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数字全息显微信号项频谱定位及干扰项抑制

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在离轴数字全息显微和非相干光成像研究中,空间频域滤波是重建目标物体的振幅和相位信息的关键步骤.信号项频谱选取及中心定位对滤波后重建相位的质量有着极大影响,即使像素级的微小差异也会导致重建相位的严重失真.为了解决这个问题,文章提出了一种数字全息显微信号项频谱定位及干扰项抑制的方法.方法根据全息图频谱的直方图分布特性,自适应确定滤波形状和大小,同时,采用质心法来快速准确的确定信号项频谱的中心,并在频域中运用形态学处理来消除信号项频谱周围的干扰项.实现了信号项频谱自适应滤波,从而提高了相位重建的质量.文章使用二维山形图模拟相位进行了仿真验证,并搭建光路拍摄USAF1951标定板上的数字区域和洋葱表皮细胞进行了实验验证.仿真和实验结果表明,算法可以实现高质量的相位重建,并对干扰项进行抑制,提高了离轴数字全息显微系统的成像质量.
Spectrum location of digital holographic microscopic signal term and suppression of interference term
In off-axis digital holography and non-coherent light imaging research,spatial frequency domain filtering plays a crucial role in reconstructing both the amplitude and phase information of the target object.The selection and pre-cise localization of the signal spectrum have a profound impact on the quality of the phase reconstruction after filtering.E-ven minute pixel-level differences can lead to severe distortions in the reconstructed phase.To address this challenge,a method for signal spectrum localization and interference suppression in digital holographic microscopy is introduced.The approach adapts the filtering shape and size based on the histogram distribution characteristics of the holographic spec-trum.Additionally,it employs the centroid method for rapid and accurate localization of the signal spectrum's center and employs morphological processing in the frequency domain to eliminate interference in the vicinity of the signal spectrum.:This method achieves adaptive filtering of the signal spectrum,thereby improving the quality of phase reconstruction.The phase simulation in this study was conducted using a two-dimensional mountain-shaped graph,and experimental vali-dations were performed by setting up the optical path to capture the digital area on the USAF 1951 resolution test chart as well as onion epidermal cells.Simulation and experimental results demonstrate that this algorithm can achieve high-quali-ty phase reconstruction while effectively suppressing interference,enhancing the imaging quality of off-axis digital holog-raphy systems.

digital holographyspatial filteringspectrum center localizationinterference suppressionphase recovery

张贺、孔勇、吴慧慧、廖后章、陈杰

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上海工程技术大学电子电气工程学院控制工程系,上海 201620

上海理工大学光电信息与计算机工程学院,上海 200093

数字全息 频谱滤波 频谱中心定位 干扰项抑制 相位重建

上海市自然科学基金

19ZR1421700

2024

光学技术
北京兵工学会 北京理工大学 中国北方光电工业总公司

光学技术

CSTPCD北大核心
影响因子:0.441
ISSN:1002-1582
年,卷(期):2024.50(3)
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