International audienceMagnetorelaxometry measurements on immobilized superparamagnetic magnetite (Fe3O4) nanoparticles in freeze-dried samples using a low-cost Improved Giant MagnetoResistance Magnetometer (IGMRM) are presented. Fits to relaxation phenomenological model based on Moment Superposition Model (MSM) are used to extract the characteristic values. Concentrations of iron down to 3.85 mol are identified in a 150 l volume from experimental measurements. Also, the extracted amplitude characteristic value confidence intervals associated to measurements and detection performances are given
The magnetic resonance imaging contrast agent, the so-called Endorem (TM) colloidal suspension on th...
We demonstrated the use of exchange-biased giant magnetoresistance (GMR) sensors inWheatstone bridge...
Magnetic nanoparticles in colloidal dispersions are important for biomedical applications like magne...
International audienceMagnetorelaxometry measurements on immobilized superparamagnetic magnetite (Fe...
International audienceWe have performed magnetorelaxometry measurements on superparamagnetic magneti...
Magnetorelaxometry (MRX) is a promising new biosensing technique for point-of-care diagnostics. Hist...
The discrimination of immobilised superparamagnetic iron oxide nanoparticles (SPIONs) against SPIONs...
International audienceA complete statistical model taking into account the nature of the magnetic se...
In recent years, many biomedical applications based on magnetic nanoparticles, such as disease detec...
For biomagnetical applications exploiting physical properties of magnetic nanoparticles (MNP), e.g.,...
In recent years, the quantitative detection of biomolecules based on Giant magnetoresistive (GMR) se...
Magnetorelaxometry and thermal magnetic noise spectroscopy are two magnetic characterization techniq...
We demonstrate that the quasistatic recording of the magnetic excitation function M(H) of superparam...
The present study describes a new concept of magnetic detection that can be used for fast, selective...
Magnetorelaxometry (MRX) is a non-invasive method for the specific quantification of magnetic nanopa...
The magnetic resonance imaging contrast agent, the so-called Endorem (TM) colloidal suspension on th...
We demonstrated the use of exchange-biased giant magnetoresistance (GMR) sensors inWheatstone bridge...
Magnetic nanoparticles in colloidal dispersions are important for biomedical applications like magne...
International audienceMagnetorelaxometry measurements on immobilized superparamagnetic magnetite (Fe...
International audienceWe have performed magnetorelaxometry measurements on superparamagnetic magneti...
Magnetorelaxometry (MRX) is a promising new biosensing technique for point-of-care diagnostics. Hist...
The discrimination of immobilised superparamagnetic iron oxide nanoparticles (SPIONs) against SPIONs...
International audienceA complete statistical model taking into account the nature of the magnetic se...
In recent years, many biomedical applications based on magnetic nanoparticles, such as disease detec...
For biomagnetical applications exploiting physical properties of magnetic nanoparticles (MNP), e.g.,...
In recent years, the quantitative detection of biomolecules based on Giant magnetoresistive (GMR) se...
Magnetorelaxometry and thermal magnetic noise spectroscopy are two magnetic characterization techniq...
We demonstrate that the quasistatic recording of the magnetic excitation function M(H) of superparam...
The present study describes a new concept of magnetic detection that can be used for fast, selective...
Magnetorelaxometry (MRX) is a non-invasive method for the specific quantification of magnetic nanopa...
The magnetic resonance imaging contrast agent, the so-called Endorem (TM) colloidal suspension on th...
We demonstrated the use of exchange-biased giant magnetoresistance (GMR) sensors inWheatstone bridge...
Magnetic nanoparticles in colloidal dispersions are important for biomedical applications like magne...