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轴突货物运输的数学建模与参数估计

Mathematical modeling and parameter estimation of axonal cargo transport.

作者信息

Zadeh Kouroush Sadegh, Shah Sameer B

机构信息

Fischell Department of Bioengineering, University of Maryland, 3236 Kim Engineering Building, College Park, MD 20742, USA.

出版信息

J Comput Neurosci. 2010 Jun;28(3):495-507. doi: 10.1007/s10827-010-0232-9. Epub 2010 Apr 21.

Abstract

A systems approach was developed and implemented to simulate and analyze motor-assisted axonal transport in nervous system. The methodology employs a Galerkin based linear finite element solver of a system of three coupled partial differential equations governing axonal diffusion-reaction-advection with an efficient optimization algorithm and an experimental time-space series to extract physio-chemical and biological information from experiments and to analyze the dynamics of molecular motor protein-assisted axonal transport. Our simulations were successfully applied and compared to a synthetic dataset based on measured motility parameters as well as experimental data of microtubule-associated protein MAP1A transport in mouse retinal ganglion cells (Nixon et al. 1990) and light neurofilament subunit transport within the optic nerve (Jung and Shea 1999). Parameter sensitivity analysis was performed to quantify the dependence of the dynamics of axonal transport on model parameters. Based on sensitivity analysis, we recommend a sampling strategy for future experiments that would produce the most sensitive and informative data. Our synergistic approach has excellent potential for efficiently probing our understanding of mechanisms of motor-mediated axonal transport in the nervous system.

摘要

开发并实施了一种系统方法,用于模拟和分析神经系统中的运动辅助轴突运输。该方法采用基于伽辽金的线性有限元求解器,求解由三个耦合偏微分方程组成的系统,该系统控制轴突扩散-反应-平流,并结合高效优化算法和实验时空序列,从实验中提取物理化学和生物学信息,分析分子运动蛋白辅助轴突运输的动力学。我们的模拟成功应用于基于测量的运动参数的合成数据集,以及小鼠视网膜神经节细胞中微管相关蛋白MAP1A运输(尼克松等人,1990年)和视神经内轻神经丝亚基运输(荣格和谢伊,1999年)的实验数据,并进行了比较。进行了参数敏感性分析,以量化轴突运输动力学对模型参数的依赖性。基于敏感性分析,我们为未来的实验推荐了一种采样策略,该策略将产生最敏感和信息丰富的数据。我们的协同方法在有效探索我们对神经系统中运动介导的轴突运输机制的理解方面具有巨大潜力。

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