AbstractA surface-based method that can provide early and label-free detection of target microorganisms in water is presented. The method combines three key features, namely, (a) accelerated transportation to, and focusing of bacteria on, the detection surface by means of alternating current (AC) electrokinetic effects, (b) selective capture of the target microorganism using surface-immobilized antibodies, and (c) sensitive detection of target bacteria with micro-Raman spectroscopy. The non-uniform electric field is created by an AC signal-driven planar, quadrupolar, gold microelectrode array that is deposited on the detection surface (oxidized silicon wafer). AC electroosmosis and dielectrophoresis combine to produce the desired concentrat...
La détection rapide de bactéries est un enjeu majeur dans différentes domaines que ce soit l’agroali...
The quality and safety of drinking water is of major importance for human life. Current analytical m...
Thesis (Ph.D.)--University of Washington, 2018The need for rapid and specific pathogen detection is ...
AbstractA surface-based method that can provide early and label-free detection of target microorgani...
Citation: Wang, C., Madiyar, F., Yu, C. X., & Li, J. (2017). Detection of extremely low concentratio...
The bio-sensing for the convenient detection of bacteria has been widely explored with the use of va...
This study reports a novel microfluidic platform for rapid and long-ranged concentration of rare-pat...
Detection of pathogenic organisms in the environment presents several challenges due to the high cos...
Typical bacterial identification methods can take several days to complete. In order to reduce analy...
Anisotropic nanoparticles (i.e., silver nanocubes) were functionalized with target-specific antibodi...
A detection method that combines electric field-assisted virus capture on antibody-decorated surface...
Background: Mass gathering is a risk factor for infectious diseases transmission. Therefore, rapid d...
Abstract Rapid identification and diagnosis of bacteria and other microorganisms is a great challeng...
This work reports a synergistic approach to the concentration, detection and kinetic monitoring of p...
A nanobiosensor chip, utilizing surface enhanced Raman spectroscopy (SERS) on nanosculptured thin fi...
La détection rapide de bactéries est un enjeu majeur dans différentes domaines que ce soit l’agroali...
The quality and safety of drinking water is of major importance for human life. Current analytical m...
Thesis (Ph.D.)--University of Washington, 2018The need for rapid and specific pathogen detection is ...
AbstractA surface-based method that can provide early and label-free detection of target microorgani...
Citation: Wang, C., Madiyar, F., Yu, C. X., & Li, J. (2017). Detection of extremely low concentratio...
The bio-sensing for the convenient detection of bacteria has been widely explored with the use of va...
This study reports a novel microfluidic platform for rapid and long-ranged concentration of rare-pat...
Detection of pathogenic organisms in the environment presents several challenges due to the high cos...
Typical bacterial identification methods can take several days to complete. In order to reduce analy...
Anisotropic nanoparticles (i.e., silver nanocubes) were functionalized with target-specific antibodi...
A detection method that combines electric field-assisted virus capture on antibody-decorated surface...
Background: Mass gathering is a risk factor for infectious diseases transmission. Therefore, rapid d...
Abstract Rapid identification and diagnosis of bacteria and other microorganisms is a great challeng...
This work reports a synergistic approach to the concentration, detection and kinetic monitoring of p...
A nanobiosensor chip, utilizing surface enhanced Raman spectroscopy (SERS) on nanosculptured thin fi...
La détection rapide de bactéries est un enjeu majeur dans différentes domaines que ce soit l’agroali...
The quality and safety of drinking water is of major importance for human life. Current analytical m...
Thesis (Ph.D.)--University of Washington, 2018The need for rapid and specific pathogen detection is ...