Laboratoire Kastler Brossel, ENS-Université PSL, CNRS, Sorbonne Université, College de France, 24 Rue Lhomond, F-75005, Paris, France.
School of Physics and Optoelectronic Engineering, Xidian University, Xi'an, 710071, China.
Nat Commun. 2022 Mar 18;13(1):1447. doi: 10.1038/s41467-022-29166-y.
Non-invasive optical imaging techniques are essential diagnostic tools in many fields. Although various recent methods have been proposed to utilize and control light in multiple scattering media, non-invasive optical imaging through and inside scattering layers across a large field of view remains elusive due to the physical limits set by the optical memory effect, especially without wavefront shaping techniques. Here, we demonstrate an approach that enables non-invasive fluorescence imaging behind scattering layers with field-of-views extending well beyond the optical memory effect. The method consists in demixing the speckle patterns emitted by a fluorescent object under variable unknown random illumination, using matrix factorization and a novel fingerprint-based reconstruction. Experimental validation shows the efficiency and robustness of the method with various fluorescent samples, covering a field of view up to three times the optical memory effect range. Our non-invasive imaging technique is simple, neither requires a spatial light modulator nor a guide star, and can be generalized to a wide range of incoherent contrast mechanisms and illumination schemes.
非侵入式光学成像技术是许多领域的重要诊断工具。尽管最近提出了各种利用和控制多散射介质中光的方法,但由于光学记忆效应设定的物理限制,尤其是在没有波前整形技术的情况下,仍然难以实现通过和在散射层内部进行大视场非侵入式光学成像。在这里,我们展示了一种方法,通过矩阵分解和新颖的基于指纹的重建,能够在超出光学记忆效应范围的大视场中对散射层后面的荧光进行非侵入式荧光成像。实验验证表明,该方法对于各种荧光样本具有高效性和鲁棒性,覆盖了高达三倍于光学记忆效应范围的视场。我们的非侵入式成像技术简单,既不需要空间光调制器也不需要导星,并且可以推广到广泛的非相干对比机制和照明方案。