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DESCRIPTION (provided by applicant): A multicellular model of mammalian circadian rhythm generation and synchronization will be developed through an integrated program ofneurophysiological experiments, theoretical modeling and multi-scale systems analysis and computation. Our hypothesis is that the coupling of individual pacemaker neurons is mediated by the neurotransmitter vasoactive intestinal peptide (VIP) prevalent in the suprachiasmatic nucleus (SCN). Experiments will identify the dose- and phase-dependence of SCN neurons on VIP for circadian synchrony. These experiments will guide the development of a pacemaker cell model in which a detailed description of the gene regulatory network responsible for rhythmic electrical activity is combined with a simplified description of the VIP signaling pathways implicated in circadian coupling. The pacemaker model will be used as a building block in the construction of neural population models that account for the known anatomy and physiology of the SCN including the core and shell divisions and the distribution of VIP producing cells in the two divisions. The resulting models will cover a wide range of time and length scales ranging from the gene regulation level to the neuron signaling level to the tissue level. Deterministic simulation codes will be developed to allow the efficient simulation of large ensembles of coupled SCN neurons. Stochastic effects at the gene and signaling levels will be studied by developing combined deterministic/stochastic simulation codes. Parallel theoretical work on the population model and a simplified surrogate model will yield insights into stochastic effects in large neuron populations. The combined experimental, theoretical and computational work will allow systematic perturbation analysis of the roles of individual neurons and their interconnections on the precision and robustness of circadian rhythm generation.
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DOI: 10.1186/1756-0500-5-163
发表时间: 2012-03-26
期刊: BMC research notes
影响因子: 1.8
作者: [Harang R, Bonnet G, Petzold LR]
通讯作者: Petzold LR
Multicellular model for intercellular synchronization in circadian neural networks.
昼夜节律神经网络中细胞间同步的多细胞模型。
DOI: 10.1016/j.bpj.2011.04.051
发表时间: 2011
期刊: Biophysical journal
影响因子: 3.4
作者: [Vasalou,Christina, Herzog,ErikD, Henson,MichaelA]
通讯作者: Henson,MichaelA
DOI: 10.1109/tcst.2012.2205254
发表时间: 2012-07-25
期刊: IEEE transactions on control systems technology : a publication of the IEEE Control Systems Society
影响因子: --
作者: [Wang Y, Núñez F, Doyle FJ 3rd]
通讯作者: Doyle FJ 3rd
DOI: 10.1109/tac.2012.2215772
发表时间: 2012-08-27
期刊: IEEE transactions on automatic control
影响因子: 6.8
作者: [Wang Y, Doyle FJ 3rd]
通讯作者: Doyle FJ 3rd
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    Stochastic Simulation Service: A Cloud Computing Framework for Modeling and Simul
    Stochastic Simulation Service: A Cloud Computing Framework for Modeling and Simul
    StochSS: A Next-Generation Toolkit for Simulation-Driven Biological Discovery
    Stochastic Simulation Service: A Cloud Computing Framework for Modeling and Simul
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