Kerov Andrey A, Kozlov Alexander V, Cheremkhin Pavel A, Shifrina Anna V, Starikov Rostislav S, Zlokazov Evgenii Y, Petrova Elizaveta K, Nebavskiy Vsevolod A, Evtikhiev Nikolay N
Laser Physics Department, Institute for Laser and Plasma Technologies, National Research Nuclear University MEPhI (Moscow Engineering Physics Institute), Kashirskoe Shosse 31, 115409 Moscow, Russia.
Sensors (Basel). 2025 Sep 1;25(17):5402. doi: 10.3390/s25175402.
Digital holography enables the reconstruction of both 2D and 3D object information from interference patterns captured by digital cameras. A major challenge in this field is speckle noise, which significantly degrades the quality of the reconstructed images. We propose a novel speckle noise reduction method based on 3D adaptive filtering. Our technique processes a stack of holograms, each with an uncorrelated speckle pattern, using an adapted 3D Frost filter. Unlike conventional filtering techniques, our approach exploits statistical adaptivity to enhance noise suppression while preserving fine image details in the reconstructed holograms. Both numerical simulations and optical experiments confirm that our 3D filtering technique significantly enhances reconstruction quality. Specifically, it reduces the normalized standard deviation by up to 40% and improves the structural similarity index by up to 60% compared to classical 2D, 3D median, BM3D, and BM4D filters. Optical experiments validate the method's effectiveness in practical digital holography scenarios by local and global image quality estimation metrics. These results highlight adaptive 3D filtering as a promising approach for mitigating speckle noise while maintaining structural integrity in digital holography reconstructions.
数字全息术能够从数码相机捕获的干涉图样中重建二维和三维物体信息。该领域的一个主要挑战是散斑噪声,它会显著降低重建图像的质量。我们提出了一种基于三维自适应滤波的新型散斑噪声降低方法。我们的技术使用自适应三维弗罗斯特滤波器处理一叠全息图,每个全息图都有不相关的散斑图案。与传统滤波技术不同,我们的方法利用统计适应性来增强噪声抑制,同时在重建的全息图中保留精细的图像细节。数值模拟和光学实验均证实,我们的三维滤波技术显著提高了重建质量。具体而言,与经典的二维、三维中值、BM3D和BM4D滤波器相比,它将归一化标准差降低了多达40%,并将结构相似性指数提高了多达60%。光学实验通过局部和全局图像质量评估指标验证了该方法在实际数字全息场景中的有效性。这些结果突出了自适应三维滤波作为一种在数字全息重建中减轻散斑噪声同时保持结构完整性的有前途的方法。