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S R Thomas

Showing results (41-50 of 167) with videos related to

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Chemical Research in Toxicology|June 20, 1998
Oxidation and antioxidation of human low-density lipoprotein and plasma exposed to 3-morpholinosydnonimine and reagent peroxynitriteS R Thomas, M J Davies, R Stocker
Drug Metabolism and Disposition: the Biological Fate of Chemicals|January 30, 2010
Use of the entero-test, a novel approach for the noninvasive capture of biliary metabolites in dogsW J Guiney, C Beaumont, S R Thomas
The Journal of General Physiology|December 1, 1988
Intracellular pH controls cell membrane Na+ and K+ conductances and transport in frog skin epitheliumB J Harvey, S R Thomas, J Ehrenfeld
Neuropharmacology|June 1, 1984
An interactive 24-channel event-logging system based on the AIM 65 single-board microcomputerS R Thomas, M Grimwood, S D Iversen
Biofactors (Oxford, England)|July 23, 1999
A role for reduced coenzyme Q in atherosclerosis?S R Thomas, P K Witting, R Stocker
Practical Neurology|March 18, 2009
A difficult case solved at autopsy: memory loss, behavioural change and seizuresU G Schulz, S R Thomas, W Stewart
The Journal of Biological Chemistry|December 20, 1996
3-Hydroxyanthranilic acid is an efficient, cell-derived co-antioxidant for alpha-tocopherol, inhibiting human low density lipoprotein and plasma lipid peroxidationS R Thomas, P K Witting, R Stocker
Journal of Theoretical Biology|November 7, 1986
Exploration of apical sodium transport mechanisms in an epithelial model by network thermodynamic simulation of the effect of mucosal sodium depletion: I. Comparison of three different apical sodium permeability expressionsE Mintz, S R Thomas, D C Mikulecky
Journal of Theoretical Biology|November 7, 1986
Exploration of apical sodium transport mechanisms in an epithelial model by network thermodynamic simulation of the effect of mucosal sodium depletion: II. An apical sodium channel and amiloride blockingE Mintz, S R Thomas, D C Mikulecky
Kidney International|February 1, 1981
A network thermodynamic model of glomerular dynamics: application in the ratD E Oken, S R Thomas, D C Mikulecky
Pageof 17

Showing results (41-50 of 167) with videos related to

Sort By:
Pageof 17
Chemical Research in Toxicology|June 20, 1998
Oxidation and antioxidation of human low-density lipoprotein and plasma exposed to 3-morpholinosydnonimine and reagent peroxynitriteS R Thomas, M J Davies, R Stocker
Drug Metabolism and Disposition: the Biological Fate of Chemicals|January 30, 2010
Use of the entero-test, a novel approach for the noninvasive capture of biliary metabolites in dogsW J Guiney, C Beaumont, S R Thomas
The Journal of General Physiology|December 1, 1988
Intracellular pH controls cell membrane Na+ and K+ conductances and transport in frog skin epitheliumB J Harvey, S R Thomas, J Ehrenfeld
Neuropharmacology|June 1, 1984
An interactive 24-channel event-logging system based on the AIM 65 single-board microcomputerS R Thomas, M Grimwood, S D Iversen
Biofactors (Oxford, England)|July 23, 1999
A role for reduced coenzyme Q in atherosclerosis?S R Thomas, P K Witting, R Stocker
Practical Neurology|March 18, 2009
A difficult case solved at autopsy: memory loss, behavioural change and seizuresU G Schulz, S R Thomas, W Stewart
The Journal of Biological Chemistry|December 20, 1996
3-Hydroxyanthranilic acid is an efficient, cell-derived co-antioxidant for alpha-tocopherol, inhibiting human low density lipoprotein and plasma lipid peroxidationS R Thomas, P K Witting, R Stocker
Journal of Theoretical Biology|November 7, 1986
Exploration of apical sodium transport mechanisms in an epithelial model by network thermodynamic simulation of the effect of mucosal sodium depletion: I. Comparison of three different apical sodium permeability expressionsE Mintz, S R Thomas, D C Mikulecky
Journal of Theoretical Biology|November 7, 1986
Exploration of apical sodium transport mechanisms in an epithelial model by network thermodynamic simulation of the effect of mucosal sodium depletion: II. An apical sodium channel and amiloride blockingE Mintz, S R Thomas, D C Mikulecky
Kidney International|February 1, 1981
A network thermodynamic model of glomerular dynamics: application in the ratD E Oken, S R Thomas, D C Mikulecky
Pageof 17