Biological tissue is a highly scattering medium that prevents deep imaging of light. For medical applications, optical imaging offers a molecular sensitivity that would be beneficial for diagnosing and monitoring of diseases. Acousto-optical tomography has the molecular sensitivity of optical imaging with the resolution of ultrasound and has the potential for deep tissue imaging. Here, we present a theoretical study of a system that combines acousto-optical tomography and slow light spectral filters created using spectral hole burning methods. Using Monte Carlo simulations, a model to obtain the contrast-to-noise ratio (CNR) deep in biological tissue was developed. The simulations show a CNR > 1 for imaging depths of ∼5 cm in a reflectio...
Despite the important medical implications, it is currently an open task to find optical non-invasiv...
Ultrasound-modulated optical tomography (UOT) has the potential to reveal optical contrast deep insi...
Photoacoustic tomography (PAT) in a circular scanning configuration was developed to image the deepl...
Biological tissue is a highly scattering medium that prevents deep imaging of light. For medical app...
Biological tissue is a highly scattering medium that prevents deep imaging of light. For medical app...
The medical imaging technique called “ultrasound optical tomography” (UOT) entails light scattered i...
Ultrasound optical tomography (UOT) is an imaging technique based on the acousto-optic effect that c...
Ultrasound Optical Tomography (UOT) is a proposed technique, which combines ultrasound imaging and o...
We apply spectral hole burning (SHB)-aided detection in ultrasound-modulated optical tomography (UOT...
We present a novel optical quantum sensor using spectral hole-burning for detecting signals in ultra...
Ultrasound-modulated optical tomography is a hybrid imaging technique based on detection of the diff...
Monte Carlo simulations were used to determine the contrast-to-noise ratio of acoustooptical tomogra...
The lack of efficient detection techniques has so far prevented ultrasound-modulated optical tomogra...
Slow light has been extensively studied for applications ranging from optical delay lines to single ...
We applied a submegahertz nonlinear optical filter afforded by a cryogenically cooled spectral-hole ...
Despite the important medical implications, it is currently an open task to find optical non-invasiv...
Ultrasound-modulated optical tomography (UOT) has the potential to reveal optical contrast deep insi...
Photoacoustic tomography (PAT) in a circular scanning configuration was developed to image the deepl...
Biological tissue is a highly scattering medium that prevents deep imaging of light. For medical app...
Biological tissue is a highly scattering medium that prevents deep imaging of light. For medical app...
The medical imaging technique called “ultrasound optical tomography” (UOT) entails light scattered i...
Ultrasound optical tomography (UOT) is an imaging technique based on the acousto-optic effect that c...
Ultrasound Optical Tomography (UOT) is a proposed technique, which combines ultrasound imaging and o...
We apply spectral hole burning (SHB)-aided detection in ultrasound-modulated optical tomography (UOT...
We present a novel optical quantum sensor using spectral hole-burning for detecting signals in ultra...
Ultrasound-modulated optical tomography is a hybrid imaging technique based on detection of the diff...
Monte Carlo simulations were used to determine the contrast-to-noise ratio of acoustooptical tomogra...
The lack of efficient detection techniques has so far prevented ultrasound-modulated optical tomogra...
Slow light has been extensively studied for applications ranging from optical delay lines to single ...
We applied a submegahertz nonlinear optical filter afforded by a cryogenically cooled spectral-hole ...
Despite the important medical implications, it is currently an open task to find optical non-invasiv...
Ultrasound-modulated optical tomography (UOT) has the potential to reveal optical contrast deep insi...
Photoacoustic tomography (PAT) in a circular scanning configuration was developed to image the deepl...