Dielectrophoresis of Tetraselmis sp., a unicellular green alga, in travelling electric fields analyzed using the RC model for a spheroid

Dielectrophoresis of a unicellular green alga, Tetraselmis sp., in a travelling electric field was analyzed using an RC(resistor-capacitor)-model, instead of the Laplace approach reported in our previous work. The model consists of resistorcapacitorpairs in series to represent the conductive and the...

Full description

Bibliographic Details
Main Authors: Sakshin Bunthawin, Raymond J. Ritchie, Pikul Wanichapichart
Format: Article
Language:English
Published: Prince of Songkla University 2011-10-01
Series:Songklanakarin Journal of Science and Technology (SJST)
Subjects:
Online Access:http://rdo.psu.ac.th/sjstweb/journal/33-5/0125-3395-33-5-585-597.pdf
id doaj-ac46bfffab1c41f3987c1dd59bdcef96
record_format Article
spelling doaj-ac46bfffab1c41f3987c1dd59bdcef962020-11-24T20:57:19ZengPrince of Songkla UniversitySongklanakarin Journal of Science and Technology (SJST)0125-33952011-10-01335585597Dielectrophoresis of Tetraselmis sp., a unicellular green alga, in travelling electric fields analyzed using the RC model for a spheroidSakshin BunthawinRaymond J. RitchiePikul WanichapichartDielectrophoresis of a unicellular green alga, Tetraselmis sp., in a travelling electric field was analyzed using an RC(resistor-capacitor)-model, instead of the Laplace approach reported in our previous work. The model consists of resistorcapacitorpairs in series to represent the conductive and the capacitive properties of the shell and the inner part of the spheroid.The model is mathematically simpler than the Laplace model and the RC approach is experimentally superior because only thelower critical frequency [LCF] and cell translational speed are required to be measured experimentally. The effective compleximpedance of the spheroid was mathematically modeled to obtain the Clausius-Mossotti factor ([CMF]) as a function of celldielectric properties. Spectra of dielectrophoretic velocity and the lower critical frequency of the marine green alga, Tetraselmissp. were investigated to determine cell dielectric properties using a manual curve-fitting method. Effects of arsenic at differentconcentrations on the cell were examined to verify the model. Arsenic severely decreases cytoplasmic conductance (c)whereas it increases membrane conductance (m). Effects were easily observable even at the lowest concentration of arsenicused experimentally (1 ppm). The method offers a practical means of manipulating small plant cells and for rapid screeningfor effects on the dielectric properties of cells of various applied experimental treatments.http://rdo.psu.ac.th/sjstweb/journal/33-5/0125-3395-33-5-585-597.pdfdielectrophoresisinterdigitated electrodesphytoplanktonRC modeltravelling wave
collection DOAJ
language English
format Article
sources DOAJ
author Sakshin Bunthawin
Raymond J. Ritchie
Pikul Wanichapichart
spellingShingle Sakshin Bunthawin
Raymond J. Ritchie
Pikul Wanichapichart
Dielectrophoresis of Tetraselmis sp., a unicellular green alga, in travelling electric fields analyzed using the RC model for a spheroid
Songklanakarin Journal of Science and Technology (SJST)
dielectrophoresis
interdigitated electrodes
phytoplankton
RC model
travelling wave
author_facet Sakshin Bunthawin
Raymond J. Ritchie
Pikul Wanichapichart
author_sort Sakshin Bunthawin
title Dielectrophoresis of Tetraselmis sp., a unicellular green alga, in travelling electric fields analyzed using the RC model for a spheroid
title_short Dielectrophoresis of Tetraselmis sp., a unicellular green alga, in travelling electric fields analyzed using the RC model for a spheroid
title_full Dielectrophoresis of Tetraselmis sp., a unicellular green alga, in travelling electric fields analyzed using the RC model for a spheroid
title_fullStr Dielectrophoresis of Tetraselmis sp., a unicellular green alga, in travelling electric fields analyzed using the RC model for a spheroid
title_full_unstemmed Dielectrophoresis of Tetraselmis sp., a unicellular green alga, in travelling electric fields analyzed using the RC model for a spheroid
title_sort dielectrophoresis of tetraselmis sp., a unicellular green alga, in travelling electric fields analyzed using the rc model for a spheroid
publisher Prince of Songkla University
series Songklanakarin Journal of Science and Technology (SJST)
issn 0125-3395
publishDate 2011-10-01
description Dielectrophoresis of a unicellular green alga, Tetraselmis sp., in a travelling electric field was analyzed using an RC(resistor-capacitor)-model, instead of the Laplace approach reported in our previous work. The model consists of resistorcapacitorpairs in series to represent the conductive and the capacitive properties of the shell and the inner part of the spheroid.The model is mathematically simpler than the Laplace model and the RC approach is experimentally superior because only thelower critical frequency [LCF] and cell translational speed are required to be measured experimentally. The effective compleximpedance of the spheroid was mathematically modeled to obtain the Clausius-Mossotti factor ([CMF]) as a function of celldielectric properties. Spectra of dielectrophoretic velocity and the lower critical frequency of the marine green alga, Tetraselmissp. were investigated to determine cell dielectric properties using a manual curve-fitting method. Effects of arsenic at differentconcentrations on the cell were examined to verify the model. Arsenic severely decreases cytoplasmic conductance (c)whereas it increases membrane conductance (m). Effects were easily observable even at the lowest concentration of arsenicused experimentally (1 ppm). The method offers a practical means of manipulating small plant cells and for rapid screeningfor effects on the dielectric properties of cells of various applied experimental treatments.
topic dielectrophoresis
interdigitated electrodes
phytoplankton
RC model
travelling wave
url http://rdo.psu.ac.th/sjstweb/journal/33-5/0125-3395-33-5-585-597.pdf
work_keys_str_mv AT sakshinbunthawin dielectrophoresisoftetraselmisspaunicellulargreenalgaintravellingelectricfieldsanalyzedusingthercmodelforaspheroid
AT raymondjritchie dielectrophoresisoftetraselmisspaunicellulargreenalgaintravellingelectricfieldsanalyzedusingthercmodelforaspheroid
AT pikulwanichapichart dielectrophoresisoftetraselmisspaunicellulargreenalgaintravellingelectricfieldsanalyzedusingthercmodelforaspheroid
_version_ 1716788047421374464