A substantial number of elegant experimental approaches have been developed to image the distribution and dynamics of DNA, mRNA, proteins, organelles, metabolites, and ions in living plant cells. Although the human brain can rapidly assimilate visual information, particularly when presented as animations and movies, it is much more challenging to condense the phenomenal amount of data present in three-, four-, or even five-dimensional images into statistically useful measurements. This review explores a range of in vivo fluorescence imaging applications in plants, with particular emphasis on where quantitative techniques are beginning to emerge
Fluorescencemicroscopy in biomedical research is a light microscope technique designed to view fluor...
Plants exhibit an intriguing morphological and physiological plasticity that enables them to thrive ...
Fluorescence nanoscopy uniquely combines minimally invasive optical access to the internal nanoscale...
A substantial number of elegant experimental approaches have been developed to image the distributio...
Auto-fluorescence emission of plant tissues can be a powerful reporter on plant biochemistry and phy...
International audienceAt the center of cell biology is our ability to image the cell and its various...
Optical and spectroscopic technologies working at subcellular resolution with quantitative output ar...
The study of plant cell physiology is currently experiencing a profound transformation. Novel techni...
Fluorescence microscopy is a non-invasive technique that allows high resolution imaging of cytoskele...
Combining optical properties with a limited choice of fluorophores turns single-molecule imaging in ...
Fluorescence microscopy has become a critical tool for researchers to understand biological processe...
Advances in microscopy automation and image analysis have given biologists the tools to attempt larg...
Fluorescence microscopy is an essential tool in biomedical sciences that allows specific molecules t...
Light-sheet fluorescence microscopy (LSFM) methods collectively represent the major breakthrough in ...
Over the past decade, confocal microscopy and the ever-expanding toolchest of fluorescent protein (x...
Fluorescencemicroscopy in biomedical research is a light microscope technique designed to view fluor...
Plants exhibit an intriguing morphological and physiological plasticity that enables them to thrive ...
Fluorescence nanoscopy uniquely combines minimally invasive optical access to the internal nanoscale...
A substantial number of elegant experimental approaches have been developed to image the distributio...
Auto-fluorescence emission of plant tissues can be a powerful reporter on plant biochemistry and phy...
International audienceAt the center of cell biology is our ability to image the cell and its various...
Optical and spectroscopic technologies working at subcellular resolution with quantitative output ar...
The study of plant cell physiology is currently experiencing a profound transformation. Novel techni...
Fluorescence microscopy is a non-invasive technique that allows high resolution imaging of cytoskele...
Combining optical properties with a limited choice of fluorophores turns single-molecule imaging in ...
Fluorescence microscopy has become a critical tool for researchers to understand biological processe...
Advances in microscopy automation and image analysis have given biologists the tools to attempt larg...
Fluorescence microscopy is an essential tool in biomedical sciences that allows specific molecules t...
Light-sheet fluorescence microscopy (LSFM) methods collectively represent the major breakthrough in ...
Over the past decade, confocal microscopy and the ever-expanding toolchest of fluorescent protein (x...
Fluorescencemicroscopy in biomedical research is a light microscope technique designed to view fluor...
Plants exhibit an intriguing morphological and physiological plasticity that enables them to thrive ...
Fluorescence nanoscopy uniquely combines minimally invasive optical access to the internal nanoscale...