Title :
Aggregation profile characterisation in dielectrophoretic structures using bacteria and submicron latex particles
Author :
Casanella, R. ; Samitier, J. ; Errachid, A. ; Madrid, C. ; Paytubi, S. ; Juarez, Adrian
Author_Institution :
Biolectronics & Nanobioscience Res. Centre, Nanobioengineering Lab.-CREBEC, Barcelona, Spain
Abstract :
A novel quantitative characterisation method for the measurement of anomalous low frequency aggregation processes on dielectrophoresis electrodes has been developed. Experimental evidence is provided for the relationship between the aggregation effect and AC electro-osmotical fluid motion theory. The aggregation profile dependence for E.coli bacteria, as a function of frequency and applied field, has been quantitatively examined. Additional experimental observations of the aggregation profiles of latex particles with dimensions of hundreds of nanometres, also confirm the relationship between this aggregation effect and the mentioned fluid motion theory.
Keywords :
aggregation; bioelectric phenomena; cellular biophysics; electrohydrodynamics; electrophoresis; microelectrodes; microorganisms; osmosis; two-phase flow; AC electro-osmotical fluid motion theory; E. coli bacteria; aggregation profile characterisation; anomalous low frequency aggregation processes; applied field; bacteria; dielectrophoresis electrodes; dielectrophoretic structures; fluid motion theory; frequency; quantitative characterisation method; submicron latex particles;
Journal_Title :
Nanobiotechnology, IEE Proceedings -
DOI :
10.1049/ip-nbt:20031100