Optical mesoscopy extends the capabilities of biological visualization beyond the limited penetration depth achieved by microscopy. However, imaging of opaque organisms or tissues larger than a few hundred micrometers requires invasive tissue sectioning or chemical treatment of the specimen for clearing photon scattering, an invasive process that is regardless limited with depth. We developed previously unreported broadband optoacoustic mesoscopy as a tomographic modality to enable imaging of optical contrast through several millimeters of tissue, without the need for chemical treatment of tissues. We show that the unique combination of three-dimensional projections over a broad 500 kHz-40 MHz frequency range combined with multi-wavelength ...
We developed a reflection-mode optoacoustic mesoscopy system, based on raster-scanning of a custom d...
Whole-body optical imaging of post-embryonic stage model organisms is a challenging and long sought-...
We have imaged for the first time human skin in vivo with a raster-scan optoacoustic mesoscopy syste...
Fuelled by innovation, optical microscopy plays a critical role in the life sciences and medicine, f...
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 (OA) imaging is an emerging technology capturing volumetric representations of absorbin...
Optoacoustic imaging provides optical absorption contrast at ultrasonic resolutions in vivo. Previou...
Optoacoustic mesoscopy (OAM) retrieves anatomical and functional contrast in vivo at depths not reso...
Optoacoustic (photoacoustic) mesoscopy aims at high-resolution optical imaging of anatomical, functi...
Multispectral optoacoustic mesoscopy (MSOM) has been recently introduced for cancer imaging, it has ...
Noninvasive imaging of biological tissues using visible and near-infrared light may provide numerous...
Since the inception of the microscope, optical imaging is serving the biological discovery for more ...
In vivo optical imaging modalities are mostly limited to cell cultures, superficial tissues, an...
We developed a reflection-mode optoacoustic mesoscopy system, based on raster-scanning of a custom d...
Whole-body optical imaging of post-embryonic stage model organisms is a challenging and long sought-...
We have imaged for the first time human skin in vivo with a raster-scan optoacoustic mesoscopy syste...
Fuelled by innovation, optical microscopy plays a critical role in the life sciences and medicine, f...
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 (OA) imaging is an emerging technology capturing volumetric representations of absorbin...
Optoacoustic imaging provides optical absorption contrast at ultrasonic resolutions in vivo. Previou...
Optoacoustic mesoscopy (OAM) retrieves anatomical and functional contrast in vivo at depths not reso...
Optoacoustic (photoacoustic) mesoscopy aims at high-resolution optical imaging of anatomical, functi...
Multispectral optoacoustic mesoscopy (MSOM) has been recently introduced for cancer imaging, it has ...
Noninvasive imaging of biological tissues using visible and near-infrared light may provide numerous...
Since the inception of the microscope, optical imaging is serving the biological discovery for more ...
In vivo optical imaging modalities are mostly limited to cell cultures, superficial tissues, an...
We developed a reflection-mode optoacoustic mesoscopy system, based on raster-scanning of a custom d...
Whole-body optical imaging of post-embryonic stage model organisms is a challenging and long sought-...
We have imaged for the first time human skin in vivo with a raster-scan optoacoustic mesoscopy syste...