Although optical absorption is strongly associated with the physiological status of biological tissue, existing high-resolution optical imaging modalities, including confocal microscopy, two-photon microscopy and optical coherence tomography, do not sense optical absorption directly. Furthermore, optical scattering prevents these methods from imaging deeper than ~1 mm below the tissue surface. Here we report functional photoacoustic microscopy (fPAM), which provides multiwavelength imaging of optical absorption and permits high spatial resolution beyond this depth limit with a ratio of maximum imaging depth to depth resolution greater than 100. Reflection mode, rather than orthogonal or transmission mode, is adopted because it is applicable...
Existing high-resolution 3D optical imaging cannot provide penetration into biological tissues beyon...
The hemodynamics and oxygen saturation status of vascular are very important biomarkers for disease,...
Combining light and ultrasound in a single hybrid technology enables multiscale, high-resolution im...
Although optical absorption is strongly associated with the physiological status of biological tissu...
Although optical absorption is strongly associated with the physiological status of biological tissu...
Functional photoacoustic microscopy is a hybrid imaging technique that detects laser induced photoac...
Functional photoacoustic microscopy is a hybrid imaging technique that detects laser induced photoac...
Photoacoustic microscopy extends the current depth limit of the high resolution optical imaging moda...
Photoacoustic microscopy extends the current depth limit of the high resolution optical imaging moda...
Photoacoustic microscopy (PAM) is a fast-growing invivo imaging modality that combines both optics a...
Photoacoustic microscopy (PAM) is a fast-growing invivo imaging modality that combines both optics a...
Functional photoacoustic microscopy (fPAM) is a hybrid technology that permits noninvasive imaging o...
ii Optical microscopy, providing valuable biomedical insights at the cellular and organelle levels, ...
By converting light waves into sound, researchers have developed a high-resolution biological imagin...
Existing high-resolution 3D optical imaging cannot provide penetration into biological tissues beyon...
Existing high-resolution 3D optical imaging cannot provide penetration into biological tissues beyon...
The hemodynamics and oxygen saturation status of vascular are very important biomarkers for disease,...
Combining light and ultrasound in a single hybrid technology enables multiscale, high-resolution im...
Although optical absorption is strongly associated with the physiological status of biological tissu...
Although optical absorption is strongly associated with the physiological status of biological tissu...
Functional photoacoustic microscopy is a hybrid imaging technique that detects laser induced photoac...
Functional photoacoustic microscopy is a hybrid imaging technique that detects laser induced photoac...
Photoacoustic microscopy extends the current depth limit of the high resolution optical imaging moda...
Photoacoustic microscopy extends the current depth limit of the high resolution optical imaging moda...
Photoacoustic microscopy (PAM) is a fast-growing invivo imaging modality that combines both optics a...
Photoacoustic microscopy (PAM) is a fast-growing invivo imaging modality that combines both optics a...
Functional photoacoustic microscopy (fPAM) is a hybrid technology that permits noninvasive imaging o...
ii Optical microscopy, providing valuable biomedical insights at the cellular and organelle levels, ...
By converting light waves into sound, researchers have developed a high-resolution biological imagin...
Existing high-resolution 3D optical imaging cannot provide penetration into biological tissues beyon...
Existing high-resolution 3D optical imaging cannot provide penetration into biological tissues beyon...
The hemodynamics and oxygen saturation status of vascular are very important biomarkers for disease,...
Combining light and ultrasound in a single hybrid technology enables multiscale, high-resolution im...