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Kuo Wang

Showing results (11-20 of 462) with videos related to

Pageof 47
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Molecular Pharmacology|February 25, 2014
Block of human cardiac sodium channels by lacosamide: evidence for slow drug binding along the activation pathwayGing Kuo Wang, Sho-Ya Wang
Biochemical and Biophysical Research Communications|March 2, 2005
Block of inactivation-deficient cardiac Na(+) channels by acetyl-KIFMK-amideSho-Ya Wang, Ging Kuo Wang
Genomics|August 22, 2006
Quantitative analysis of wobble splicing indicates that it is not tissue specificKuo-Wang Tsai, Wen-Chang Lin
Archives of Biochemistry and Biophysics|April 10, 2026
Recent Discoveries in Mono- and Dinuclear Nonheme Iron Enzymes: Emerging Mechanisms and Catalytic StrategiesKuo Wang, Angela Yao, Wei-Chen Chang
Anesthesiology|August 10, 2010
Block of neuronal Na+ channels by antidepressant duloxetine in a state-dependent mannerSho-Ya Wang, Joanna Calderon, Ging Kuo Wang
Pain|September 12, 2006
Preferential block of inactivation-deficient Na+ currents by capsaicin reveals a non-TRPV1 receptor within the Na+ channelSho-Ya Wang, Jane Mitchell, Ging Kuo Wang
Chemical Science|May 14, 2025
An amine electrolyte additive with claw structure promoting the stability of a Zn anode in aqueous batteriesXiaoqi Sun, Hongtu Zhan, Qianrui Li, et al.
Channels (Austin, Tex.)|May 23, 2013
Persistent human cardiac Na+ currents in stably transfected mammalian cells: Robust expression and distinct open-channel selectivity among Class 1 antiarrhythmicsGing Kuo Wang, Gabriella Russell, Sho-Ya Wang
Tzu Chi Medical Journal|November 3, 2025
Characterizing the utilization of a federated clinical data network: A bibliometric analysis of TriNetX in TaiwanJoshua Wang, Kuo-Wang Tsai, Kuo-Cheng Lu
The Journal of Physiology|November 11, 2003
Mexiletine block of wild-type and inactivation-deficient human skeletal muscle hNav1.4 Na+ channelsGing Kuo Wang, Corinna Russell, Sho-Ya Wang
Pageof 47

Showing results (11-20 of 462) with videos related to

Sort By:
Pageof 47
Molecular Pharmacology|February 25, 2014
Block of human cardiac sodium channels by lacosamide: evidence for slow drug binding along the activation pathwayGing Kuo Wang, Sho-Ya Wang
Biochemical and Biophysical Research Communications|March 2, 2005
Block of inactivation-deficient cardiac Na(+) channels by acetyl-KIFMK-amideSho-Ya Wang, Ging Kuo Wang
Genomics|August 22, 2006
Quantitative analysis of wobble splicing indicates that it is not tissue specificKuo-Wang Tsai, Wen-Chang Lin
Archives of Biochemistry and Biophysics|April 10, 2026
Recent Discoveries in Mono- and Dinuclear Nonheme Iron Enzymes: Emerging Mechanisms and Catalytic StrategiesKuo Wang, Angela Yao, Wei-Chen Chang
Anesthesiology|August 10, 2010
Block of neuronal Na+ channels by antidepressant duloxetine in a state-dependent mannerSho-Ya Wang, Joanna Calderon, Ging Kuo Wang
Pain|September 12, 2006
Preferential block of inactivation-deficient Na+ currents by capsaicin reveals a non-TRPV1 receptor within the Na+ channelSho-Ya Wang, Jane Mitchell, Ging Kuo Wang
Chemical Science|May 14, 2025
An amine electrolyte additive with claw structure promoting the stability of a Zn anode in aqueous batteriesXiaoqi Sun, Hongtu Zhan, Qianrui Li, et al.
Channels (Austin, Tex.)|May 23, 2013
Persistent human cardiac Na+ currents in stably transfected mammalian cells: Robust expression and distinct open-channel selectivity among Class 1 antiarrhythmicsGing Kuo Wang, Gabriella Russell, Sho-Ya Wang
Tzu Chi Medical Journal|November 3, 2025
Characterizing the utilization of a federated clinical data network: A bibliometric analysis of TriNetX in TaiwanJoshua Wang, Kuo-Wang Tsai, Kuo-Cheng Lu
The Journal of Physiology|November 11, 2003
Mexiletine block of wild-type and inactivation-deficient human skeletal muscle hNav1.4 Na+ channelsGing Kuo Wang, Corinna Russell, Sho-Ya Wang
Pageof 47