Dielectric Relaxation in Biological Systems
Physical Principles, Methods, and Applications
Edited by Valerica Raicu and Yuri Feldman
Table of Contents
Part I: Theoretical Background
1.1. Elementary Theory of the Interaction of Electromagnetic Fields with Dielectric Materials, Yuri Feldman, Paul Ben Ishai, Alexander Puzenko, and Valerica Raicu
1.2. Theory of Suspension of Particles in Homogeneous Fields, Valerica Raicu
1.3. Dielectric Models and Computer Simulations for Complex Aggregates, Valerica Raicu, Katsuhisa Sekine, and Koji Asami
Part II: Experimental Methods and Techniques
2.1. Experimental Methods, Udo Kaatze, Yuri Feldman, Paul Ben Ishai, Anna Greenbaum-Gutina and Valerica Raicu
2.2. Electrode Polarization, Yuri Feldman, Paul Ben Ishai, and Valerica Raicu
2.3. Analysis of Experimental Data and Fitting Problems, Anna Greenbaum, Paul Ben Ishai, Yuri Feldman
Part III: Applications
3.1. Dielectric Relaxation of Water, Udo Kaatze
3.2. Amino Acids and Peptides, Irina Ermolina and Yuri Feldman
3.3. Dielectric Spectroscopy of Hydrated Biomacromolecules, Masahiro Nakanishi and Alexei P. Sokolov
3.4. Proteins in Solutions and Natural Membranes, Irina Ermolina, Yoshihito Hayashi, Valerica Raicu, and Yuri Feldman
3.5. Dielectric Properties of Polyelectrolytes and Lipid Vesicles, Federico Bordi and Stefano Sarti
3.6. Radio-Frequency Dielectric Properties of Cell Suspensions, Koji Asami
3.7. Dielectric Properties of Blood and Blood Components, Yoshihito Hayashi and Koji Asami
3.8. Glucose Detection From Skin Dielectric Measurements, Andreas Caduff and Mark Talary