Magnetic drug targeting is a technique that involves the binding of medicine to magnetizable particles to allow for more specific transport to the target location. This has recently come to light as a method of drug delivery that reduces the disadvantages of conventional, systemic treatments. This study developed a mathematical model for tracking individual superparamagnetic nanoparticles in blood flow in the presence of an externally applied magnetic field. The model considers the magnetic attraction between the particles and the external magnet, influence of power law flow, diffusive interaction between the particles and blood, and random collisions with red blood cells. A stochastic system of differential equations is presented and solve...
In magnetic drug delivery, therapeutic magnetizable particles are typically injected into the blood ...
A new design of mathematical model of therapeutic compound in blood flow patterns in a capillary att...
Magnetic nanoparticles (MNP) can be used as drug carriers in novel cancer treatment approaches such ...
A numerical model is developed for the motion of superparamagnetic nanoparticles in a non-Newtonian ...
Investigations on the behaviour of superparamagnetic nanoparticles under the influence of a high gra...
In this work, the trajectories and capturing of magnetic nanoparticles coated with drug agent are i...
Drug targeting promises to substantially enhance future therapies, for example through the focussing...
This paper presents the methodology and computational results of simulated medical drug targeting (M...
The delivery of anticancer agents via magnetic carrier particles is an exciting new prospect in trea...
The aim of this study was to characterize the behaviour of superparamagnetic particles in magnetic d...
The aim of Magnetic Drug Targeting (MDT) is to concentrate drugs, attached to magnetic particles, in...
A mathematical model is presented for predicting magnetic targeting of multifunctional carrier parti...
Magnetic drug targeting (MDT) and magnetic-based drug/cargo delivery are emerging treatment methods ...
Motivated by the technology of magnetically targeted drug and gene delivery, in which a magnetic fie...
A mathematical model for targeted drug delivery using magnetic particles is developed. This includes...
In magnetic drug delivery, therapeutic magnetizable particles are typically injected into the blood ...
A new design of mathematical model of therapeutic compound in blood flow patterns in a capillary att...
Magnetic nanoparticles (MNP) can be used as drug carriers in novel cancer treatment approaches such ...
A numerical model is developed for the motion of superparamagnetic nanoparticles in a non-Newtonian ...
Investigations on the behaviour of superparamagnetic nanoparticles under the influence of a high gra...
In this work, the trajectories and capturing of magnetic nanoparticles coated with drug agent are i...
Drug targeting promises to substantially enhance future therapies, for example through the focussing...
This paper presents the methodology and computational results of simulated medical drug targeting (M...
The delivery of anticancer agents via magnetic carrier particles is an exciting new prospect in trea...
The aim of this study was to characterize the behaviour of superparamagnetic particles in magnetic d...
The aim of Magnetic Drug Targeting (MDT) is to concentrate drugs, attached to magnetic particles, in...
A mathematical model is presented for predicting magnetic targeting of multifunctional carrier parti...
Magnetic drug targeting (MDT) and magnetic-based drug/cargo delivery are emerging treatment methods ...
Motivated by the technology of magnetically targeted drug and gene delivery, in which a magnetic fie...
A mathematical model for targeted drug delivery using magnetic particles is developed. This includes...
In magnetic drug delivery, therapeutic magnetizable particles are typically injected into the blood ...
A new design of mathematical model of therapeutic compound in blood flow patterns in a capillary att...
Magnetic nanoparticles (MNP) can be used as drug carriers in novel cancer treatment approaches such ...