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Effects of fractal gating of potassium channels on neuronal behaviours

Effects of fractal gating of potassium channels on neuronal behaviours
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摘要 The classical model of voltage-gated ion channels assumes that according to a Markov process ion channels switch among a small number of states without memory, but a bunch of experimental papers show that some ion channels exhibit significant memory effects, and this memory effects can take the form of kinetic rate constant that is fractal. Obviously the gating character of ion channels will affect generation and propagation of action potentials, furthermore, affect generation, coding and propagation of neural information. However, there is little previous research on this series of interesting issues. This paper investigates effects of fractal gating of potassium channel subunits switching from closed state to open state on neuronal behaviours. The obtained results show that fractal gating of potassium channel subunits switching from closed state to open state has important effects on neuronal behaviours, increases excitability, rest potential and spiking frequency of the neuronal membrane, and decreases threshold voltage and threshold injected current of the neuronal membrane. So fractal gating of potassium channel subunits switching from closed state to open state can improve the sensitivity of the neuronal membrane, and enlarge the encoded strength of neural information. The classical model of voltage-gated ion channels assumes that according to a Markov process ion channels switch among a small number of states without memory, but a bunch of experimental papers show that some ion channels exhibit significant memory effects, and this memory effects can take the form of kinetic rate constant that is fractal. Obviously the gating character of ion channels will affect generation and propagation of action potentials, furthermore, affect generation, coding and propagation of neural information. However, there is little previous research on this series of interesting issues. This paper investigates effects of fractal gating of potassium channel subunits switching from closed state to open state on neuronal behaviours. The obtained results show that fractal gating of potassium channel subunits switching from closed state to open state has important effects on neuronal behaviours, increases excitability, rest potential and spiking frequency of the neuronal membrane, and decreases threshold voltage and threshold injected current of the neuronal membrane. So fractal gating of potassium channel subunits switching from closed state to open state can improve the sensitivity of the neuronal membrane, and enlarge the encoded strength of neural information.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2010年第10期632-641,共10页 中国物理B(英文版)
基金 Project supported by the Research Foundation of Education Bureau of Guangxi Autonomous Region of China Initial Research Fund of Guangxi Normal University, and the Research Fund of Key Laboratory Construction in College of Electronic Engineering of Guangxi Normal University
关键词 memory effects fractal gating neuronal spiking memory effects, fractal gating, neuronal spiking
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  • 1Hodgkin A F and Huxley A F 1952 J. Physiol. 117 500.
  • 2Hodgkin A L and Huxley A F 1952 J. Physiol. 116 449.
  • 3Hodgkin A L and Huxley A F 1952 J. Physiol. 116 473.
  • 4Hodgkin A L and Huxley A F 1952 J. Physiol. 116 497.
  • 5Hille B 1992 Ionic Channels of Excitable Membranes 2nd edn. (Sunderland: Sinauer).
  • 6Sakmann B and Neher E 1995 Single-Channel Recording 2nd edn. (New York: Plenum Press).
  • 7Fei R and Cui D W 2009 Acta Phys. Sin. 58 5133 .
  • 8Wang H Q, Yu L C and Chen Y 2009 Acta Phys. Sin. 58 5070 .
  • 9Careri G, Fasella P and Gratton E 1975 CRC. Crit. Rev. Biochem. 3 141.
  • 10Gurd F R N and Rothgeb T M 1979 Adv. Prot. Chem. 33 73.

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