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- W2891701323 abstract "Multiple scattering is a major barrier that limits the optical imaging depth in scattering media. In order to alleviate this effect, we demonstrate aberration-diverse optical coherence tomography (AD-OCT), which exploits the phase correlation between the deterministic signals from single-scattered photons to suppress the random background caused by multiple scattering and speckle. AD-OCT illuminates the sample volume with diverse aberrated point spread functions, and computationally removes these intentionally applied aberrations. After accumulating 12 astigmatism-diverse OCT volumes, we show a 10 dB enhancement in signal-to-background ratio via a coherent average of reconstructed signals from a USAF target located 7.2 scattering mean free paths below a thick scattering layer, and a 3× speckle contrast reduction from an incoherent average of reconstructed signals inside the scattering layer. This AD-OCT method, when implemented using astigmatic illumination, is a promising approach for ultra-deep volumetric optical coherence microscopy." @default.
- W2891701323 created "2018-09-27" @default.
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- W2891701323 date "2018-09-20" @default.
- W2891701323 modified "2023-09-29" @default.
- W2891701323 title "Aberration-diverse optical coherence tomography for suppression of multiple scattering and speckle" @default.
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- W2891701323 doi "https://doi.org/10.1364/boe.9.004919" @default.
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