Cryofixation yields outstanding ultrastructural preservation of cells for electron microscopy, but current methods disrupt live cell imaging. Here we demonstrate a microfluidic approach that enables cryofixation to be performed directly in the light microscope with millisecond time resolution and at atmospheric pressure. This will provide a link between imaging/stimulation of live cells and post-fixation optical, electron, or X-ray microscopy
<div><p>Recently, super-resolution microscopy methods such as stochastic optical reconstruction micr...
Correlating complementary multiple scale images of the same object is a straightforward means to dec...
The preservation of cells for electron microscopy by chemical fixation is a lengthy process, requiri...
Cryofixation yields outstanding ultrastructural preservation of cells for electron microscopy, but c...
Cryofixation yields outstanding ultrastructural preservation of cells for electron microscopy, but c...
Light and electron microscopy are complementary methods to study biological systems at the cellular ...
We present a microfluidic platform for studying structure-function relationships at the cellular lev...
Correlating live‐cell imaging with electron microscopy is among the most promising approaches to rel...
We present a microfluidic platform for studying structure-function relationships at the cellular lev...
International audienceBACKGROUND: In cell biology, the study of proteins and organelles requires the...
Super-resolution light microscopy (SRM) enables imaging of biomolecules within cells with nanometer ...
Correlative light and electron microscopy is an increasingly popular technique to study complex biol...
International audienceCorrelating complementary multiple scale images of the same object is a straig...
Recently, super-resolution microscopy methods such as stochastic optical reconstruction microscopy (...
Electron microscopy (EM) offers unparalleled power to study cell substructures at the nanoscale. Cry...
<div><p>Recently, super-resolution microscopy methods such as stochastic optical reconstruction micr...
Correlating complementary multiple scale images of the same object is a straightforward means to dec...
The preservation of cells for electron microscopy by chemical fixation is a lengthy process, requiri...
Cryofixation yields outstanding ultrastructural preservation of cells for electron microscopy, but c...
Cryofixation yields outstanding ultrastructural preservation of cells for electron microscopy, but c...
Light and electron microscopy are complementary methods to study biological systems at the cellular ...
We present a microfluidic platform for studying structure-function relationships at the cellular lev...
Correlating live‐cell imaging with electron microscopy is among the most promising approaches to rel...
We present a microfluidic platform for studying structure-function relationships at the cellular lev...
International audienceBACKGROUND: In cell biology, the study of proteins and organelles requires the...
Super-resolution light microscopy (SRM) enables imaging of biomolecules within cells with nanometer ...
Correlative light and electron microscopy is an increasingly popular technique to study complex biol...
International audienceCorrelating complementary multiple scale images of the same object is a straig...
Recently, super-resolution microscopy methods such as stochastic optical reconstruction microscopy (...
Electron microscopy (EM) offers unparalleled power to study cell substructures at the nanoscale. Cry...
<div><p>Recently, super-resolution microscopy methods such as stochastic optical reconstruction micr...
Correlating complementary multiple scale images of the same object is a straightforward means to dec...
The preservation of cells for electron microscopy by chemical fixation is a lengthy process, requiri...