样品取向?覆盖互易空间中的所有物体空间频率。角度函数中数据的表示称为Sinogram。然后可以通过过滤的反投影算法从综合函数重建3分半抗折射率。在我们的系统中,将样品插入玻璃微纤维中以允许其旋转。据我们所知,第一次提出了在微米范围内具有分辨率的花粉细胞折射率的定量断层术。

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