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Volumn 873, Issue , 1999, Pages 1-12

The practical success of impedance techniques from an historical perspective

Author keywords

[No Author keywords available]

Indexed keywords

BIOCHEMISTRY; BIOPHYSICS; BIOPSY; BODY WATER; BRAIN RADIOGRAPHY; CELL SELECTION; CELL SHAPE; COMPUTER ASSISTED IMPEDANCE TOMOGRAPHY; CONFERENCE PAPER; COULTER COUNTER; DIAGNOSTIC PROCEDURE; DIATHERMY; DISPERSION; DOSIMETRY; ELECTROMAGNETIC FIELD; ELECTROPHYSIOLOGY; HEART FUNCTION; HISTORY; IMPEDANCE; IMPEDANCE PLETHYSMOGRAPHY; LABORATORY; LUNG FUNCTION; MEMBRANE; MONITORING; SPECTROSCOPY; TISSUE CULTURE;

EID: 0032987336     PISSN: 00778923     EISSN: None     Source Type: Book Series    
DOI: 10.1111/j.1749-6632.1999.tb09443.x     Document Type: Conference Paper
Times cited : (38)

References (30)
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    • 1. Hoeber, R. 1910. Eine Methode die elektrische Leitfaehigkeit im Innern von Zellen zu messen. Arch. Ges. Physiol. 133: 237-259; 1912, Ein zweites Verfahren die Leitfaehigkeit im Innern von Zellen zu messen. Arch. Ges. Physiol. 148: 189-221; 1913. Messungen der inneren Leitfaehigkeit von Zellen III. Arch. Ges. Physiol. 150: 15-45. These articles were the first to determine internal cell conductivities. They furthermore established the existence of the ß-dispersion and membranes by demonstrating the difference between low-and high-frequency conductivity values.
    • (1910) Arch. Ges. Physiol. , vol.133 , pp. 237-259
    • Hoeber, R.1
  • 2
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    • Ein zweites verfahren die leitfaehigkeit im innern von zellen zu messen
    • 1. Hoeber, R. 1910. Eine Methode die elektrische Leitfaehigkeit im Innern von Zellen zu messen.Arch. Ges. Physiol. 133: 237-259; 1912, Ein zweites Verfahren die Leitfaehigkeit im Innern von Zellen zu messen. Arch. Ges. Physiol. 148: 189-221; 1913. Messungen der inneren Leitfaehigkeit von Zellen III. Arch. Ges. Physiol. 150: 15-45. These articles were the first to determine internal cell conductivities. They furthermore established the existence of the ß-dispersion and membranes by demonstrating the difference between low-and high-frequency conductivity values.
    • (1912) Arch. Ges. Physiol. , vol.148 , pp. 189-221
  • 3
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    • Messungen der inneren leitfaehigkeit von zellen III
    • These articles were the first to determine internal cell conductivities. They furthermore established the existence of the ß-dispersion and membranes by demonstrating the difference between low-and high-frequency conductivity values
    • 1. Hoeber, R. 1910. Eine Methode die elektrische Leitfaehigkeit im Innern von Zellen zu messen.Arch. Ges. Physiol. 133: 237-259; 1912, Ein zweites Verfahren die Leitfaehigkeit im Innern von Zellen zu messen. Arch. Ges. Physiol. 148: 189-221; 1913. Messungen der inneren Leitfaehigkeit von Zellen III. Arch. Ges. Physiol. 150: 15-45. These articles were the first to determine internal cell conductivities. They furthermore established the existence of the ß-dispersion and membranes by demonstrating the difference between low-and high-frequency conductivity values.
    • (1913) Arch. Ges. Physiol. , vol.150 , pp. 15-45
  • 4
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    • University of California Press, Berkeley/Los Angeles. This is an often-quoted detailed reference to the cellular work done by Frieke, Cole, Curtis, and Schwan and the important extension to the nonlinear level leading to the Hodgkin-Huxley equations
    • 2. Cole, K. S. 1968. Membranes, Ions, and Impulses. University of California Press, Berkeley/Los Angeles. This is an often-quoted detailed reference to the cellular work done by Frieke, Cole, Curtis, and Schwan and the important extension to the nonlinear level leading to the Hodgkin-Huxley equations.
    • (1968) Membranes, Ions, and Impulses
    • Cole, K.S.1
  • 5
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    • Electrical properties of tissue and cell suspensions
    • Academic Press. New York. This often-quoted review summarizes dispersion principles, mechanisms, and dielectric data for biological matter
    • 3. Schwan, H. P. 1957. Electrical properties of tissue and cell suspensions. In Advances in Biological and Medical Physics. Vol. 5, p. 147-209. Academic Press. New York. This often-quoted review summarizes dispersion principles, mechanisms, and dielectric data for biological matter.
