Abstract
We exploit memory effect
correlations in speckles for the imaging of incoherent fluorescent
sources behind scattering tissue. These correlations are often weak
when imaging thick scattering tissues and complex illumination
patterns, both of which greatly limit the practicality of associated
techniques. In this work, we introduce a spatial light modulator
between the tissue sample and the imaging sensor and capture multiple
modulations of the speckle pattern. We show that by correctly
designing the modulation patterns and the associated reconstruction
algorithm, statistical correlations in the measurements can be greatly
enhanced. We exploit this to demonstrate the reconstruction of
mega-pixel sized fluorescent patterns behind the scattering
tissue.
Funder
Israel Science Foundation
United States-Israel Binational Science
Foundation
European Research Council
Carnegie Mellon University Wei Shen and
Xuehong Zhang Presidential Fellowship
National Science Foundation
Subject
Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials
Cited by
4 articles.
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