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Edge detection of three-dimensional objects by manipulating pupil functions in an optical scanning holography system

机译:通过操纵光学扫描全息系统中的光瞳功能对三维物体进行边缘检测

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The paper presents a technique of manipulating the pupil function in the optical scanning holography (OSH) system to detect the edge of a three-dimensional object. OSH is a fast biomedical imaging system that scans a three-dimensional (3D) object and encodes its intensity information into a two-dimensional hologram. The reconstruction of sectional images from a hologram has been well discussed as post-processing methods. However, manipulating pupil functions as a pre-processing technique has been less investigated. The latter can detect any specific part of an object by manipulating the pupil function. Here, we focus on the edge detection of a 3D object, which is implemented by configuring two pupil functions as a Dirac delta function and the Laplacian of the Gaussian, respectively. The simulated experiment demonstrates that the technique is a real-time pre-processing method to obtain the edge of the 3D object.
机译:本文提出了一种在光学扫描全息(OSH)系统中操纵光瞳功能以检测三维物体边缘的技术。 OSH是一种快速的生物医学成像系统,可扫描三维(3D)对象并将其强度信息编码为二维全息图。从全息图重建断层图像已作为后处理方法得到了很好的讨论。但是,操纵瞳孔功能作为一种预处理技术的研究较少。后者可以通过操纵瞳孔功能来检测物体的任何特定部分。在这里,我们着重于3D对象的边缘检测,这是通过将两个光瞳函数分别配置为Dirac德尔塔函数和高斯的拉普拉斯函数实现的。仿真实验表明,该技术是获取3D对象边缘的实时预处理方法。

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