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Annals of the New York Academy of Sciences|June 18, 1999
New light-scattering and field-trapping methods access the internal electric structure of submicron particles, like influenza virusesJ GimsaBioelectrochemistry (Amsterdam, Netherlands)|August 17, 2001
A comprehensive approach to electro-orientation, electrodeformation, dielectrophoresis, and electrorotation of ellipsoidal particles and biological cellsJ GimsaEuropean Biophysics Journal : EBJ|November 23, 2001
On the analytical description of transmembrane voltage induced on spheroidal cells with zero membrane conductanceJ Gimsa, D WachnerMolecular Membrane Biology|July 1, 1995
Do band 3 protein conformational changes mediate shape changes of human erythrocytes?J Gimsa, C RiedBiophysical Journal|July 24, 1998
A unified resistor-capacitor model for impedance, dielectrophoresis, electrorotation, and induced transmembrane potentialJ Gimsa, D WachnerMolecular Membrane Biology|April 1, 1997
Determination of viral neuraminidase specificity for membrane-bound sialic acids by cell electrophoresisU Gimsa, J GimsaBiophysical Journal|August 31, 1999
A polarization model overcoming the geometric restrictions of the laplace solution for spheroidal cells: obtaining new equations for field-induced forces and transmembrane potentialJ Gimsa, D WachnerBiophysical Journal|September 22, 2001
Analytical description of the transmembrane voltage induced on arbitrarily oriented ellipsoidal and cylindrical cellsJ Gimsa, D WachnerBiophysical Journal|December 31, 1997
Introducing phase analysis light scattering for dielectric characterization: measurement of traveling-wave pumpingJ Gimsa, P Eppmann, B PrügerVirus Research|June 1, 1996
Two evolutionary strategies of influenza viruses to escape host non-specific inhibitors: alteration of hemagglutinin or neuraminidase specificityU Gimsa, I Grötzinger, J GimsaPageof 2