Conventional optoacoustic microscopy operates in two distinct modes of optical resolution, for visualization of superficial tissue layers, or acoustic resolution, intended for deep imaging in scattering tissues. Here we introduce a new microscope design with hybrid optical and acoustic resolution, which provides a smooth transition from optical resolution in superficial microscopic imaging to ultrasonic resolution when imaging at greater depths within intensely scattering tissue layers. Experimental validation of the new hybrid optoacoustic microscopy method was performed in phantoms and by means of transcranial mouse brain imaging in vivo
Photoacoustic imaging is a fast growing in vivo imaging modality combining the optical absorption co...
International audiencePicosecond optoacoustic microscopy is a technique that allows imaging single c...
Downloading of the abstract is permitted for personal use only. Optical microscopy remains a major w...
Despite the great promise behind the recent introduction of optoacoustic technology into the arsenal...
Obtaining morphological and physiological information of neurovasculature is very challenging due to...
Recently developed optical-resolution photoacoustic microscopy (OR-PAM), which is based on the detec...
Model-based reconstruction techniques have been successfully implemented in optoacoustic tomography ...
Since the inception of the microscope, optical imaging is serving the biological discovery for more ...
A critical link exists between pathological changes of cerebral vasculature and diseases affecting b...
The acoustically-mismatched skull bone poses significant challenges for the application of ultrasoni...
Fluorescence imaging is widely employed in all fields of cell and molecular biology due to its high ...
Unlike traditional optical methods, optoacoustic imaging is less sensitive to scattering of ballisti...
Photoacoustic microscopy (PAM) is a fast-growing invivo imaging modality that combines both optics a...
We present the investigation of in vivo small model organisms, which are well established in biologi...
The hybrid nature of optoacoustic imaging might impose limitations on concurrent placement of optica...
Photoacoustic imaging is a fast growing in vivo imaging modality combining the optical absorption co...
International audiencePicosecond optoacoustic microscopy is a technique that allows imaging single c...
Downloading of the abstract is permitted for personal use only. Optical microscopy remains a major w...
Despite the great promise behind the recent introduction of optoacoustic technology into the arsenal...
Obtaining morphological and physiological information of neurovasculature is very challenging due to...
Recently developed optical-resolution photoacoustic microscopy (OR-PAM), which is based on the detec...
Model-based reconstruction techniques have been successfully implemented in optoacoustic tomography ...
Since the inception of the microscope, optical imaging is serving the biological discovery for more ...
A critical link exists between pathological changes of cerebral vasculature and diseases affecting b...
The acoustically-mismatched skull bone poses significant challenges for the application of ultrasoni...
Fluorescence imaging is widely employed in all fields of cell and molecular biology due to its high ...
Unlike traditional optical methods, optoacoustic imaging is less sensitive to scattering of ballisti...
Photoacoustic microscopy (PAM) is a fast-growing invivo imaging modality that combines both optics a...
We present the investigation of in vivo small model organisms, which are well established in biologi...
The hybrid nature of optoacoustic imaging might impose limitations on concurrent placement of optica...
Photoacoustic imaging is a fast growing in vivo imaging modality combining the optical absorption co...
International audiencePicosecond optoacoustic microscopy is a technique that allows imaging single c...
Downloading of the abstract is permitted for personal use only. Optical microscopy remains a major w...