Magneto-motive diagnostic systems combining optical coherence tomography (OCT) and ultrasonography (US) can be used to detect magnetic nanoparticles and red blood cells (RBCs) containing iron in response to an external magnetic field. Magnetic force on magnetic nanoparticles and hemoglobin iron may be varied by applying an external current to a solenoid containing a conical iron core that substantially increases and focuses a magnetic field (Bmax = 2 Tesla). In studies using superparamagnetic iron oxide (SPIO) and monocrystalline iron oxide (MION) nanoparticles, the hypothesis of this research is that tissue-based macrophage cells can be detected in an external magnetic field after taking up SPIO nanoparticles in liver and MION nan...
A novel contrast mechanism for imaging blood flow using magneto-motive optical Doppler tomography (M...
Aim: Magnetic particle imaging (MPI) is highly promising for biomedical applications, but optimal tr...
Aim: Magnetic particle imaging (MPI) is highly promising for biomedical applications, but optimal tr...
This review discusses magnetomotive ultrasound, which is an emerging technique that uses superparama...
This review discusses magnetomotive ultrasound, which is an emerging technique that uses superparama...
A novel contrast mechanism for imaging blood flow using magneto-motive optical Doppler tomography (M...
A novel contrast mechanism for imaging blood flow using magneto-motive optical Doppler tomography (M...
The earlier abnormalities coupled with disease can be discovered in the body, the larger is the chan...
The potential of red blood cells (RBCs) loaded with iron oxide nanoparticles as a tracer material fo...
A novel contrast mechanism for imaging blood flow using magneto-motive optical Doppler tomography (M...
The potential of red blood cells (RBCs) loaded with iron oxide nanoparticles as a tracer material fo...
The potential of red blood cells (RBCs) loaded with iron oxide nanoparticles as a tracer material fo...
The potential of red blood cells (RBCs) loaded with iron oxide nanoparticles as a tracer material fo...
Magnetomotive ultrasound imaging is an emerging technique where superparamagnetic iron oxide nanopar...
Aim: Magnetic particle imaging (MPI) is highly promising for biomedical applications, but optimal tr...
A novel contrast mechanism for imaging blood flow using magneto-motive optical Doppler tomography (M...
Aim: Magnetic particle imaging (MPI) is highly promising for biomedical applications, but optimal tr...
Aim: Magnetic particle imaging (MPI) is highly promising for biomedical applications, but optimal tr...
This review discusses magnetomotive ultrasound, which is an emerging technique that uses superparama...
This review discusses magnetomotive ultrasound, which is an emerging technique that uses superparama...
A novel contrast mechanism for imaging blood flow using magneto-motive optical Doppler tomography (M...
A novel contrast mechanism for imaging blood flow using magneto-motive optical Doppler tomography (M...
The earlier abnormalities coupled with disease can be discovered in the body, the larger is the chan...
The potential of red blood cells (RBCs) loaded with iron oxide nanoparticles as a tracer material fo...
A novel contrast mechanism for imaging blood flow using magneto-motive optical Doppler tomography (M...
The potential of red blood cells (RBCs) loaded with iron oxide nanoparticles as a tracer material fo...
The potential of red blood cells (RBCs) loaded with iron oxide nanoparticles as a tracer material fo...
The potential of red blood cells (RBCs) loaded with iron oxide nanoparticles as a tracer material fo...
Magnetomotive ultrasound imaging is an emerging technique where superparamagnetic iron oxide nanopar...
Aim: Magnetic particle imaging (MPI) is highly promising for biomedical applications, but optimal tr...
A novel contrast mechanism for imaging blood flow using magneto-motive optical Doppler tomography (M...
Aim: Magnetic particle imaging (MPI) is highly promising for biomedical applications, but optimal tr...
Aim: Magnetic particle imaging (MPI) is highly promising for biomedical applications, but optimal tr...