During the biomedical and biotechnological applications of hydroxyapatite based magnetic biomaterials the response to various magnetic fields (i.e. change in flow behavior) plays a pivotal role in manipulating these materials. Numerous studies discuss the synthesis, characterization and possible applications of magnetic hydroxyapatite, however the number of reports related to the magnetic response is limited. In this study we investigated the response of aqueous suspensions of magnetite/hydroxyapatite composites with gelatin as an additive to homogeneous and inhomogeneous magnetic fields. Under homogeneous field the change in rheological properties was determined, and correlated with the composition of the composites. The effect of magnetit...
<div><p>We report the preparation of novel magnetic field-responsive tissue substitutes based on bio...
We report the preparation of novel magnetic field-responsive tissue substitutes based on biocompatib...
In this article we present the morphological and magnetic characterization of ferrofluid-impregnated...
We investigate magnetorheological fluids (MRFs) prepared with carbonyl iron powder and different typ...
This study demonstrates the formation of biocompatible magnetic particles into organized structures ...
This study investigated the steady shear flow and viscoelastic properties of composite materials ela...
We report an experimental and theoretical study of the rheological properties of magnetic biogels co...
International audiencewe study the rheological behaviour (in the absence of a magnetic field and upo...
Magnetic hydrogels (ferrogels) are soft materials with a wide range of applications, especially in b...
This work investigates the mechanical properties, microstructures, and water-swelling behavior of a ...
Magnetic materials are of interest for biomedical applications for the ability to remotely control m...
A hydrogel is a 3-D network of polymer chains in which water is the dispersion medium. Hydrogels hav...
The chemical, biological and physical properties of carboxymethylcellulose (CMC) hydrogels with sila...
In this article we present the morphological and magnetic characterization of ferrofluid-impregnated...
We report the preparation of novel magnetic field-responsive tissue substitutes based on biocompatib...
<div><p>We report the preparation of novel magnetic field-responsive tissue substitutes based on bio...
We report the preparation of novel magnetic field-responsive tissue substitutes based on biocompatib...
In this article we present the morphological and magnetic characterization of ferrofluid-impregnated...
We investigate magnetorheological fluids (MRFs) prepared with carbonyl iron powder and different typ...
This study demonstrates the formation of biocompatible magnetic particles into organized structures ...
This study investigated the steady shear flow and viscoelastic properties of composite materials ela...
We report an experimental and theoretical study of the rheological properties of magnetic biogels co...
International audiencewe study the rheological behaviour (in the absence of a magnetic field and upo...
Magnetic hydrogels (ferrogels) are soft materials with a wide range of applications, especially in b...
This work investigates the mechanical properties, microstructures, and water-swelling behavior of a ...
Magnetic materials are of interest for biomedical applications for the ability to remotely control m...
A hydrogel is a 3-D network of polymer chains in which water is the dispersion medium. Hydrogels hav...
The chemical, biological and physical properties of carboxymethylcellulose (CMC) hydrogels with sila...
In this article we present the morphological and magnetic characterization of ferrofluid-impregnated...
We report the preparation of novel magnetic field-responsive tissue substitutes based on biocompatib...
<div><p>We report the preparation of novel magnetic field-responsive tissue substitutes based on bio...
We report the preparation of novel magnetic field-responsive tissue substitutes based on biocompatib...
In this article we present the morphological and magnetic characterization of ferrofluid-impregnated...