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使用在部分相干照明下工作的数字全息显微镜进行模式识别。

Pattern recognition with a digital holographic microscope working in partially coherent illumination.

作者信息

Dubois F, Minetti C, Monnom O, Yourassowsky C, Legros J C, Kischel P

机构信息

Université Libre de Bruxelles, Microgravity Research Center, Brussels, Belgium.

出版信息

Appl Opt. 2002 Jul 10;41(20):4108-19. doi: 10.1364/ao.41.004108.

Abstract

We describe the implementation of the automatic spatial-frequency-selection filter for recognition of patterns obtained with a digital holographic microscope working with a partially coherent source. The microscope provides the complex-optical-amplitude field that allows a refocusing plane-by-plane of the sample under investigation by numerical computation of the optical propagation. By inserting a correlation filter in the propagation equation, the correlation between the filter and the propagated optical field is obtained. In this way, the pattern is located in the direction of the optical axis. Owing to the very weak noise level generated by the partially coherent source, the correlation process is shift invariant. Therefore the samples can be located in the three dimensions. To have a robust recognition process, a generalized version of the automatic spatial-frequency-selection filters has been implemented. The method is experimentally demonstrated in a two-class problem for the recognition of protein crystals.

摘要

我们描述了用于识别由使用部分相干光源的数字全息显微镜获得的图案的自动空间频率选择滤波器的实现。该显微镜提供复光振幅场,通过对光传播进行数值计算,可以逐平面地对被研究样本进行重新聚焦。通过在传播方程中插入相关滤波器,可得到滤波器与传播光场之间的相关性。通过这种方式,图案在光轴方向上被定位。由于部分相干光源产生的噪声水平非常低,相关过程是平移不变的。因此,可以在三维空间中定位样本。为了实现稳健的识别过程,已经实现了自动空间频率选择滤波器的广义版本。该方法在用于识别蛋白质晶体的两类问题中得到了实验验证。

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