Qaswal, A.B.; Ababneh, O.; Khreesha, L.; Al-Ani, A.; Suleihat, A.; Abbad, M.
Mathematical Modeling of Ion Quantum Tunneling Reveals Novel Properties of Voltage-Gated Channels and Quantum Aspects of Their Pathophysiology in Excitability-Related Disorders. Pathophysiology 2021, 28, 116-154.
https://doi.org/10.3390/pathophysiology28010010
AMA Style
Qaswal AB, Ababneh O, Khreesha L, Al-Ani A, Suleihat A, Abbad M.
Mathematical Modeling of Ion Quantum Tunneling Reveals Novel Properties of Voltage-Gated Channels and Quantum Aspects of Their Pathophysiology in Excitability-Related Disorders. Pathophysiology. 2021; 28(1):116-154.
https://doi.org/10.3390/pathophysiology28010010
Chicago/Turabian Style
Qaswal, Abdallah Barjas, Omar Ababneh, Lubna Khreesha, Abdallah Al-Ani, Ahmad Suleihat, and Mutaz Abbad.
2021. "Mathematical Modeling of Ion Quantum Tunneling Reveals Novel Properties of Voltage-Gated Channels and Quantum Aspects of Their Pathophysiology in Excitability-Related Disorders" Pathophysiology 28, no. 1: 116-154.
https://doi.org/10.3390/pathophysiology28010010
APA Style
Qaswal, A. B., Ababneh, O., Khreesha, L., Al-Ani, A., Suleihat, A., & Abbad, M.
(2021). Mathematical Modeling of Ion Quantum Tunneling Reveals Novel Properties of Voltage-Gated Channels and Quantum Aspects of Their Pathophysiology in Excitability-Related Disorders. Pathophysiology, 28(1), 116-154.
https://doi.org/10.3390/pathophysiology28010010