Intracellular water concentrations in single living cells were visualized by nonlinear coherent anti-Stokes Raman scattering (CARS) microscopy. In combination with isotopic exchange measurements, CARS microscopy allowed the real-time observation of transient intracellular hydrodynamics at a high spatial resolution. Studies of the hydrodynamics in the microorganism Dictyostelium discoideum indicated the presence of a microscopic region near the plasma membrane where the mobility of water molecules is severely restricted. Modeling the transient hydrodynamics eventuated in the determination of cell-specific cytosolic diffusion and plasma membrane permeability constants. Our experiments demonstrate that CARS microscopy offers an invaluable tool...
The artery wall is equipped with a water permeation barrier that allows blood to flow at high pressu...
A key impediment to studying water-related mechanisms in plants is the inability to noninvasively im...
Neutron scattering, by using deuterium labelling, revealed how intracellular water dynamics, measure...
Intracellular water concentrations in single living cells were visualized by nonlinear coherent anti...
We report on a nonlinear coherent anti-Stokes Raman microscope system based on a high repetition rat...
We have used coherent anti-Stokes Raman scattering (CARS) microscopy as a novel and rapid, label-fre...
Glucose is one of the most fundamental molecules within life and bioengineering sciences. Present un...
International audienceThe mechanism of surfactant-induced cell lysis has been studied with quantitat...
With the increasing number of studies using nonlinear microscopy in the biosciences, an awareness fo...
The mechanism of surfactant-induced cell lysis has been studied with quantitative coherent anti-Stok...
Micrometer-sized iron oxide particles (MPIOs) attract increasing interest as contrast agents for cel...
AbstractNonperturbative monitoring of intracellular organelle transport in unstained living cells wa...
We present a new Coherent Anti-Stokes Raman Scattering (CARS) microscopy technique for label-free im...
Neutron scattering, by using deuterium labelling, revealed how intracellular water dynamics, measure...
Hydrodynamic phenomena are ubiquitous in living organisms and can be used to manipulate cells or emu...
The artery wall is equipped with a water permeation barrier that allows blood to flow at high pressu...
A key impediment to studying water-related mechanisms in plants is the inability to noninvasively im...
Neutron scattering, by using deuterium labelling, revealed how intracellular water dynamics, measure...
Intracellular water concentrations in single living cells were visualized by nonlinear coherent anti...
We report on a nonlinear coherent anti-Stokes Raman microscope system based on a high repetition rat...
We have used coherent anti-Stokes Raman scattering (CARS) microscopy as a novel and rapid, label-fre...
Glucose is one of the most fundamental molecules within life and bioengineering sciences. Present un...
International audienceThe mechanism of surfactant-induced cell lysis has been studied with quantitat...
With the increasing number of studies using nonlinear microscopy in the biosciences, an awareness fo...
The mechanism of surfactant-induced cell lysis has been studied with quantitative coherent anti-Stok...
Micrometer-sized iron oxide particles (MPIOs) attract increasing interest as contrast agents for cel...
AbstractNonperturbative monitoring of intracellular organelle transport in unstained living cells wa...
We present a new Coherent Anti-Stokes Raman Scattering (CARS) microscopy technique for label-free im...
Neutron scattering, by using deuterium labelling, revealed how intracellular water dynamics, measure...
Hydrodynamic phenomena are ubiquitous in living organisms and can be used to manipulate cells or emu...
The artery wall is equipped with a water permeation barrier that allows blood to flow at high pressu...
A key impediment to studying water-related mechanisms in plants is the inability to noninvasively im...
Neutron scattering, by using deuterium labelling, revealed how intracellular water dynamics, measure...