光学
鬼影成像
散射
计算机科学
点扩散函数
物理
调制(音乐)
点(几何)
帧(网络)
光散射
帧速率
计算机视觉
高动态范围成像
视野
迭代重建
生物成像
人工智能
对象(语法)
因式分解
图像处理
传输(电信)
动态范围
目标检测
光学成像
干扰(通信)
图像复原
高动态范围
航程(航空)
领域(数学)
光场
频道(广播)
作者
Haiming Yuan,Fei Wang,Guohai Situ
出处
期刊:Optics Letters
[Optica Publishing Group]
日期:2025-09-17
卷期号:50 (20): 6389-6389
摘要
Exploiting multiple light scattering holds great potential for deep optical imaging. However, practical implementations often face trade-offs in imaging speed, field of view (FOV), system complexity, or impose special requirements on the sample. We propose localization and stream fusion (LS-Fusion) for wide-field imaging of moving objects through scattering media with a simple experimental setup. LS-Fusion treats the motion of hidden objects, which induces random activation of the point sources constituting the object across the FOV, as an equivalent modulation required in the nonnegative matrix factorization (NMF) technique. This enables large-FOV imaging using scattered light at the camera's native frame rate without the need for modulation devices. Furthermore, by jointly reconstructing the video sequence, LS-Fusion recovers widely separated point sources beyond the limits of conventional NMF. Experimental results through a 200-µm-thick mouse brain slice demonstrate a FOV 5.7 times larger than the memory effect range (MER), enabling high-quality dynamic imaging at 50 frames per second (fps), even for hidden objects with point sources spaced far beyond the MER.
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