Cell transplantation and stem cell therapy are promising approaches for regenerative medicine and are of interest to researchers and clinicians worldwide. However, currently, no imaging technique that allows three-dimensional in vivo inspection of therapeutically administered cells in host tissues is available. Therefore, we investigate magnetomotive optical coherence tomography (MM-OCT) of cells labeled with magnetic particles as a potential noninvasive cell tracking method. We develop magnetomotive imaging of mesenchymal stem cells for future cell therapy monitoring. Cells were labeled with fluorescent iron oxide nanoparticles, embedded in tissue-mimicking agar scaffolds, and imaged using a microscope setup with an integrated MM-OCT probe...
In the field of regenerative medicine, we focus on repairing damaged tissue using appropriate cells ...
Monitoring the location, distribution and long-term engraftment of administered cells is critical fo...
Superparamagnetic iron oxide nanoparticles (SPIO-PAA), ultrasmall iron oxide nanoparticles (USPIO-PA...
Cell transplantation and stem cell therapy are promising approaches for regenerative medicine and ar...
In this paper, we present a reliable and robust method for magnetomotive optical coherence tomograph...
In this paper, we present a reliable and robust method for magnetomotive optical coherence tomograph...
Recently, magnetic particle imaging (MPI) has been presented as a new method for the measurement of ...
Magnetomotive microscopy techniques are introduced to investigate cell dynamics and biomechanics. Th...
Abstract—Magnetomotive optical coherence tomography (MM-OCT) is an important tool for the visualizat...
Stem cell therapies have enormous potential for treating many debilitating diseases, including heart...
Stem cell therapies have enormous potential for treating many debilitating diseases, including heart...
Superparamagnetic iron oxide nanoparticles (SPIONs) are an exciting advancement in the field of nano...
imaging technology that tracks externally-induced axial motion of magnetic microbeads in single cell...
Molecularly-specific contrast can greatly enhance the biomedical utility of optical coherence tomogr...
The success of cell therapy approaches is greatly dependent on the ability to precisely deliver and ...
In the field of regenerative medicine, we focus on repairing damaged tissue using appropriate cells ...
Monitoring the location, distribution and long-term engraftment of administered cells is critical fo...
Superparamagnetic iron oxide nanoparticles (SPIO-PAA), ultrasmall iron oxide nanoparticles (USPIO-PA...
Cell transplantation and stem cell therapy are promising approaches for regenerative medicine and ar...
In this paper, we present a reliable and robust method for magnetomotive optical coherence tomograph...
In this paper, we present a reliable and robust method for magnetomotive optical coherence tomograph...
Recently, magnetic particle imaging (MPI) has been presented as a new method for the measurement of ...
Magnetomotive microscopy techniques are introduced to investigate cell dynamics and biomechanics. Th...
Abstract—Magnetomotive optical coherence tomography (MM-OCT) is an important tool for the visualizat...
Stem cell therapies have enormous potential for treating many debilitating diseases, including heart...
Stem cell therapies have enormous potential for treating many debilitating diseases, including heart...
Superparamagnetic iron oxide nanoparticles (SPIONs) are an exciting advancement in the field of nano...
imaging technology that tracks externally-induced axial motion of magnetic microbeads in single cell...
Molecularly-specific contrast can greatly enhance the biomedical utility of optical coherence tomogr...
The success of cell therapy approaches is greatly dependent on the ability to precisely deliver and ...
In the field of regenerative medicine, we focus on repairing damaged tissue using appropriate cells ...
Monitoring the location, distribution and long-term engraftment of administered cells is critical fo...
Superparamagnetic iron oxide nanoparticles (SPIO-PAA), ultrasmall iron oxide nanoparticles (USPIO-PA...