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I Seyama

Showing results (21-30 of 44) with videos related to

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Biophysical Journal|March 1, 1980
Current-dependent block of nerve membrane sodium channels by paragracineI Seyama, C H Wu, T Narahashi
Current Pharmaceutical Design|February 14, 2006
Na+ channel pharmacology and molecular mechanisms of gatingK Yamaoka, S M Vogel, I Seyama
The Japanese Journal of Physiology|February 16, 2002
Rapid cardiac adaptation to exercise demand signal and execution of maximal leg muscle contractionK Takayanagi, I Ninomiya, O Yoshimura, et al.
The American Journal of Physiology|August 1, 1994
Intracellular signal transduction systems do not regulate Na channel in frog ventricular cellsK Sumii, M Munemori, H Miyoshi, et al.
The Journal of Physiology|August 3, 2001
State-dependent action of grayanotoxin I on Na(+) channels in frog ventricular myocytesT Yuki, K Yamaoka, M Yakehiro, et al.
The Journal of Pharmacology and Experimental Therapeutics|June 1, 1981
Structure-activity relationship for grayanotoxin derivatives in frog skeletal muscleT Masutani, I Seyama, T Narahashi, et al.
Journal of the Autonomic Nervous System|May 2, 2000
Augmentation of somato-sympathetic reflex in the ischemic hindlimb of anesthetized ratsJ Shimizu, I Ninomiya, K Furukawa, et al.
The Japanese Journal of Physiology|January 1, 1992
Block of sodium channels by tyramine and its analogue (N-feruloyl tyramine) in frog ventricular myocytesI Yusuf, K Yamaoka, H Otsuka, et al.
Pflugers Archiv : European Journal of Physiology|August 26, 1998
Characteristics of two slow inactivation mechanisms and their influence on the sodium channel activity of frog ventricular myocytesT Furue, M Yakehiro, K Yamaoka, et al.
The Japanese Journal of Physiology|January 1, 1977
Effect of hemolysin produced by Vibrio parahaemolyticus on membrane conductance and mechanical tension of rabbit myocardiumI Seyama, H Irisawa, T Honda, et al.
Pageof 5

Showing results (21-30 of 44) with videos related to

Sort By:
Pageof 5
Biophysical Journal|March 1, 1980
Current-dependent block of nerve membrane sodium channels by paragracineI Seyama, C H Wu, T Narahashi
Current Pharmaceutical Design|February 14, 2006
Na+ channel pharmacology and molecular mechanisms of gatingK Yamaoka, S M Vogel, I Seyama
The Japanese Journal of Physiology|February 16, 2002
Rapid cardiac adaptation to exercise demand signal and execution of maximal leg muscle contractionK Takayanagi, I Ninomiya, O Yoshimura, et al.
The American Journal of Physiology|August 1, 1994
Intracellular signal transduction systems do not regulate Na channel in frog ventricular cellsK Sumii, M Munemori, H Miyoshi, et al.
The Journal of Physiology|August 3, 2001
State-dependent action of grayanotoxin I on Na(+) channels in frog ventricular myocytesT Yuki, K Yamaoka, M Yakehiro, et al.
The Journal of Pharmacology and Experimental Therapeutics|June 1, 1981
Structure-activity relationship for grayanotoxin derivatives in frog skeletal muscleT Masutani, I Seyama, T Narahashi, et al.
Journal of the Autonomic Nervous System|May 2, 2000
Augmentation of somato-sympathetic reflex in the ischemic hindlimb of anesthetized ratsJ Shimizu, I Ninomiya, K Furukawa, et al.
The Japanese Journal of Physiology|January 1, 1992
Block of sodium channels by tyramine and its analogue (N-feruloyl tyramine) in frog ventricular myocytesI Yusuf, K Yamaoka, H Otsuka, et al.
Pflugers Archiv : European Journal of Physiology|August 26, 1998
Characteristics of two slow inactivation mechanisms and their influence on the sodium channel activity of frog ventricular myocytesT Furue, M Yakehiro, K Yamaoka, et al.
The Japanese Journal of Physiology|January 1, 1977
Effect of hemolysin produced by Vibrio parahaemolyticus on membrane conductance and mechanical tension of rabbit myocardiumI Seyama, H Irisawa, T Honda, et al.
Pageof 5