Recent advances in optical microscopy enable the visualization and quantification of biological processes within live cells. To a great extent, these imaging techniques remain limited by the physical properties of the chemical probes that are used as fluorescent tags, detectors and actuators. At the same time, the quantification of concentrations in the intracellular medium is not trivial, but a few approaches that employ optical microscopy have been developed. Herein, we highlight a few examples of how a combination of novel chemical probes and microscopy methods could be used to bring a much-needed quantitative dimension to the field of biological imaging
With the recent development of fluorescent probes and new high-resolution microscopes, biological im...
Visualization of single molecules and specific subsets of cells is widely used for studies of biolog...
Visualization of single molecules and specific subsets of cells is widely used for studies of biolog...
Optical probes, particularly the fluorescent varieties, enable researchers to observe cellular event...
Live cell imaging provides a powerful technique for the analysis of molecular dynamics within cells....
Live cell imaging provides a powerful technique for the analysis of molecular dynamics within cells....
Spectroscopic measurements in single living cells are made possible by the development of computer c...
Principle has it that even the most advanced super-resolution microscope would be futile in providin...
Following the introduction of fluorescent protein tags, the application of fluorescence microscopy i...
In this chapter, we review the imaging techniques and methods of molecular interrogation made possib...
In this chapter, we review the imaging techniques and methods of molecular interrogation made possib...
In this chapter, we review the imaging techniques and methods of molecular interrogation made possib...
International audienceAdvances in fundamental physical and optical principles applied to novel fluor...
Fluorescence photoactivation localization microscopy (FPALM) images biological structures with subdi...
Diffraction limits the biological structures that can be imaged by normal light microscopy. However,...
With the recent development of fluorescent probes and new high-resolution microscopes, biological im...
Visualization of single molecules and specific subsets of cells is widely used for studies of biolog...
Visualization of single molecules and specific subsets of cells is widely used for studies of biolog...
Optical probes, particularly the fluorescent varieties, enable researchers to observe cellular event...
Live cell imaging provides a powerful technique for the analysis of molecular dynamics within cells....
Live cell imaging provides a powerful technique for the analysis of molecular dynamics within cells....
Spectroscopic measurements in single living cells are made possible by the development of computer c...
Principle has it that even the most advanced super-resolution microscope would be futile in providin...
Following the introduction of fluorescent protein tags, the application of fluorescence microscopy i...
In this chapter, we review the imaging techniques and methods of molecular interrogation made possib...
In this chapter, we review the imaging techniques and methods of molecular interrogation made possib...
In this chapter, we review the imaging techniques and methods of molecular interrogation made possib...
International audienceAdvances in fundamental physical and optical principles applied to novel fluor...
Fluorescence photoactivation localization microscopy (FPALM) images biological structures with subdi...
Diffraction limits the biological structures that can be imaged by normal light microscopy. However,...
With the recent development of fluorescent probes and new high-resolution microscopes, biological im...
Visualization of single molecules and specific subsets of cells is widely used for studies of biolog...
Visualization of single molecules and specific subsets of cells is widely used for studies of biolog...