Mitochondria and mitochondrial dynamics play vital roles in health and disease. With the intricate nanometer-scale structure and rapid dynamics of mitochondria, super-resolution microscopy techniques possess great un-tapped potential to significantly contribute to understanding mitochondrial biology and kinetics. Here we present a novel mitochondrial probe (MitoRed AIE) suitable for live mitochondrial dynamics imaging and single particle tracking (SPT), together with a multi-dimensional data analysis approach to assess local mitochondrial (membrane) fluidity. The MitoRed AIE probe localizes primarily to mitochondrial membranes, with 95 ms fluorophore on-time delivering 106 photons/ms, characteristics which we exploit to demonstrate live cel...
Stochastic optical reconstruction microscopy (STORM) is a promising method for the visualization of ...
Microscopy is the primary tool for analyzing dynamical processes in live cells. With modern fluoresce...
We present a 3D time-lapse imaging method for monitoring mitochondrial dynamics in living HeLa cells...
AbstractClassically, mitochondria have been studied by biochemical, genetic and electron microscopic...
AbstractClassically, mitochondria have been studied by biochemical, genetic and electron microscopic...
Because of its importance in the chemiosmotic theory, mitochondrial membrane potential has been the ...
Fluorescence super-resolution microscopy has allowed unprecedented insight into the workings of biol...
We present a 3D time-lapse imaging method for monitoring mitochondrial dynamics in living HeLa cells...
Because of its importance in the chemiosmotic theory, mitochondrial membrane potential has been the ...
Imaging membranes in live cells with nanometer-scale resolution promises to reveal ultrastructural d...
Imaging membranes in live cells with nanometer-scale resolution promises to reveal ultrastructural d...
Mitochondrial morphology and length change during fission and fusion and mitochondrial movement vari...
The dimensions of mitochondria are close to the diffraction limit of conventional light microscopy t...
The dimensions of mitochondria are close to the diffraction limit of conventional light microscopy t...
We investigated the transport of neuronal mitochondria using superlocalized near-fields with plasmon...
Stochastic optical reconstruction microscopy (STORM) is a promising method for the visualization of ...
Microscopy is the primary tool for analyzing dynamical processes in live cells. With modern fluoresce...
We present a 3D time-lapse imaging method for monitoring mitochondrial dynamics in living HeLa cells...
AbstractClassically, mitochondria have been studied by biochemical, genetic and electron microscopic...
AbstractClassically, mitochondria have been studied by biochemical, genetic and electron microscopic...
Because of its importance in the chemiosmotic theory, mitochondrial membrane potential has been the ...
Fluorescence super-resolution microscopy has allowed unprecedented insight into the workings of biol...
We present a 3D time-lapse imaging method for monitoring mitochondrial dynamics in living HeLa cells...
Because of its importance in the chemiosmotic theory, mitochondrial membrane potential has been the ...
Imaging membranes in live cells with nanometer-scale resolution promises to reveal ultrastructural d...
Imaging membranes in live cells with nanometer-scale resolution promises to reveal ultrastructural d...
Mitochondrial morphology and length change during fission and fusion and mitochondrial movement vari...
The dimensions of mitochondria are close to the diffraction limit of conventional light microscopy t...
The dimensions of mitochondria are close to the diffraction limit of conventional light microscopy t...
We investigated the transport of neuronal mitochondria using superlocalized near-fields with plasmon...
Stochastic optical reconstruction microscopy (STORM) is a promising method for the visualization of ...
Microscopy is the primary tool for analyzing dynamical processes in live cells. With modern fluoresce...
We present a 3D time-lapse imaging method for monitoring mitochondrial dynamics in living HeLa cells...