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Dimitrov, Vasil Vangelov: Untersuchung der Polarisation und Elektroporation von Lipid-Vesikeln und biologischen Zellen mittels elektro-optischer und konduktometrischer Signalan [...]. 2013
Inhalt
Zusammenfassung
Part I
Graphical Abstract
SREDA Disss
KRAI Dissertation 11_03_13
Part II
Abstract
1. Introduction
2. Materials and methods
3. Experimental results
4. Theory and analysis
4.1 Polarization mechanisms
4.2 Dipole coefficient
4.3 Frequency dependence of the dipole coefficient
4.4 Surface-conductivity
4.5 Induced dipole moment
4.6 Simulation model
4.6.1 Simulation model specifics
4.6.2 Dielectrophoretic potential energy of interaction
4.6.3 Electrostatic energy of interaction
4.6.4 Forces between the latex particles and the yeast cells
4.6.5 Equations of motion
6. Results and discussion
Conclusions
Appendix
Appendix 1: The dipole coefficient dispersion
Appendix 2: The time-dependent dielectrophoretic forces
Appendix 3: The repulsive force factors
Appendix 4: The electrophoretic mobilities.
Appendix 5: Three identical particles in uniform electric field.
Notes and references
Part III
Abstract
1. Electroorientation of E. coli cells in the frequency range 0 – 2 kHz
1.1 Materials and methods
1.2. Results and discussion
Conclusions
Appendix: Dipole coefficient of prolate ellipsoidal particle
Appendix 1: Prolate spheroid parallel to the applied field
Appendix 2: Prolate spheroid perpendicular to the applied field
References
2. Electroporation of S. pombe cells in the frequency range 10 Hz – 3kHz.
2.1 Materials and methods
2.2 Results and discussion
2.3 Conclusions
2.4 References
Danksagung