Smart optical coherence tomography for ultra-deep imaging through highly scattering media

被引:151
作者
Badon, Amaury [1 ]
Li, Dayan [1 ]
Lerosey, Geoffroy [1 ]
Boccara, A. Claude [1 ]
Fink, Mathias [1 ]
Aubry, Alexandre [1 ]
机构
[1] PSL Res Univ Paris Sci & Lettres Res Univ, CNRS, Inst Langevin, ESPCI,UMR 7587, 1 Rue Jussieu, F-75005 Paris, France
基金
欧洲研究理事会;
关键词
TIME-REVERSAL OPERATOR; LIGHT; TRANSMISSION; DECOMPOSITION; PROPAGATION; REFLECTION; TRANSPORT; CORNERS; LAYERS; DEPTH;
D O I
10.1126/sciadv.1600370
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Multiple scattering of waves in disordered media is a nightmare whether it is for detection or imaging purposes. So far, the best approach to get rid of multiple scattering is optical coherence tomography. This basically combines confocal microscopy and coherence time gating to discriminate ballistic photons from a predominant multiple scattering background. Nevertheless, the imaging-depth range remains limited to 1 mm at best in human soft tissues because of aberrations and multiple scattering. We propose a matrix approach of optical imaging to push back this fundamental limit. By combining a matrix discrimination of ballistic waves and iterative time reversal, we show, both theoretically and experimentally, an extension of the imaging-depth limit by at least a factor of 2 compared to optical coherence tomography. In particular, the reported experiment demonstrates imaging through a strongly scattering layer from which only 1 reflected photon out of 1000 billion is ballistic. This approach opens a new route toward ultra-deep tissue imaging.
引用
收藏
页数:8
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