In magnetic drug delivery, therapeutic magnetizable particles are typically injected into the blood stream and magnets are then used to concentrate them to disease locations. The behavior of such particles in-vivo is complex and is governed by blood convection, diffusion (in blood and in tissue), extravasation, and the applied magnetic fields. Using physical first-principles and a sophisticated vessel-membrane-tissue (VMT) numerical solver, we comprehensively analyze in detail the behavior of magnetic particles in blood vessels and surrounding tissue. For any blood vessel (of any size, depth, and blood velocity) and tissue properties, particle size and applied magnetic fields, we consider a Krogh tissue cylinder geometry and solve for the ...
This paper presents the methodology and computational results of simulated medical drug targeting (M...
AbstractCancer is one of the most deadly and widespread diseases nowadays. Local cancer treatments a...
Magnetic targeting utilises the properties of superparamagnetic iron oxide nanoparticles (SPIONs) to...
Magnetic drug delivery refers to the physical confinement of therapeutic magnetic nanoparticles to ...
Magnetic drug targeting (MDT) and magnetic-based drug/cargo delivery are emerging treatment methods ...
Click on the DOI link to access the article (may not be free).Recently, magnetic targeted drug deliv...
Recently, magnetic targeted drug delivery has been focused on the efficiency of magnetic nanoparticl...
With the goal of determining strategies to maximise drug delivery to a specific site in the body, we...
Motivated by the technology of magnetically targeted drug and gene delivery, in which a magnetic fie...
Magnetic drug targeting is a technique that involves the binding of medicine to magnetizable particl...
A mathematical model for targeted drug delivery using magnetic particles is developed. This includes...
The aim of Magnetic Drug Targeting (MDT) is to concentrate drugs, attached to magnetic particles, in...
In in vivo applications of magnetic particles one crucial aspect is the control of their transport i...
Investigations on the behaviour of superparamagnetic nanoparticles under the influence of a high gra...
In general, this study is concerned with the development of theoretical basis for the use of magneti...
This paper presents the methodology and computational results of simulated medical drug targeting (M...
AbstractCancer is one of the most deadly and widespread diseases nowadays. Local cancer treatments a...
Magnetic targeting utilises the properties of superparamagnetic iron oxide nanoparticles (SPIONs) to...
Magnetic drug delivery refers to the physical confinement of therapeutic magnetic nanoparticles to ...
Magnetic drug targeting (MDT) and magnetic-based drug/cargo delivery are emerging treatment methods ...
Click on the DOI link to access the article (may not be free).Recently, magnetic targeted drug deliv...
Recently, magnetic targeted drug delivery has been focused on the efficiency of magnetic nanoparticl...
With the goal of determining strategies to maximise drug delivery to a specific site in the body, we...
Motivated by the technology of magnetically targeted drug and gene delivery, in which a magnetic fie...
Magnetic drug targeting is a technique that involves the binding of medicine to magnetizable particl...
A mathematical model for targeted drug delivery using magnetic particles is developed. This includes...
The aim of Magnetic Drug Targeting (MDT) is to concentrate drugs, attached to magnetic particles, in...
In in vivo applications of magnetic particles one crucial aspect is the control of their transport i...
Investigations on the behaviour of superparamagnetic nanoparticles under the influence of a high gra...
In general, this study is concerned with the development of theoretical basis for the use of magneti...
This paper presents the methodology and computational results of simulated medical drug targeting (M...
AbstractCancer is one of the most deadly and widespread diseases nowadays. Local cancer treatments a...
Magnetic targeting utilises the properties of superparamagnetic iron oxide nanoparticles (SPIONs) to...