Micrometer-sized iron oxide particles (MPIOs) attract increasing interest as contrast agents for cellular tracking by clinical Magnetic Resonance Imaging (MRI). Despite the great potential of MPIOs for in vivo imaging of labeled cells, little is known on the intracellular localization of these particles following uptake due to the lack of techniques with the ability to monitor the particle uptake in vivo at single-cell level. Here, we show that coherent anti-Stokes Raman scattering (CARS) microscopy enables non-invasive, label-free imaging of MPIOs in living cells with sub-micron resolution in three dimensions. CARS allows simultaneous visualization of the cell framework and the MPIOs, where the particles can be readily distinguished from o...
Quantitative determination of the chemical composition of unstained samples, non-invasively, with hi...
International audienceRecent advances in cell therapy and tissue engineering opened new windows for ...
A promising new direction for contrast-enhanced magnetic resonance (MR) imaging involves tracking th...
Micrometer-sized iron oxide particles (MPIOs) attract increasing interest as contrast agents for cel...
There is rapidly increasing interest in the use of MRI to track cell migration in intact animals. Cu...
Traditionally, many advances in the field of biology have been driven by optical microscopy based t...
Cellular MR imaging is a young field that aims to visualize targeted cells in living organisms. In o...
Magnetic particle imaging (MPI) is an emerging imaging modality that specifically detects superparam...
A wide variety of nanoparticles are playing an increasingly important role in drug delivery. Label-f...
Quantitative hyperspectral coherent Raman scattering microscopy merges imaging with spectroscopy and...
Quantifying the chemical composition of unstained intact tissue and cellular samples with high spati...
New methods for programming cells to perform desired functions in vivo promise to enable new diagnos...
The ultimate therapy for ischemic stroke is restoration of blood supply in the ischemic region and r...
An in vitro MR-assay for superparamagnetic iron oxide (SPIO) particle cell labelling assessment via ...
Coherent anti-Stokes Raman scattering (CARS) has established itself as an imaging technique capable ...
Quantitative determination of the chemical composition of unstained samples, non-invasively, with hi...
International audienceRecent advances in cell therapy and tissue engineering opened new windows for ...
A promising new direction for contrast-enhanced magnetic resonance (MR) imaging involves tracking th...
Micrometer-sized iron oxide particles (MPIOs) attract increasing interest as contrast agents for cel...
There is rapidly increasing interest in the use of MRI to track cell migration in intact animals. Cu...
Traditionally, many advances in the field of biology have been driven by optical microscopy based t...
Cellular MR imaging is a young field that aims to visualize targeted cells in living organisms. In o...
Magnetic particle imaging (MPI) is an emerging imaging modality that specifically detects superparam...
A wide variety of nanoparticles are playing an increasingly important role in drug delivery. Label-f...
Quantitative hyperspectral coherent Raman scattering microscopy merges imaging with spectroscopy and...
Quantifying the chemical composition of unstained intact tissue and cellular samples with high spati...
New methods for programming cells to perform desired functions in vivo promise to enable new diagnos...
The ultimate therapy for ischemic stroke is restoration of blood supply in the ischemic region and r...
An in vitro MR-assay for superparamagnetic iron oxide (SPIO) particle cell labelling assessment via ...
Coherent anti-Stokes Raman scattering (CARS) has established itself as an imaging technique capable ...
Quantitative determination of the chemical composition of unstained samples, non-invasively, with hi...
International audienceRecent advances in cell therapy and tissue engineering opened new windows for ...
A promising new direction for contrast-enhanced magnetic resonance (MR) imaging involves tracking th...