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单曝光在线全息显微镜对微生物进行三维成像与识别的理论分析

Theoretical analysis of three-dimensional imaging and recognition of micro-organisms with a single-exposure on-line holographic microscope.

作者信息

Stern Adrian, Javidi Bahram

机构信息

Department of Electro Optical Engineering, Ben Gurion University of the Negev, Beer-Sheva, Israel.

出版信息

J Opt Soc Am A Opt Image Sci Vis. 2007 Jan;24(1):163-8. doi: 10.1364/josaa.24.000163.

Abstract

Single-exposure on-line (SEOL) digital holography is a recently proposed technique for monitoring, visualization, and recognition of three-dimensional (3D) objects. In contrast to traditional multi-exposure on-line digital holography, it uses only one exposure, which makes it particularly suitable for imaging and recognizing moving micro-organisms. However, the cost of using only one exposure is the superposition of a conjugate image on the desired reconstructed image. The influence of the conjugate image on the visualization and recognition performance is investigated. The conditions for which the cross-talk noise induced by the conjugate image is negligible are derived. It is demonstrated that with conditions common in imaging of microscopic 3D biological objects, SEOL digital holography is highly tolerant of cross-talk noise induced by the conjugate image.

摘要

单次曝光在线(SEOL)数字全息术是一种最近提出的用于监测、可视化和识别三维(3D)物体的技术。与传统的多次曝光在线数字全息术相比,它仅使用一次曝光,这使其特别适用于对移动微生物进行成像和识别。然而,仅使用一次曝光的代价是共轭像会叠加在期望的重建图像上。研究了共轭像对可视化和识别性能的影响。推导了共轭像引起的串扰噪声可忽略不计的条件。结果表明,在微观3D生物物体成像的常见条件下,SEOL数字全息术对共轭像引起的串扰噪声具有高度耐受性。

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