数字全息显微术
景深
全息术
数字全息术
计算机科学
光学(聚焦)
计算机视觉
人工智能
像素
显微镜
光学
焦点深度(构造)
领域(数学)
光场
保险丝(电气)
迭代重建
对象(语法)
物理
数学
地质学
古生物学
构造学
量子力学
纯数学
俯冲
作者
Isabelle Bergoënd,Tristan Colomb,Nicolas Pavillon,Yves Emery,Christian Depeursinge
摘要
The limited depth-of-field is a main drawback of microscopy that prevents from observing, for example, thick semi-transparent objects with all their features in focus. Several algorithms have been developed during the past years to fuse images having various planes of focus and thus obtain a completely focused image with virtually extended depth-of-field. We present a comparison of several of these methods in the particular field of digital holographic microscopy, taking advantage of some of the main properties of holography. We especially study the extended depth-of-field for phase images reconstructed from the hologram of a biological specimen. A criterion of spatial measurement on the object is considered, completed with a visual criterion. The step of distance taken into account to build the stack of images is less than the instrument depth-of-field. Then, preserving the distance of focus associated with each pixel of the image, a three-dimensional representation is presented after automatic detection of the object. The limits of such a method of extraction of 3D information are discussed.
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