Optoacoustic microscopy (OAM) can image intrinsic optical absorption contrast at depths of several millimeters where state-of-the-art optical microscopy techniques fail due to intense light scattering in living tissues. Yet, wide adoption of OAM in biology and medicine is hindered by slow image acquisition speed, small field of view (FOV), and/or lack of spectral differentiation capacity of common system implementations. We report on a rapid acquisition functional optoacoustic micro-angiography approach that employs a burst-mode laser triggering scheme to simultaneously acquire multi-wavelength 3D images over an extended FOV covering 50mm×50mm in a single mechanical overfly scan, attaining 28 µm and 14 µm resolution in lateral and axial dim...
Optoacoustic tomography systems have attained unprecedented volumetric imaging speeds, thus enabling...
We report the development of photoacoustic microscopy capable of video-rate high-resolution in-vivo ...
We report the development of photoacoustic microscopy capable of video-rate high-resolution in-vivo ...
Optoacoustic imaging provides a unique combination of high optical contrast and excellent spatial re...
Optoacoustic (OA) imaging is an emerging technology capturing volumetric representations of absorbin...
AbstractOptoacoustic imaging provides a unique combination of high optical contrast and excellent sp...
Optoacoustic (OA) imaging is an emerging technology capturing volumetric representations of absorbin...
Optoacoustic (OA) imaging is an emerging technology capturing volumetric representations of absorbin...
Optoacoustic (OA) imaging is an emerging technology capturing volumetric representations of absorbin...
Optoacoustic tomography is an emerging field of medical imaging that is rapidly developing due to it...
AbstractOptoacoustic imaging provides a unique combination of high optical contrast and excellent sp...
Optoacoustic (OA) imaging has the capacity to effectively bridge the gap between macroscopic and mic...
Optoacoustic (OA) imaging has the capacity to effectively bridge the gap between macroscopic and mic...
We developed a combined imaging platform allowing optoacoustic and ultrasound imaging based on a low...
In optoacoustic imaging, short laser pulses irradiate highly scattering human tissue and adiabatical...
Optoacoustic tomography systems have attained unprecedented volumetric imaging speeds, thus enabling...
We report the development of photoacoustic microscopy capable of video-rate high-resolution in-vivo ...
We report the development of photoacoustic microscopy capable of video-rate high-resolution in-vivo ...
Optoacoustic imaging provides a unique combination of high optical contrast and excellent spatial re...
Optoacoustic (OA) imaging is an emerging technology capturing volumetric representations of absorbin...
AbstractOptoacoustic imaging provides a unique combination of high optical contrast and excellent sp...
Optoacoustic (OA) imaging is an emerging technology capturing volumetric representations of absorbin...
Optoacoustic (OA) imaging is an emerging technology capturing volumetric representations of absorbin...
Optoacoustic (OA) imaging is an emerging technology capturing volumetric representations of absorbin...
Optoacoustic tomography is an emerging field of medical imaging that is rapidly developing due to it...
AbstractOptoacoustic imaging provides a unique combination of high optical contrast and excellent sp...
Optoacoustic (OA) imaging has the capacity to effectively bridge the gap between macroscopic and mic...
Optoacoustic (OA) imaging has the capacity to effectively bridge the gap between macroscopic and mic...
We developed a combined imaging platform allowing optoacoustic and ultrasound imaging based on a low...
In optoacoustic imaging, short laser pulses irradiate highly scattering human tissue and adiabatical...
Optoacoustic tomography systems have attained unprecedented volumetric imaging speeds, thus enabling...
We report the development of photoacoustic microscopy capable of video-rate high-resolution in-vivo ...
We report the development of photoacoustic microscopy capable of video-rate high-resolution in-vivo ...