A numerical model is developed for the motion of superparamagnetic nanoparticles in a non-Newtonian blood flow under the influence of a magnetic field. The rheological properties of blood are modeled by the Carreau flow and viscosity, and the stochastic effects of Brownian motion and red blood cell collisions are considered. The model is validated with existing data and good agreement with experimental results is shown. The effectiveness of magnetic drug delivery in various blood vessels is assessed and found to be most successful in arterioles and capillaries. A range of magnetic field strengths are modeled using equations for both a bar magnet and a point dipole: it is shown that the bar magnet is effective at capturing nanoparticles in l...
A sound theoretical rationale for the design of a magnetic nanocarrier capable of magnetic capture i...
The aim of Magnetic Drug Targeting (MDT) is to concentrate drugs, attached to magnetic particles, in...
Recently, magnetic targeted drug delivery has been focused on the efficiency of magnetic nanoparticl...
Magnetic drug targeting is a technique that involves the binding of medicine to magnetizable particl...
With the goal of determining strategies to maximise drug delivery to a specific site in the body, we...
Magnetic drug delivery refers to the physical confinement of therapeutic magnetic nanoparticles to ...
The present study considers the mathematical modelling of unsteady non-Newtonian hydro-magnetic nano...
This paper presents the methodology and computational results of simulated medical drug targeting (M...
A mathematical model is presented for predicting magnetic targeting of multifunctional carrier parti...
Magnetic-guided targeted drug delivery (TDD) systems can enhance the treatment of diverse diseases. ...
Investigations on the behaviour of superparamagnetic nanoparticles under the influence of a high gra...
A new design of mathematical model of therapeutic compound in blood flow patterns in a capilla...
Click on the DOI link to access the article (may not be free).Recently, magnetic targeted drug deliv...
Magnetic drug targeting (MDT) and magnetic-based drug/cargo delivery are emerging treatment methods ...
ABSTRACT A numerical investigation simulating feasibility of magnetic drug targeting (MDT) at an ath...
A sound theoretical rationale for the design of a magnetic nanocarrier capable of magnetic capture i...
The aim of Magnetic Drug Targeting (MDT) is to concentrate drugs, attached to magnetic particles, in...
Recently, magnetic targeted drug delivery has been focused on the efficiency of magnetic nanoparticl...
Magnetic drug targeting is a technique that involves the binding of medicine to magnetizable particl...
With the goal of determining strategies to maximise drug delivery to a specific site in the body, we...
Magnetic drug delivery refers to the physical confinement of therapeutic magnetic nanoparticles to ...
The present study considers the mathematical modelling of unsteady non-Newtonian hydro-magnetic nano...
This paper presents the methodology and computational results of simulated medical drug targeting (M...
A mathematical model is presented for predicting magnetic targeting of multifunctional carrier parti...
Magnetic-guided targeted drug delivery (TDD) systems can enhance the treatment of diverse diseases. ...
Investigations on the behaviour of superparamagnetic nanoparticles under the influence of a high gra...
A new design of mathematical model of therapeutic compound in blood flow patterns in a capilla...
Click on the DOI link to access the article (may not be free).Recently, magnetic targeted drug deliv...
Magnetic drug targeting (MDT) and magnetic-based drug/cargo delivery are emerging treatment methods ...
ABSTRACT A numerical investigation simulating feasibility of magnetic drug targeting (MDT) at an ath...
A sound theoretical rationale for the design of a magnetic nanocarrier capable of magnetic capture i...
The aim of Magnetic Drug Targeting (MDT) is to concentrate drugs, attached to magnetic particles, in...
Recently, magnetic targeted drug delivery has been focused on the efficiency of magnetic nanoparticl...