A novel frequency-swept ultrasound-modulated optical tomography technique was developed to image scattering media. A frequency-swept ultrasonic wave was used to modulate the laser light passing through a scattering medium. The modulated light was received by an optical detector and was heterodyned with a reference frequency sweep. The heterodyned signal was recorded in the time domain and was then analyzed in the frequency domain to yield a one-dimensional image along the ultrasonic axis. Multiple one-dimensional images obtained at various positions perpendicular to the ultrasonic axis were combined to yield a two-dimensional tomographic image of the medium
Two imaging techniques combining ultrasound and light are reviewed. The motivation is to combine the...
An optical imaging technique called ultrasound-modulated optical computed tomography is demonstrated...
An optical imaging technique called ultrasound-modulated optical computed tomography is demonstrated...
A novel frequency-swept ultrasound-modulated optical tomography technique was developed to image sca...
A novel frequency-swept (chirped) ultrasound modulated optical tomography technique was developed to...
A novel chirped ultrasound-modulated optical tomography technique was developed to image turbid medi...
A novel chirped ultrasound-modulated optical tomography technique was developed to image turbid medi...
Based on measurement of the intensity autocorrelation function, a new method to determine the modula...
Based on measurement of the intensity autocorrelation function, a new method to determine the modula...
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...
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...
Ultrasound-modulated optical tomography in biological tissue was studied both theoretically and expe...
Two imaging techniques combining ultrasound and light are reviewed. The motivation is to combine the...
An optical imaging technique called ultrasound-modulated optical computed tomography is demonstrated...
An optical imaging technique called ultrasound-modulated optical computed tomography is demonstrated...
A novel frequency-swept ultrasound-modulated optical tomography technique was developed to image sca...
A novel frequency-swept (chirped) ultrasound modulated optical tomography technique was developed to...
A novel chirped ultrasound-modulated optical tomography technique was developed to image turbid medi...
A novel chirped ultrasound-modulated optical tomography technique was developed to image turbid medi...
Based on measurement of the intensity autocorrelation function, a new method to determine the modula...
Based on measurement of the intensity autocorrelation function, a new method to determine the modula...
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...
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...
Ultrasound-modulated optical tomography in biological tissue was studied both theoretically and expe...
Two imaging techniques combining ultrasound and light are reviewed. The motivation is to combine the...
An optical imaging technique called ultrasound-modulated optical computed tomography is demonstrated...
An optical imaging technique called ultrasound-modulated optical computed tomography is demonstrated...