    • (1957) Advances in Biological and Medical Physics , vol.5 , pp. 147-209
    • Schwan, H.P.1
  • 6
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    • Oxford University Press (Clarendon). London/New York. This and the following reference concentrate on macromolecular dielectric phenomena
    • 4. Grant, E. H., R. J. Sheppard & G. P. South. 1978. Dielectric Behavior of Biological Molecules in Solution. Oxford University Press (Clarendon). London/New York. This and the following reference concentrate on macromolecular dielectric phenomena.
    • (1978) Dielectric Behavior of Biological Molecules in Solution
    • Grant, E.H.1    Sheppard, R.J.2    South, G.P.3
  • 8
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    • Dielectric properties of tissues - A review
    • CRC Press, Boca Raton, Florida. This reference concentrates on cellular aspects
    • 6. Foster, K. R. & H. P. Schwan. 1995. Dielectric properties of tissues - a review. In Handbook of Biological Effects of Electro-Magnetic Radiation, p. 25-102. CRC Press, Boca Raton, Florida. This reference concentrates on cellular aspects.
    • (1995) Handbook of Biological Effects of Electro-magnetic Radiation , pp. 25-102
    • Foster, K.R.1    Schwan, H.P.2
  • 9
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    • Electrical conduction and dielectric behavior in biological systems
    • VCH Pub. Weinheim
    • 7. Schwan, H. P. & S. Takashima. 1992. Electrical conduction and dielectric behavior in biological systems. In Encyclopedia of Applied Physics. Vol. 5, p. 177-200. VCH Pub. Weinheim.
    • (1992) Encyclopedia of Applied Physics , vol.5 , pp. 177-200
    • Schwan, H.P.1    Takashima, S.2
  • 10
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    • The passive electrical properties of biological systems: Their significance in physiology, biophysics, and biotechnology
    • 8. Pethig, R & D. B. Keill. 1987. The passive electrical properties of biological systems: their significance in physiology, biophysics, and biotechnology, Phys. Med. Biol. 22: 933-977.
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    • Pethig, R.1    Keill, D.B.2
  • 11
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    • Determination of biological impedances
    • Academic Press. New York
    • 9. Schwan, H. P. 1963. Determination of biological impedances. In Physical Techniques in Biological Research. Vol. 6, p. 123-406. Academic Press. New York.
    • (1963) Physical Techniques in Biological Research , vol.6 , pp. 123-406
    • Schwan, H.P.1
  • 12
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    • Linear and nonlinear electrode polarization and biological materials
    • 10. Schwan, H. P. 1992. Linear and nonlinear electrode polarization and biological materials. Ann. Biomed. Eng. 20: 269-288.
    • (1992) Ann. Biomed. Eng. , vol.20 , pp. 269-288
    • Schwan, H.P.1
  • 13
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    • Thieme. Leipzig. Perhaps the first detailed text dealing with frequency-dependent properties of tissues and a review of the state of the art at the time
    • 11. Rajewsky, B. 1938. Ergebnisse der Biophysikalischen Forschung. Vol. 1. Thieme. Leipzig. Perhaps the first detailed text dealing with frequency-dependent properties of tissues and a review of the state of the art at the time.
    • (1938) Ergebnisse der Biophysikalischen Forschung , vol.1
    • Rajewsky, B.1
  • 14
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    • Biophysics of diathermy
    • chapter 3. Liecht Pub. New Haven, Connecticut
    • 12. Schwan, H. P. 1958. Biophysics of diathermy. In Therapeutic Heat. Second edition, chapter 3, p. 63-125. Liecht Pub. New Haven, Connecticut.
    • (1958) Therapeutic Heat. Second Edition , pp. 63-125
    • Schwan, H.P.1
  • 15
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    • Research on biological effects of nonionizing radiations: Contributions to biological properties, field interactions, and dosimetry
    • 13. Schwan, H. P. 1986. Research on biological effects of nonionizing radiations: contributions to biological properties, field interactions, and dosimetry. D'Arsonval Medal Lect., Bioelectromagnetic Soc., Bioelectromagnetics 7; 113-128.
    • (1986) D'Arsonval Medal Lect., Bioelectromagnetic Soc., Bioelectromagnetics , vol.7 , pp. 113-128
    • Schwan, H.P.1
