• DocumentCode
    2116290
  • Title

    Modeling of the nervous system: From modulation of glutamatergic and gabaergic molecular dynamics to neuron spiking activity

  • Author

    Bouteiller, Jean-Marie C. ; Legendre, A. ; Allam, Sushmita L. ; Ambert, N. ; Hu, Eric Y. ; Greget, R. ; Keller, A.F. ; Pernot, F. ; Bischoff, Stefan ; Baudry, M. ; Berger, Theodore W.

  • Author_Institution
    Dept. of Biomed. Eng., Univ. of Southern California, Los Angeles, CA, USA
  • fYear
    2012
  • fDate
    Aug. 28 2012-Sept. 1 2012
  • Firstpage
    6612
  • Lastpage
    6615
  • Abstract
    One of the fundamental characteristics of the brain is its hierarchical and temporal organization: scales in both space and time must be considered to fully grasp the system´s underlying mechanisms and their impact on brain function. Complex interactions taking place at the molecular level regulate neuronal activity that further modifies the function of millions of neurons connected by trillions of synapses, ultimately giving rise to complex function and behavior at the system level. Likewise, the spatial complexity is accompanied by a complex temporal integration of events taking place at the microsecond scale leading to slower changes occurring at the second, minute and hour scales. These integrations across hierarchies of the nervous system are sufficiently complex to have impeded the development of routine multi-level modeling methodologies. The present study describes an example of our multiscale efforts to rise from the biomolecular level to the neuron level. We more specifically describe how we integrate biomolecular mechanisms taking place at glutamatergic and gabaergic synapses and integrate them to study the impact of these modifications on spiking activity of a CA1 pyramidal cell in the hippocampus.
  • Keywords
    bioelectric phenomena; brain models; molecular dynamics method; neurophysiology; CA1 pyramidal cell; brain function; gabaergic molecular dynamics modulation; glutamatergic molecular dynamics modulation; hierarchical organization; hippocampus; multilevel modeling methodology; nervous system; neuron spiking activity; spatial complexity; temporal organization; Biological system modeling; Complexity theory; Computational modeling; Modulation; Neurons; Numerical models; Algorithms; Animals; Computer Simulation; GABAergic Neurons; Glutamine; Hippocampus; Humans; Kinetics; Models, Neurological; Neurons; Pyramidal Cells; Receptors, N-Methyl-D-Aspartate; Systems Biology; gamma-Aminobutyric Acid;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Engineering in Medicine and Biology Society (EMBC), 2012 Annual International Conference of the IEEE
  • Conference_Location
    San Diego, CA
  • ISSN
    1557-170X
  • Print_ISBN
    978-1-4244-4119-8
  • Electronic_ISBN
    1557-170X
  • Type

    conf

  • DOI
    10.1109/EMBC.2012.6347510
  • Filename
    6347510