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Automated three-dimensional detection and classification of living organisms using digital holographic microscopy with partial spatial coherent source: application to the monitoring of drinking water resources

机译:使用具有部分空间相干源的数字全息显微镜对生物进行自动三维检测和分类:在饮用水资源监测中的应用

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摘要

In this paper, we investigate the use of a digital holographic microscope working with partially coherent spatial illumination for an automated detection and classification of living organisms. A robust automatic method based on the computation of propagating matrices is proposed to detect the 3D position of organisms. We apply this procedure to the evaluation of drinking water resources by developing a classification process to identify parasitic protozoan Giardia lamblia cysts among two other similar organisms. By selecting textural features from the quantitative optical phase instead of morphological ones, a robust classifier is built to propose a new method for the unambiguous detection of Giardia lamblia cyst that present a critical contamination risk.
机译:在本文中,我们研究了将数字全息显微镜与部分相干的空间照明配合使用,以自动检测和分类活生物体的方法。提出了一种基于传播矩阵计算的鲁棒自动方法,用于检测生物体的3D位置。我们通过开发分类过程来识别其他两种类似生物中的原生动物贾第鞭毛虫兰氏囊肿,将该程序应用于饮用水资源评估。通过从定量光学相而不是形态学特征中选择纹理特征,建立了鲁棒的分类器,以提出一种新的方法来明确检测存在严重污染风险的贾第鞭毛虫囊肿。

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