A meshless numerical scheme [1] is developed in order to simulate the magnetically mediated separation of biological mixture used in lab-on-chip devices as solid carriers for capturing, transporting and detecting biological magnetic labeled entities [2], as well as for drug delivering, magnetic hyperthermia treatment, magnetic resonance imaging, magnetofection, etc. A modified one-way particle-fluid coupling analysis is considered to model the interaction of the base fluid of the mixture with the distributed particles motion. In details, bulk flow influences particle motion (through a simplified Stokes drag relation), while it is strongly dependent on particle motion through (particle) concentration. Due to the imposed magnetic field stagna...
Magnetic beads can be functionalized to capture and separate target pathogens from blood for extraco...
An analytical analysis is presented of the transport and capture of magnetic micro/nano-particles in...
Magnetic beads can be functionalized to capture and separate target pathogens from blood for extraco...
A meshless numerical scheme [1] is developed in order to simulate the magnetically mediated separati...
A meshless numerical scheme is developed in order to simulate the magnetically mediated separation o...
A meshless numerical scheme is developed in order to simulate the magnetically mediated separation o...
A meshless numerical scheme is developed in order to simulate the magnetically mediated separation o...
This paper presents the modeling and optimization of a magnetophoretic bioseparation chip for isolat...
In this work, we report a numerical flow-focused study of bead magnetophoresis inside a continuous-f...
A model is presented for predicting the capture of magnetic micro/nano-particles in a bioseparation ...
AbstractImmunomagnetic isolation of biochemical and organic entities in a microfluidic environment i...
With the goal of determining strategies to maximise drug delivery to a specific site in the body, we...
With the goal of determining strategies to maximise drug delivery to a specific site in the body, we...
© 2019 Author(s). The use of magnetism for various microfluidic functions such as separation, mixing...
The use of functionalized magnetic particles for the detection or separation of multiple chemicals a...
Magnetic beads can be functionalized to capture and separate target pathogens from blood for extraco...
An analytical analysis is presented of the transport and capture of magnetic micro/nano-particles in...
Magnetic beads can be functionalized to capture and separate target pathogens from blood for extraco...
A meshless numerical scheme [1] is developed in order to simulate the magnetically mediated separati...
A meshless numerical scheme is developed in order to simulate the magnetically mediated separation o...
A meshless numerical scheme is developed in order to simulate the magnetically mediated separation o...
A meshless numerical scheme is developed in order to simulate the magnetically mediated separation o...
This paper presents the modeling and optimization of a magnetophoretic bioseparation chip for isolat...
In this work, we report a numerical flow-focused study of bead magnetophoresis inside a continuous-f...
A model is presented for predicting the capture of magnetic micro/nano-particles in a bioseparation ...
AbstractImmunomagnetic isolation of biochemical and organic entities in a microfluidic environment i...
With the goal of determining strategies to maximise drug delivery to a specific site in the body, we...
With the goal of determining strategies to maximise drug delivery to a specific site in the body, we...
© 2019 Author(s). The use of magnetism for various microfluidic functions such as separation, mixing...
The use of functionalized magnetic particles for the detection or separation of multiple chemicals a...
Magnetic beads can be functionalized to capture and separate target pathogens from blood for extraco...
An analytical analysis is presented of the transport and capture of magnetic micro/nano-particles in...
Magnetic beads can be functionalized to capture and separate target pathogens from blood for extraco...