We hereby present experimental and theoretical insights on the use of biomineralized magnetite nanoparticles, called magnetosomes, as heat nanoinductors in the magnetic hyperthermia technique. The heating efficiency or specific absorption rate of magnetosomes extracted from Magnetospirillum gryphiswaldense bacteria and immersed in water and agarose gel, was directly determined from the hysteresis loops obtained at different frequencies and magnetic field amplitudes. We demonstrate that heat production of magnetosomes can be predicted in the framework of the Stoner−Wohlfarth theory of uniaxial magnetic anisotropy subjected to significant dipolar interactions, which can be described in terms of an interaction anisotropy superimposed to that o...
The oriented attachment of magnetic nanoparticles is recognized as an important pathway in the magne...
This work aims to demonstrate the need for in silico design via numerical simulation to produce opti...
Magnetotactic bacteria are aquatic microorganisms that internally biomineralize chains of magnetic n...
AbstractMagnetic fluid hyperthermia (MFH) promises to be a viable alternative in the treatment of lo...
A number of materials are studied in the field of magnetic hyperthermia. In general, the most promis...
The oriented attachment of magnetic nanoparticles is recognized as an important pathway in the magne...
The performance of magnetic nanoparticles is intimately entwined with their structure, mean size and...
Resumen del trabajo presentado a la 9th International Conference on Fine Particle Magnetism, celebra...
Magnetic Fluid Hyperthermia mediated by iron oxide nanoparticles is one of the most promising therap...
Background: Apoptosis of mutated cells via magnetic hyperthermia has gained advocacy as technology c...
Background: Apoptosis of mutated cells via magnetic hyperthermia has gained advocacy as technology c...
Background: Apoptosis of mutated cells via magnetic hyperthermia has gained advocacy as technology c...
The performance of magnetic nanoparticles is intimately entwined with their structure, mean size and...
Magnetic Fluid Hyperthermia mediated by iron oxide nanoparticles is one of the mostpromising therapi...
The oriented attachment of magnetic nanoparticles is recognized as an important pathway in the magne...
The oriented attachment of magnetic nanoparticles is recognized as an important pathway in the magne...
This work aims to demonstrate the need for in silico design via numerical simulation to produce opti...
Magnetotactic bacteria are aquatic microorganisms that internally biomineralize chains of magnetic n...
AbstractMagnetic fluid hyperthermia (MFH) promises to be a viable alternative in the treatment of lo...
A number of materials are studied in the field of magnetic hyperthermia. In general, the most promis...
The oriented attachment of magnetic nanoparticles is recognized as an important pathway in the magne...
The performance of magnetic nanoparticles is intimately entwined with their structure, mean size and...
Resumen del trabajo presentado a la 9th International Conference on Fine Particle Magnetism, celebra...
Magnetic Fluid Hyperthermia mediated by iron oxide nanoparticles is one of the most promising therap...
Background: Apoptosis of mutated cells via magnetic hyperthermia has gained advocacy as technology c...
Background: Apoptosis of mutated cells via magnetic hyperthermia has gained advocacy as technology c...
Background: Apoptosis of mutated cells via magnetic hyperthermia has gained advocacy as technology c...
The performance of magnetic nanoparticles is intimately entwined with their structure, mean size and...
Magnetic Fluid Hyperthermia mediated by iron oxide nanoparticles is one of the mostpromising therapi...
The oriented attachment of magnetic nanoparticles is recognized as an important pathway in the magne...
The oriented attachment of magnetic nanoparticles is recognized as an important pathway in the magne...
This work aims to demonstrate the need for in silico design via numerical simulation to produce opti...
Magnetotactic bacteria are aquatic microorganisms that internally biomineralize chains of magnetic n...