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使用电可调透镜的单目生物显微镜的彩色3D重建及扩展景深

Colorful 3D Reconstruction and an Extended Depth of Field for a Monocular Biological Microscope Using an Electrically Tunable Lens.

作者信息

Cheng Yang, Liu Mengyao, Ou Yangqi, Liu Lin, Hao Qun

机构信息

Key Laboratory of Biomimetic Robots and Systems, Ministry of Education, Beijing Institute of Technology, Beijing 100081, China.

Yangtze Delta Region Academy of Beijing Institute of Technology, Jiaxing 314003, China.

出版信息

Biomimetics (Basel). 2024 Jan 12;9(1):0. doi: 10.3390/biomimetics9010049.

Abstract

This paper presents a monocular biological microscope with colorful 3D reconstruction and an extended depth of field using an electrically tunable lens. It is based on a 4 optical system with an electrically tunable lens at the confocal plane. Rapid and extensive depth scanning while maintaining consistent magnification without mechanical movement is achieved. We propose an improved Laplacian operator that considers pixels in diagonal directions to provide enhanced fusion effects and obtain more details of the object. Accurate 3D reconstruction is achieved using the shape-from-focus method by tuning the focal power of the electrically tunable lens. We validate the proposed method by performing experiments on biological samples. The 3D reconstructed images obtained from the biological samples match the actual shrimp larvae and bee antenna samples. Two standard gauge blocks are used to evaluate the 3D reconstruction performance of the proposed method. The experimental results show that the extended depth of fields are 120 µm, 240 µm, and 1440 µm for shrimp larvae, bee tentacle samples, and gauge blocks, respectively. The maximum absolute errors are -39.9 μm and -30.6 μm for the first and second gauge blocks, which indicates 3D reconstruction deviations are 0.78% and 1.52%, respectively. Since the procedure does not require any custom hardware, it can be used to transform a biological microscope into one that effectively extends the depth of field and achieves highly accurate 3D reconstruction results, as long as the requirements are met. Such a microscope presents a broad range of applications, such as biological detection and microbiological diagnosis, where colorful 3D reconstruction and an extended depth of field are critical.

摘要

本文介绍了一种使用电可调透镜实现彩色3D重建和扩展景深的单目生物显微镜。它基于一个4光学系统,在共焦平面处有一个电可调透镜。在不进行机械移动的情况下,实现了快速且广泛的深度扫描,同时保持放大倍率一致。我们提出了一种改进的拉普拉斯算子,该算子考虑对角线方向的像素以提供增强的融合效果并获得物体的更多细节。通过调整电可调透镜的焦距,使用聚焦形状法实现了精确的3D重建。我们通过对生物样本进行实验来验证所提出的方法。从生物样本获得的3D重建图像与实际的虾幼虫和蜜蜂触角样本相匹配。使用两个标准量块来评估所提出方法的3D重建性能。实验结果表明,虾幼虫、蜜蜂触角样本和量块的扩展景深分别为120 µm、240 µm和1440 µm。第一个和第二个量块的最大绝对误差分别为-39.9 μm和-30.6 μm,这表明3D重建偏差分别为0.78%和1.52%。由于该过程不需要任何定制硬件,只要满足要求,就可用于将生物显微镜转变为有效扩展景深并实现高精度3D重建结果的显微镜。这种显微镜具有广泛的应用,如生物检测和微生物诊断,其中彩色3D重建和扩展景深至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d50/11154282/c5239b1e3167/biomimetics-09-00049-g001.jpg

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