Transport and accumulation of biomolecules, particularly DNA, in active electronic chips are investigated through numerical modeling and experimental verification. Various geometric and design configurations of electronically active DNA chips are considered. Further, we investigate the effect of electric field distribution on practical design of flow cells and chips. Particular attention is focused on the geometric effects on current and electric field distribution which are well captured by a finite element method-based model. We demonstrate that these geometric effects are observed only in buffers of very low conductivity. We also demonstrate that numerical models which do not include the charge transfer mechanism between electrodes and t...
Microfluidics refers to systems composed of fluid conduits and chambers with characteristic dimensio...
Since the advent of genetic analysis, electrode materials have played an irreplaceable role due to t...
Abstract Background Deoxyribonucleic acid (DNA) is one of the best candidate materials for various d...
Transport and accumulation of biomolecules, particularly DNA, in active electronic chips are investi...
A numerical model is presented for the accurate and efficient prediction of pre-concentration and tr...
A numerical model is presented for the accurate and efficient prediction of pre-concentration and tr...
Abstract Background Gene electrotransfer is an established method that enables transfer of DNA into ...
Selection and adjustment of proper physical parameters enables rapid DNA transport, site selective c...
peer reviewedIn this paper, we describe a circuit-element model for the electric detection of biomol...
We have been developing a method of plasma gene transfection that uses microdischarge plasma (MDP) a...
The electrokinetic transport dynamics of deoxyribonucleic acid (DNA) molecules have recently attract...
University of Minnesota Ph.D. dissertation. August 2010. Major: Chemical Engineering. Advisor: Kevin...
Active DNA concentration on a specific site in microsystems was demonstrated by the use of AC electr...
In designing microfabricated electrodes or field-effect DNA biosensors, the response to the oligonuc...
Abstract Background The efficiency of gene electrotransfer, an electroporation-based method for deli...
Microfluidics refers to systems composed of fluid conduits and chambers with characteristic dimensio...
Since the advent of genetic analysis, electrode materials have played an irreplaceable role due to t...
Abstract Background Deoxyribonucleic acid (DNA) is one of the best candidate materials for various d...
Transport and accumulation of biomolecules, particularly DNA, in active electronic chips are investi...
A numerical model is presented for the accurate and efficient prediction of pre-concentration and tr...
A numerical model is presented for the accurate and efficient prediction of pre-concentration and tr...
Abstract Background Gene electrotransfer is an established method that enables transfer of DNA into ...
Selection and adjustment of proper physical parameters enables rapid DNA transport, site selective c...
peer reviewedIn this paper, we describe a circuit-element model for the electric detection of biomol...
We have been developing a method of plasma gene transfection that uses microdischarge plasma (MDP) a...
The electrokinetic transport dynamics of deoxyribonucleic acid (DNA) molecules have recently attract...
University of Minnesota Ph.D. dissertation. August 2010. Major: Chemical Engineering. Advisor: Kevin...
Active DNA concentration on a specific site in microsystems was demonstrated by the use of AC electr...
In designing microfabricated electrodes or field-effect DNA biosensors, the response to the oligonuc...
Abstract Background The efficiency of gene electrotransfer, an electroporation-based method for deli...
Microfluidics refers to systems composed of fluid conduits and chambers with characteristic dimensio...
Since the advent of genetic analysis, electrode materials have played an irreplaceable role due to t...
Abstract Background Deoxyribonucleic acid (DNA) is one of the best candidate materials for various d...