We present a novel implementation of high-resolution ultrasound-modulated optical tomography that, based on optical contrast, can image several millimeters deep into soft biological tissues. A long-cavity confocal Fabry–Perot interferometer, which provides a large etendue and a short response time, was used to detect the ultrasound-modulated coherent light that traversed the scattering biological tissue. Using 15-MHz ultrasound, we imaged with high-contrast light-absorbing structures placed > 3 mm below the surface of chicken breast tissue. The resolution along the axial and the lateral directions with respect to the ultrasound propagation direction was better than 70 and 120 µm, respectively. The resolution can be scaled down further by u...
An ultrasonic beam was focused into a biological tissue sample to modulate the laser light passing t...
Ultrasound-modulated optical microscopy (UOM) based on a long-cavity confocal Fabry-Perot interferom...
Ultrasound-modulated optical microscopy (UOM) based on a long-cavity confocal Fabry-Perot interferom...
We present a novel implementation of high-resolution ultrasound-modulated optical tomography that, b...
We present an extension of our work on implementation of high-resolution ultrasound-modulated optica...
We explored the possibility of applying very high ultrasound frequencies to achieve very high resolu...
We explored the possibility of applying very high ultrasound frequencies to achieve very high resolu...
We demonstrate that microscopic imaging is feasible in ultrasound-modulated optical tomography (UOT)...
Optical imaging of soft biological tissues is highly desirable since it is nonionizing and provides ...
We present an implementation of ultrasound-modulated optical tomography that has the potential to pr...
Ultrasound-modulated optical tomography (UOT) has the potential to reveal optical contrast deep insi...
A frequency-swept ultrasonic beam was focused into a biological tissue sample to modulate the laser ...
Ultrasound-modulated optical tomography in biological tissue was studied both theoretically and expe...
A frequency-swept ultrasonic beam was focused into a biological tissue sample to modulate the laser ...
An ultrasonic beam was focused into a biological tissue sample to modulate the laser light passing t...
An ultrasonic beam was focused into a biological tissue sample to modulate the laser light passing t...
Ultrasound-modulated optical microscopy (UOM) based on a long-cavity confocal Fabry-Perot interferom...
Ultrasound-modulated optical microscopy (UOM) based on a long-cavity confocal Fabry-Perot interferom...
We present a novel implementation of high-resolution ultrasound-modulated optical tomography that, b...
We present an extension of our work on implementation of high-resolution ultrasound-modulated optica...
We explored the possibility of applying very high ultrasound frequencies to achieve very high resolu...
We explored the possibility of applying very high ultrasound frequencies to achieve very high resolu...
We demonstrate that microscopic imaging is feasible in ultrasound-modulated optical tomography (UOT)...
Optical imaging of soft biological tissues is highly desirable since it is nonionizing and provides ...
We present an implementation of ultrasound-modulated optical tomography that has the potential to pr...
Ultrasound-modulated optical tomography (UOT) has the potential to reveal optical contrast deep insi...
A frequency-swept ultrasonic beam was focused into a biological tissue sample to modulate the laser ...
Ultrasound-modulated optical tomography in biological tissue was studied both theoretically and expe...
A frequency-swept ultrasonic beam was focused into a biological tissue sample to modulate the laser ...
An ultrasonic beam was focused into a biological tissue sample to modulate the laser light passing t...
An ultrasonic beam was focused into a biological tissue sample to modulate the laser light passing t...
Ultrasound-modulated optical microscopy (UOM) based on a long-cavity confocal Fabry-Perot interferom...
Ultrasound-modulated optical microscopy (UOM) based on a long-cavity confocal Fabry-Perot interferom...