Magnetic separation provides a rapid and efficient means of isolating biomaterials from complex mixtures based on their adsorption on superparamagnetic (SPM) beads. Flow enhanced non-linear magnetophoresis (FNLM) is a high-resolution mode of separation in which hydrodynamic and magnetic fields are controlled with micron resolution to isolate SPM beads with specific physical properties. In this article we demonstrate that a change in the critical frequency of FNLM can be used to identify beads with magnetic susceptibilities between 0.01 and 1.0 with a sensitivity of 0.01 Hz(-1). We derived an analytical expression for the critical frequency that explicitly incorporates the magnetic and non-magnetic composition of a complex to be separated. T...
Magnetic beads (MB) have now proven to be a powerful tool in both research and biomedical applicatio...
[[abstract]]Analytical magnetapheresis is a newly developed technique for separating magnetically su...
Micro- or nanometer sized magnetic particles (beads) currently have a vast range of life science app...
Magnetic separation provides a rapid and efficient means of isolating biomaterials from complex mixt...
A new mode of transport is described that was capable of high-resolution separation of superparamagn...
A new mode of transport is described that was capable of high-resolution separation of superparamagn...
Nonlinear magnetophoresis (NLM) is a recently introduced technique for onchiptransport and separatio...
A new mode of transport is described that was capable of high-resolution separation of superparamagn...
Nonlinear magnetophoresis (NLM) is a recently introduced technique for onchiptransport and separatio...
Nonlinear magnetophoresis (NLM) is a powerful approach for on-chip transport and separation of super...
Nonlinear magnetophoresis (NLM) is a powerful approach for on-chip transport and separation of super...
Magnetic bead handling is a common tool in purification of biomolecules and subsequent analysis of m...
The separation of target objects conjugated with magnetic particles is a significant application in ...
Extraction of rare target cells from biosamples is enabling for life science research. Traditional r...
We report an improved magnetophoretic method, isomagnetophoresis, employing the magnetic susceptibil...
Magnetic beads (MB) have now proven to be a powerful tool in both research and biomedical applicatio...
[[abstract]]Analytical magnetapheresis is a newly developed technique for separating magnetically su...
Micro- or nanometer sized magnetic particles (beads) currently have a vast range of life science app...
Magnetic separation provides a rapid and efficient means of isolating biomaterials from complex mixt...
A new mode of transport is described that was capable of high-resolution separation of superparamagn...
A new mode of transport is described that was capable of high-resolution separation of superparamagn...
Nonlinear magnetophoresis (NLM) is a recently introduced technique for onchiptransport and separatio...
A new mode of transport is described that was capable of high-resolution separation of superparamagn...
Nonlinear magnetophoresis (NLM) is a recently introduced technique for onchiptransport and separatio...
Nonlinear magnetophoresis (NLM) is a powerful approach for on-chip transport and separation of super...
Nonlinear magnetophoresis (NLM) is a powerful approach for on-chip transport and separation of super...
Magnetic bead handling is a common tool in purification of biomolecules and subsequent analysis of m...
The separation of target objects conjugated with magnetic particles is a significant application in ...
Extraction of rare target cells from biosamples is enabling for life science research. Traditional r...
We report an improved magnetophoretic method, isomagnetophoresis, employing the magnetic susceptibil...
Magnetic beads (MB) have now proven to be a powerful tool in both research and biomedical applicatio...
[[abstract]]Analytical magnetapheresis is a newly developed technique for separating magnetically su...
Micro- or nanometer sized magnetic particles (beads) currently have a vast range of life science app...