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K T Kawagoe

Showing results (1-10 of 9) with videos related to

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Talanta|June 1, 1994
Characterization of amperometry for in vivo measurement of dopamine dynamics in the rat brainK T Kawagoe, R M Wightman
Analytical Chemistry|August 1, 1991
Etched carbon-fiber electrodes as amperometric detectors of catecholamine secretion from isolated biological cellsK T Kawagoe, J A Jankowski, R M Wightman
Journal of Neuroscience Methods|July 1, 1993
Principles of voltammetry and microelectrode surface statesK T Kawagoe, J B Zimmerman, R M Wightman
Neuroscience|November 1, 1992
Regulation of transient dopamine concentration gradients in the microenvironment surrounding nerve terminals in the rat striatumK T Kawagoe, P A Garris, D J Wiedemann, et al.
Journal of Neuroscience Methods|November 22, 2001
Determination of release and uptake parameters from electrically evoked dopamine dynamics measured by real-time voltammetryQ Wu, M E Reith, R M Wightman, et al.
Analytical Chemistry|December 15, 1991
Strategies for low detection limit measurements with cyclic voltammetryD J Wiedemann, K T Kawagoe, R T Kennedy, et al.
Journal of Neuroscience Methods|April 1, 1994
Interference by pH and Ca2+ ions during measurements of catecholamine release in slices of rat amygdala with fast-scan cyclic voltammetryS R Jones, G E Mickelson, L B Collins, et al.
Analytical Chemistry|December 15, 1992
Analysis of diffusional broadening of vesicular packets of catecholamines released from biological cells during exocytosisT J Schroeder, J A Jankowski, K T Kawagoe, et al.
Proceedings of the National Academy of Sciences of the United States of America|December 11, 1991
Temporally resolved catecholamine spikes correspond to single vesicle release from individual chromaffin cellsR M Wightman, J A Jankowski, R T Kennedy, et al.
Pageof 1

Showing results (1-10 of 9) with videos related to

Sort By:
Pageof 1
Talanta|June 1, 1994
Characterization of amperometry for in vivo measurement of dopamine dynamics in the rat brainK T Kawagoe, R M Wightman
Analytical Chemistry|August 1, 1991
Etched carbon-fiber electrodes as amperometric detectors of catecholamine secretion from isolated biological cellsK T Kawagoe, J A Jankowski, R M Wightman
Journal of Neuroscience Methods|July 1, 1993
Principles of voltammetry and microelectrode surface statesK T Kawagoe, J B Zimmerman, R M Wightman
Neuroscience|November 1, 1992
Regulation of transient dopamine concentration gradients in the microenvironment surrounding nerve terminals in the rat striatumK T Kawagoe, P A Garris, D J Wiedemann, et al.
Journal of Neuroscience Methods|November 22, 2001
Determination of release and uptake parameters from electrically evoked dopamine dynamics measured by real-time voltammetryQ Wu, M E Reith, R M Wightman, et al.
Analytical Chemistry|December 15, 1991
Strategies for low detection limit measurements with cyclic voltammetryD J Wiedemann, K T Kawagoe, R T Kennedy, et al.
Journal of Neuroscience Methods|April 1, 1994
Interference by pH and Ca2+ ions during measurements of catecholamine release in slices of rat amygdala with fast-scan cyclic voltammetryS R Jones, G E Mickelson, L B Collins, et al.
Analytical Chemistry|December 15, 1992
Analysis of diffusional broadening of vesicular packets of catecholamines released from biological cells during exocytosisT J Schroeder, J A Jankowski, K T Kawagoe, et al.
Proceedings of the National Academy of Sciences of the United States of America|December 11, 1991
Temporally resolved catecholamine spikes correspond to single vesicle release from individual chromaffin cellsR M Wightman, J A Jankowski, R T Kennedy, et al.
Pageof 1