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Enhanced quantitative phase imaging in self-interference digital holographic microscopy using an electrically focus tunable lens

机译:使用电聚焦可调透镜的自干扰数字全息显微镜中增强的定量相位成像

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摘要

Self-interference digital holographic microscopy (DHM) has been found particular suitable for simplified quantitative phase imaging of living cells. However, a main drawback of the self-interference DHM principle are scattering patterns that are induced by the coherent nature of the laser light which affect the resolution for detection of optical path length changes. We present a simple and efficient technique for the reduction of coherent disturbances in quantitative phase images. Therefore, amplitude and phase of the sample illumination are modulated by an electrically focus tunable lens. The proposed method is in particular convenient with the self-interference DHM concept. Results from the characterization of the method show that a reduction of coherence induced disturbances up to 70 percent can be achieved. Finally, the performance for enhanced quantitative imaging of living cells is demonstrated.
机译:已经发现自干扰数字全息显微镜(DHM)特别适用于活细胞的简化定量相成像。然而,自干涉DHM原理的主要缺点是由激光的相干特性引起的散射图案,其影响检测光程长度变化的分辨率。我们提出了一种简单有效的技术来减少定量相位图像中的相干干扰。因此,样品照明的幅度和相位由电聚焦可调透镜调制。所提出的方法在自干扰DHM概念中特别方便。该方法的表征结果表明,可以将相干引起的干扰降低多达70%。最后,证明了增强活细胞定量成像的性能。

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