Super-resolution microscopy techniques—capable of overcoming the diffraction limit of light—have opened new opportunities to explore subcellular structures and dynamics not resolvable in conventional far-field microscopy. However, relying on staining with exogenous fluorescent markers, these techniques can sometimes introduce undesired artifacts to the image, mainly due to large tagging agent sizes and insufficient or variable labeling densities. By contrast, the use of endogenous pigments allows imaging of the intrinsic structures of biological samples with unaltered molecular constituents. Here, we report label-free photoacoustic (PA) nanoscopy, which is exquisitely sensitive to optical absorption, with an 88 nm resolution. At each scanni...
Photoacoustic microscopy (PAM) offers label-free, optical absorption contrast. A high-speed, high-re...
Super-resolution microscopy has been increasingly important to delineate nanoscale biological struct...
Super-resolution microscopy has been increasingly important to delineate nanoscale biological struct...
Super-resolution microscopy techniques—capable of overcoming the diffraction limit of light—have ope...
Super-resolution microscopy techniques - capable of overcoming the diffraction limit of light - have...
Combining the absorption-based photoacoustic effect and intensity-dependent photobleaching effect, w...
Optical absorption provides essential biological functional information but cannot be sensed by main...
Mainstream optical microscopy technologies normally detect fluorescence or scattering, which may req...
Subdiffraction optical microscopy allows the imaging of cellular and subcellular structures with a r...
Photoacoustic microscopy (PAM) offers label-free, optical absorption contrast. A high-speed, high-re...
Microscopy based on non-fluorescent absorption dye staining is widely used in various fields of biom...
AbstractPhotoacoustic microscopy (PAM) offers unprecedented sensitivity to optical absorption and op...
Optical microscopy uniquely provides non-invasive imaging of biological specimens and has become an...
We show that it is possible to obtain high optical contrast photoacoustic images of tissue with 0.55...
This book presents the advances in super-resolution microscopy in physics and biomedical optics for ...
Photoacoustic microscopy (PAM) offers label-free, optical absorption contrast. A high-speed, high-re...
Super-resolution microscopy has been increasingly important to delineate nanoscale biological struct...
Super-resolution microscopy has been increasingly important to delineate nanoscale biological struct...
Super-resolution microscopy techniques—capable of overcoming the diffraction limit of light—have ope...
Super-resolution microscopy techniques - capable of overcoming the diffraction limit of light - have...
Combining the absorption-based photoacoustic effect and intensity-dependent photobleaching effect, w...
Optical absorption provides essential biological functional information but cannot be sensed by main...
Mainstream optical microscopy technologies normally detect fluorescence or scattering, which may req...
Subdiffraction optical microscopy allows the imaging of cellular and subcellular structures with a r...
Photoacoustic microscopy (PAM) offers label-free, optical absorption contrast. A high-speed, high-re...
Microscopy based on non-fluorescent absorption dye staining is widely used in various fields of biom...
AbstractPhotoacoustic microscopy (PAM) offers unprecedented sensitivity to optical absorption and op...
Optical microscopy uniquely provides non-invasive imaging of biological specimens and has become an...
We show that it is possible to obtain high optical contrast photoacoustic images of tissue with 0.55...
This book presents the advances in super-resolution microscopy in physics and biomedical optics for ...
Photoacoustic microscopy (PAM) offers label-free, optical absorption contrast. A high-speed, high-re...
Super-resolution microscopy has been increasingly important to delineate nanoscale biological struct...
Super-resolution microscopy has been increasingly important to delineate nanoscale biological struct...