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Ca^(2+)浓度振荡变化对突触可塑性影响的数学模型 被引量:1

The Mathematical Model of Synaptic Plasticity Changing During Calcium Concentration Oscillation
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摘要 目的:建立突触可塑性随Ca2+浓度振荡变化而改变的数学模型。方法:用微分方程分析Ca2+浓度振荡变化对NMDA受体下游信号通路的作用,并用数学函数描述了突触可塑性的相应改变。结果:该数学模型深刻阐述了Ca2+浓度变化对突触可塑性的影响。结论:用数学模拟和电生理实验相结合,为深层次研究学习记忆提供新视角。 Objective: To construct a mathematical model of conducting the change of synaptic plasticity during calcium concentration oscillation. Methods: Differential equation was used to analyze the effect of the NMDA receptors downstream signal pathways. Mathematical function was used to illustrate the change of synaptic plasticity. Results: The model illuminated the influence to the change of synaptic plasticity. Conclusion: Math modeling should be combined with electrophysiology experiment to investigate learning and memory further.
作者 赵江
出处 《数理医药学杂志》 2008年第1期1-3,共3页 Journal of Mathematical Medicine
关键词 Ca^2+’浓度振荡 突触可塑性 LTP/LTD 数学模型 calcium concentration oscillation synaptic plasticity LTP/LTD mathematical model
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