Keiko Ishihara. External K+ dependence of strong inward rectifier K+ channel conductance is caused not by K+ but by competitive pore blockade by external Na+. Journal of General Physiology. 2018. 150. 7. 977-989
ISHIHARA Keiko. External K+ dependence of strong inward rectifier K+ channel conductance is caused by competitive pore blockade by external Na+: how the external K+ ion accelerates the cardiac ventricular repolarization. 2018. 80. 4. 83
New insights into K+ dependences of the strong inward rectifier potassium channel Kir2.1 (Symposium44 (International Scientific Program Committee Symposium) / Cutting-edge approaches to long-lasting questions and novel aspects of inward rectifier K+ channel
(FAOPS2019/the 96th Annual Meeting of the Physiological Society of Japan 2019)
New insights into basic properties of the strong inward rectifier K+ channel
(The 49th NIPS International Symposium "Ion channels: looking back, seeing ahead" 2018)
Mechanisms for external K+ dependence of K+ permeation and gating of Kir2.1 inward rectifier K+ channel (Symposium 12: Simulation studies of structures, dynamics, and functions of ion channels and transporters ) K+ permeation and gating of Kir2.1 inward r
(2017)