基于图案化主动照明和图像交叉相关分析的稳健自动对焦方法

IF 2.9 2区 医学 Q2 BIOCHEMICAL RESEARCH METHODS Biomedical optics express Pub Date : 2024-03-29 DOI:10.1364/boe.520514
Caiwei Li, Kehan Liu, Xiaoguang Guo, Yinghao Xiao, Yingjun Zhang, and Zhen-Li Huang
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引用次数: 0

摘要

对于计算机辅助诊断系统的有效性而言,整幅图像(WSI)的质量是基础,而实用的自动对焦方法是确保 WSI 质量的重要组成部分。现有的自动对焦方法需要兼顾对焦速度和对焦精度,并需要针对不同的样本或场景分别进行优化。本文提出了一种基于光纤束照明和图像归一化分析的稳健自动对焦方法。对于不同的应用场景,它能通过主动照明满足自动对焦的要求,如明场成像和荧光成像。针对样品上的不同结构,通过图像分析确保自动对焦的准确性。实验结果表明,本文中的自动对焦方法能有效跟踪样品到焦平面距离的变化,显著提高 WSI 质量。
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Robust autofocus method based on patterned active illumination and image cross-correlation analysis
For the effectiveness of a computer-aided diagnosis system, the quality of whole-slide image (WSI) is the foundation, and a useful autofocus method is an important part of ensuring the quality of WSI. The existing autofocus methods need to balance focusing speed and focusing accuracy, and need to be optimized separately for different samples or scenes. In this paper, a robust autofocus method based on fiber bundle illumination and image normalization analysis is proposed. For various application scenes, it meets the requirements of autofocusing through active illumination, such as bright field imaging and fluorescence imaging. For different structures on samples, it ensures the autofocusing accuracy through image analysis. The experimental results imply that the autofocusing method in this paper can effectively track the change of the distance from the sample to the focal plane and significantly improve the WSI quality.
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来源期刊
Biomedical optics express
Biomedical optics express BIOCHEMICAL RESEARCH METHODS-OPTICS
CiteScore
6.80
自引率
11.80%
发文量
633
审稿时长
1 months
期刊介绍: The journal''s scope encompasses fundamental research, technology development, biomedical studies and clinical applications. BOEx focuses on the leading edge topics in the field, including: Tissue optics and spectroscopy Novel microscopies Optical coherence tomography Diffuse and fluorescence tomography Photoacoustic and multimodal imaging Molecular imaging and therapies Nanophotonic biosensing Optical biophysics/photobiology Microfluidic optical devices Vision research.
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