Biomedical Engineering Reference
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12. Morgan H, Izquierdo AG, Bakewell D, Green NG, Ramos A (2001) The dielectrophoretic and
travelling wave forces generated by interdigitated electrode arrays:analytical solution using
Fourier series. J Phys D Appl Phys 34:1553-1561
13. Markx GH, Pethig R, Rousselet J (1997) The dielectrophoretic levitation of latex beads with
reference to field-flow fractionation. J Phys D Appl Phys 30:2470-2477
14. Iliescu C, Xu GL, Samper V, Tay FEH (2005) Fabrication of a dielectrophoretic chip with 3D
silicon electrodes. J Micromech Microeng 15:494-500
15. Park BY, Madou MJ (2005) 3-D electrode designs for flow-through dielectrophoresis systems.
Electrophoresis 26:3745-3757
16. Wang L, Flanagan L, Jeon NL, Monuki E, Lee AP (2007) Dielectrophoresis switching with
vertical sidewall electrodes for microfludic flow cytometry. Lab Chip 7:1114-1120
17. Zhang YT, Bottausci F, Rao MP, Parker ER, Mezic I, MacDonald NC (2008) Titanium-based
dielectrophoresis devices for microfluidic applications. Biomed Microdevices 10:509-517
18. Xia Y, Whitesides GM (1998) Soft lithography. Annu Rev Mater Sci 28:153-184
19. Niu X, Peng S, Liu L, Wen W, Sheng P (2007) Characterizing and patterning of PDMS-based
conducting composites. Adv Mater 19:2682-2686
20. Cetin B, Kang Y, Wu Z, Li D (2009) Continuous particle separation by size via
AC-dielectrophoresis using a lab-on-a-chip device with 3-D electrodes. Electrophoresis
30:766-772
21. Kang Y, Cetin B, Wu Z, Li D (2009) Continuous particle separation with localized
AC-dielectrophoresis using embedded electrodes and an insulating hurdle. Electrochim Acta
54:1715-1720
22. Lewpiriyawong N, Yang C, Lam YC (2010) Continuous sorting and separation of
microparticles by size using AC dielectrophoresis in a PDMS microfluidic device with 3-D
conducting PDMS composite electrodes. Electrophoresis 31:2622-2631
23. Lewpiriyawong N, Kandaswamy K, Yang C, Ivanov V, Stocker R (2011) Microfluidic
characterization and continuous separation of cells and particles using conducting poly
(dimethyl siloxane) electrode induced alternating current-dielectrophoresis. Anal Chem
83:9579-9585
24. Lewpiriyawong N (2011) Continuous separation and manipulation of particles and cells using
dielectrophoresis. Nanyang Technological University, Singapore
25. Jones TB (1995) Electromechanics of particles. Cambridge University Press, Cambridge
26. Morgan H, Green NG (2003) AC electrokinetics: colloids and nanoparticles. Research Studies,
Philadelphia, PA
27. Suehiro J, Hamada R, Noutomi D, Shutou M, Hara M (2003) Selective detection of viable
bacteria using dielectrophoretic impedance measurement method. J Electrostat 57:157-168
28. Wang L, Lu J, Marchenko SA, Monuki ES, Flanagan LA, Lee AP (2009) Dual frequency
dielectrophoresis with interdigitated sidewall electrodes for microfluidic flow-through separa-
tion of beads and cells. Electrophoresis 30:782-791
29. Huang Y, Holzel R, Pethig R, Wang X-B (1992) Differences in the AC electrodynamics of
viable and non-viable yeast cell determined through combined dielectrophoresis and
electrorotation studies. Phys Med Biol 37(7):1499-1517
30. Markx GH, Huang Y, Zhou X-F, Pethig R (1994) Dielectrophoretic characterization and
separation of micro-organisms. Microbiology 140:585-591
31. Lewpiriyawong N, Yang C, Lam YC (2012) Electrokinetically driven concentration of
particles and cells by dielectrophoresis with DC-offset AC electric field. Microfluid Nanofluid
12:723-733
32. Church C, Zhu J, Wang G, Tzeng TJ, Xuan X (2009) Electrokinetic focusing and filtration of
cells in a serpentine microchannel. Biomicrofluidics 3:044109
33. Wolfson A, Haddad N, Dlugy C, Tavor D, Shotland Y (2008) Baker's yeast catalyzed asymmetric
reduction of methyl acetoacetate in glycerol containing systems. Org Commun 1(2):9-16
34. Tay FEH, Yu L, Panga AJ, Iliescu C (2007) Electrical and thermal characterization of a
dielectrophoretic chip with 3D electrodes
for cells manipulation. Electrochim Acta
52:2862-2868
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