In turbid media such as biological tissues, light undergoes multiple scattering. Consequently, it is not possible to focus light at depths beyond one transport mean free path in such media. To break through this limit, we proposed and experimentally demonstrated a novel technique, based on ultrasonic encoding of diffused laser light and optical time reversal, which effectively focuses light into a turbid medium. In the experimental implementation of the Time-Reversed Ultrasonically Encoded (TRUE) optical focusing, a turbid medium was illuminated by a laser beam with a long coherence length. The incident light was multiply scattered inside the medium and ultrasonically encoded within the ultrasonic focal zone. The wavefront of the ultrasonic...
Scattering dominates light propagation in biological tissue, and therefore restricts both resolution...
Scattering dominates light propagation in biological tissue, and therefore restricts both resolution...
A technique to rapidly scan an optical focus inside a turbid medium is attractive for various biomed...
In turbid media such as biological tissues, light undergoes multiple scattering. Consequently, it is...
In turbid media such as biological tissue, multiple scattering hinders direct light focusing at dept...
Light focusing plays a central role in biomedical imaging, manipulation and therapy. In scattering m...
Time-reversed ultrasonically encoded (TRUE) optical focusing was recently proposed to deliver light ...
Time-reversed ultrasonically encoded (TRUE) optical focusing was recently proposed to deliver light ...
A novel technique uses ultrasonic encoding and time reversal to break the diffusion limit and enabl...
A novel technique uses ultrasonic encoding and time reversal to break the diffusion limit and enabl...
Focusing light inside highly scattering media beyond the ballistic regime is a challenging task in b...
The problem of how to effectively deliver light dynamically to a small volume inside turbid media ha...
The problem of how to effectively deliver light dynamically to a small volume inside turbid media ha...
We report an experimental investigation of time-reversed ultrasonically encoded optical focusing in ...
Scattering dominates light propagation in biological tissue, and therefore restricts both resolution...
Scattering dominates light propagation in biological tissue, and therefore restricts both resolution...
Scattering dominates light propagation in biological tissue, and therefore restricts both resolution...
A technique to rapidly scan an optical focus inside a turbid medium is attractive for various biomed...
In turbid media such as biological tissues, light undergoes multiple scattering. Consequently, it is...
In turbid media such as biological tissue, multiple scattering hinders direct light focusing at dept...
Light focusing plays a central role in biomedical imaging, manipulation and therapy. In scattering m...
Time-reversed ultrasonically encoded (TRUE) optical focusing was recently proposed to deliver light ...
Time-reversed ultrasonically encoded (TRUE) optical focusing was recently proposed to deliver light ...
A novel technique uses ultrasonic encoding and time reversal to break the diffusion limit and enabl...
A novel technique uses ultrasonic encoding and time reversal to break the diffusion limit and enabl...
Focusing light inside highly scattering media beyond the ballistic regime is a challenging task in b...
The problem of how to effectively deliver light dynamically to a small volume inside turbid media ha...
The problem of how to effectively deliver light dynamically to a small volume inside turbid media ha...
We report an experimental investigation of time-reversed ultrasonically encoded optical focusing in ...
Scattering dominates light propagation in biological tissue, and therefore restricts both resolution...
Scattering dominates light propagation in biological tissue, and therefore restricts both resolution...
Scattering dominates light propagation in biological tissue, and therefore restricts both resolution...
A technique to rapidly scan an optical focus inside a turbid medium is attractive for various biomed...