A major limiting factor of optical imaging in biological applications is the diffusion of light by tissue, preventing focusing at depths greater than ~1 mm in the body. To overcome this issue, phase-based wavefront shaping alters the phase of sections of the incident wavefront to counteract aberrations in phase caused by scattering. This enables focusing through scattering media beyond the optical diffusion limit and increases signal compared to amplitude-based compensation. However, in previous studies, speed of optimization has typically been limited by the use of a liquid crystal spatial light modulator (SLM) for measurement and display. SLMs usually have refresh rates of less than 100 Hz and require much longer than the speckle correlat...
Focusing through scattering media is a subject of great interest due to its direct impact in the fie...
Digital optical phase conjugation (DOPC) is a new technique employed in wavefront shaping and phase ...
The holy grail of biomedical optical imaging is to perform microscopy deep inside living tissue. Bio...
One of the prime limiting factors of optical imaging in biological applications is the diffusion of ...
In biological applications, optical focusing is limited by the diffusion of light, which prevents fo...
Optical phase conjugation based wavefront shaping techniques are being actively developed to focus l...
Light scattering inhibits high-resolution optical imaging, manipulation, and therapy deep inside bio...
Wave front shaping holds great potential for high-resolution imaging or light delivery either throug...
In biological applications, optical focusing is limited by the diffusion of light, which prevents fo...
Optical scattering prevents light from being focused through thick biological tissue at depths great...
Phase distortions due to scattering in random media restrict optical focusing beyond one transport m...
Propagation of light through scattering media such as ground glass or biological tissue limits the q...
Optical wavefront shaping is a powerful tool for controlling photons in strongly scattering media. I...
Wavefront distortion in scattering media can be compensated for using optical wavefront shaping. In ...
In the field of biomedical optics, optical scattering has traditionally limited the range of imaging...
Focusing through scattering media is a subject of great interest due to its direct impact in the fie...
Digital optical phase conjugation (DOPC) is a new technique employed in wavefront shaping and phase ...
The holy grail of biomedical optical imaging is to perform microscopy deep inside living tissue. Bio...
One of the prime limiting factors of optical imaging in biological applications is the diffusion of ...
In biological applications, optical focusing is limited by the diffusion of light, which prevents fo...
Optical phase conjugation based wavefront shaping techniques are being actively developed to focus l...
Light scattering inhibits high-resolution optical imaging, manipulation, and therapy deep inside bio...
Wave front shaping holds great potential for high-resolution imaging or light delivery either throug...
In biological applications, optical focusing is limited by the diffusion of light, which prevents fo...
Optical scattering prevents light from being focused through thick biological tissue at depths great...
Phase distortions due to scattering in random media restrict optical focusing beyond one transport m...
Propagation of light through scattering media such as ground glass or biological tissue limits the q...
Optical wavefront shaping is a powerful tool for controlling photons in strongly scattering media. I...
Wavefront distortion in scattering media can be compensated for using optical wavefront shaping. In ...
In the field of biomedical optics, optical scattering has traditionally limited the range of imaging...
Focusing through scattering media is a subject of great interest due to its direct impact in the fie...
Digital optical phase conjugation (DOPC) is a new technique employed in wavefront shaping and phase ...
The holy grail of biomedical optical imaging is to perform microscopy deep inside living tissue. Bio...