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C F Starmer

Showing results (51-60 of 103) with videos related to

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Computers and Biomedical Research, an International Journal|June 1, 1974
A comparison of frequency distributions for use in a model for selecting treatment in coronary artery diseaseC F Starmer, R A Rosati, J F McNeer
Biophysical Journal|July 1, 1994
Late Na channels in cardiac cells: the physiological role of background Na channelsZilberter YuI, C F Starmer, J Starobin, et al.
Indian Journal of Physiology and Pharmacology|October 1, 1994
Potassium channel blockade amplifies cardiac instability numerical studies of torsades de pointesC F Starmer, M R Reddy, A Namasivayam, et al.
The American Journal of Physiology|January 1, 1996
Cardiac transient outward potassium current: a pulse chemistry model of frequency-dependent propertiesL Liu, V I Krinsky, A O Grant, et al.
The Journal of Membrane Biology|November 1, 1993
Kinetics of interaction of disopyramide with the cardiac sodium channel: fast dissociation from open channels at normal rest potentialsA O Grant, D J Wendt, Y Zilberter, et al.
Cardiovascular Research|October 26, 1999
beta-Adrenergic action on wild-type and KPQ mutant human cardiac Na+ channels: shift in gating but no change in Ca2+:Na+ selectivityR Chandra, V S Chauhan, C F Starmer, et al.
The American Journal of Physiology|August 1, 1990
Use of ionic currents to identify and estimate parameters in models of channel blockadeC F Starmer, V V Nesterenko, F R Gilliam, et al.
Computers and Biomedical Research, an International Journal|June 1, 1987
Managing research data with self-documenting filesC F Starmer, D J Cherveny, M A Dietz, et al.
Circulation Research|November 1, 1989
Blockade of cardiac sodium channels by lidocaine. Single-channel analysisA O Grant, M A Dietz, F R Gilliam, et al.
The Journal of Clinical Investigation|November 1, 1989
Marked QRS complex abnormalities and sodium channel blockade by propoxyphene reversed with lidocaineD C Whitcomb, F R Gilliam, C F Starmer, et al.
Pageof 11

Showing results (51-60 of 103) with videos related to

Sort By:
Pageof 11
Computers and Biomedical Research, an International Journal|June 1, 1974
A comparison of frequency distributions for use in a model for selecting treatment in coronary artery diseaseC F Starmer, R A Rosati, J F McNeer
Biophysical Journal|July 1, 1994
Late Na channels in cardiac cells: the physiological role of background Na channelsZilberter YuI, C F Starmer, J Starobin, et al.
Indian Journal of Physiology and Pharmacology|October 1, 1994
Potassium channel blockade amplifies cardiac instability numerical studies of torsades de pointesC F Starmer, M R Reddy, A Namasivayam, et al.
The American Journal of Physiology|January 1, 1996
Cardiac transient outward potassium current: a pulse chemistry model of frequency-dependent propertiesL Liu, V I Krinsky, A O Grant, et al.
The Journal of Membrane Biology|November 1, 1993
Kinetics of interaction of disopyramide with the cardiac sodium channel: fast dissociation from open channels at normal rest potentialsA O Grant, D J Wendt, Y Zilberter, et al.
Cardiovascular Research|October 26, 1999
beta-Adrenergic action on wild-type and KPQ mutant human cardiac Na+ channels: shift in gating but no change in Ca2+:Na+ selectivityR Chandra, V S Chauhan, C F Starmer, et al.
The American Journal of Physiology|August 1, 1990
Use of ionic currents to identify and estimate parameters in models of channel blockadeC F Starmer, V V Nesterenko, F R Gilliam, et al.
Computers and Biomedical Research, an International Journal|June 1, 1987
Managing research data with self-documenting filesC F Starmer, D J Cherveny, M A Dietz, et al.
Circulation Research|November 1, 1989
Blockade of cardiac sodium channels by lidocaine. Single-channel analysisA O Grant, M A Dietz, F R Gilliam, et al.
The Journal of Clinical Investigation|November 1, 1989
Marked QRS complex abnormalities and sodium channel blockade by propoxyphene reversed with lidocaineD C Whitcomb, F R Gilliam, C F Starmer, et al.
Pageof 11