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    • Surface conductance and other properties of latex particles measured by electrorotation
    • 14. Arnold, W. M., H. P. Schwan & U. Zimmermans. 1987. Surface conductance and other properties of latex particles measured by electrorotation. J. Phys. Chem. 91: 5093-5098.
    • (1987) J. Phys. Chem. , vol.91 , pp. 5093-5098
    • Arnold, W.M.1    Schwan, H.P.2    Zimmermans, U.3
  • 17
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    • Use of electric fields to monitor the dynamical aspect of cell behavior in tissue culture
    • 15. Giaever, I. & C. R. Keese. 1986. Use of electric fields to monitor the dynamical aspect of cell behavior in tissue culture. IEEE Trans. Biomed. Eng. 33(No. 3): 242-247.
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    • Giaever, I.1    Keese, C.R.2
  • 21
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    • Sedimentation determinations by electrical resistance measurement
    • 19. Schwan, H. 1948. Sedimentation determinations by electrical resistance measurement. Kolloid-Z. III: 53.
    • (1948) Kolloid-Z. , vol.3 , pp. 53
    • Schwan, H.1
  • 22
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    • The electrical conductance of suspensions of ellipsoids and its relation to the study of avian erythrocytes
    • 20. Velick, S. & M. Gorin. 1940. The electrical conductance of suspensions of ellipsoids and its relation to the study of avian erythrocytes. J. Gen. Physiol. 23: 753-771.
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    • Rotation of an isolated cell in a rotating electric field
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    • Arnold, W.M.1    Zimmermann, U.2
  • 24
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    • Dielectrophoretic spectra of single cells determined by feedback-controlled levitation
    • 22. Kaler, K. V. I. S. & T. B. Jones. 1990. Dielectrophoretic spectra of single cells determined by feedback-controlled levitation. Biophys. J. 57: 173-182.
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  • 25
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    • Dielectrophoretic field cages: Technique for cell, virus, and molecule handling
    • 23. Fuhr, G., T. H. Schnelle, R. Hagedorn & S. G. Shirley. 1995. Dielectrophoretic field cages: technique for cell, virus, and molecule handling. Cell. Eng. 1: 47-57.
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    • Fuhr, G.1    Schnelle, T.H.2    Hagedorn, R.3    Shirley, S.G.4
  • 27
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    • Electrorotation of particles measured by dynamic light scattering - A new dielectric spectroscopy technique
    • 25. Gimsa, J., B. Prueger, P. Erpmann & E. Donath. 1995. Electrorotation of particles measured by dynamic light scattering - a new dielectric spectroscopy technique. Colloids Surf. A98: 243-249.
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  • 28
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    • Electrostatic field induced forces and their biological implications
    • The Electrochemical Society. New York
    • 26. Schwan, H. P. & L. D. Sher. 1969. Electrostatic field induced forces and their biological implications. In Dielectrophoretic and Electrophoretic Deposition, p. 107-126. The Electrochemical Society. New York.
    • (1969) Dielectrophoretic and Electrophoretic Deposition , pp. 107-126
    • Schwan, H.P.1    Sher, L.D.2
  • 29
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    • Plenum. New York. The theory of field-induced force effects is presented by F. Sauer in two articles and experimental data are presented in an article by Schwan
    • 27. Chiabrera, A., C. Nicolini & H. P. Schwan, Eds. 1984. Interactions between Electromagnetic Fields and Cells, p. 1-18. Plenum. New York. The theory of field-induced force effects is presented by F. Sauer in two articles and experimental data are presented in an article by Schwan.
    • (1984) Interactions between Electromagnetic Fields and Cells , pp. 1-18
    • Chiabrera, A.1    Nicolini, C.2    Schwan, H.P.3
  • 30
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    • Electrorotation and levitation of cells and colloidal particles
    • 28. Foster, K. R., F. A. Sauer & H. P. Schwan. 1992. Electrorotation and levitation of cells and colloidal particles. Biophys. J. 63: 180-190.
    • (1992) Biophys. J. , vol.63 , pp. 180-190
    • Foster, K.R.1    Sauer, F.A.2    Schwan, H.P.3


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