Focusing light deep inside living tissue has not been achieved despite its promise to play a central role in biomedical imaging, optical manipulation and therapy. To address this challenge, internal-guide-star-based wavefront engineering techniques—for example, time-reversed ultrasonically encoded (TRUE) optical focusing—were developed. The speeds of these techniques, however, were limited to no greater than 1 Hz, preventing them from in vivo applications. Here we improve the speed of optical focusing deep inside scattering media by two orders of magnitude, and focus diffuse light inside a dynamic scattering medium having a speckle correlation time as short as 5.6 ms, typical of living tissue. By imaging a target, we demonstrate the first f...
The time-reversed ultrasonically encoded (TRUE) optical focusing technique is a method that is capab...
The strong optical scattering of biological tissue confounds our ability to focus light deeply into ...
The strong optical scattering of biological tissue confounds our ability to focus light deeply into ...
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...
Light focusing plays a central role in biomedical imaging, manipulation and therapy. In scattering m...
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...
We report an experimental investigation of time-reversed ultrasonically encoded optical focusing in ...
Noninvasive light focusing deep inside living biological tissue has long been a goal in biomedical o...
Light scattering inhibits high-resolution optical imaging, manipulation, and therapy deep inside bio...
Light scattering inhibits high-resolution optical imaging, manipulation, and therapy deep inside bio...
Noninvasive light focusing deep inside living biological tissue has long been a goal in biomedical o...
The time-reversed ultrasonically encoded (TRUE) optical focusing technique is a method that is capab...
The time-reversed ultrasonically encoded (TRUE) optical focusing technique is a method that is capab...
The strong optical scattering of biological tissue confounds our ability to focus light deeply into ...
The strong optical scattering of biological tissue confounds our ability to focus light deeply into ...
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...
Light focusing plays a central role in biomedical imaging, manipulation and therapy. In scattering m...
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...
We report an experimental investigation of time-reversed ultrasonically encoded optical focusing in ...
Noninvasive light focusing deep inside living biological tissue has long been a goal in biomedical o...
Light scattering inhibits high-resolution optical imaging, manipulation, and therapy deep inside bio...
Light scattering inhibits high-resolution optical imaging, manipulation, and therapy deep inside bio...
Noninvasive light focusing deep inside living biological tissue has long been a goal in biomedical o...
The time-reversed ultrasonically encoded (TRUE) optical focusing technique is a method that is capab...
The time-reversed ultrasonically encoded (TRUE) optical focusing technique is a method that is capab...
The strong optical scattering of biological tissue confounds our ability to focus light deeply into ...
The strong optical scattering of biological tissue confounds our ability to focus light deeply into ...