A computational simulation of long-term synaptic potentiation inducing protocol processes with model of CA3 hippocampal microcircuit

Folia Morphol (Warsz). 2018;77(2):210-220. doi: 10.5603/FM.a2018.0042. Epub 2018 May 26.

Abstract

An experimental study of computational model of the CA3 region presents cog-nitive and behavioural functions the hippocampus. The main property of the CA3 region is plastic recurrent connectivity, where the connections allow it to behave as an auto-associative memory. The computer simulations showed that CA3 model performs efficient long-term synaptic potentiation (LTP) induction and high rate of sub-millisecond coincidence detection. Average frequency of the CA3 pyramidal cells model was substantially higher in simulations with LTP induction protocol than without the LTP. The entropy of pyramidal cells with LTP seemed to be significantly higher than without LTP induction protocol (p = 0.0001). There was depression of entropy, which was caused by an increase of forgetting coefficient in pyramidal cells simulations without LTP (R = -0.88, p = 0.0008), whereas such correlation did not appear in LTP simulation (p = 0.4458). Our model of CA3 hippocampal formation microcircuit biologically inspired lets you understand neurophysiologic data. (Folia Morphol 2018; 77, 2: 210-220).

Keywords: computer simulation; forgetting; hippocampus; learning and memory; long-term synaptic potentiation; theta rhythm.

MeSH terms

  • CA3 Region, Hippocampal / cytology
  • CA3 Region, Hippocampal / physiology*
  • Computer Simulation*
  • Humans
  • Long-Term Potentiation / physiology*
  • Models, Neurological*
  • Pyramidal Cells / cytology
  • Pyramidal Cells / physiology*