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Parameter estimation of the Hodgkin-Huxley model using metaheuristics: application to neuromimetic analog integrated circuits

机译:霍奇金对Huxley模型的参数估计使用Metaheuristics:应用于神经染色模拟集成电路

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In 1952 Hodgkin and Huxley introduced the voltage-clamp technique to extract the parameters of the ionic channel model of a neuron. Although this method is widely used today, it has a lot of disadvantages. In this paper, we propose an alternative approach to the estimation method of the voltage-clamp technique using metaheuristics such as Simulated Annealing, Genetic Algorithms and Differential Evolution. This method avoids approximations of the original technique by simultaneously estimating all the parameters of a single ionic channel with a single fitness function. To compare the different methods, we apply them on measurements from a neuromimetic integrated circuit. This circuit, due to its analog behavior, provides us noisy data like a biological system. Therefore we can validate the efficiency of our method on experimental-like data.
机译:1952年,Hodgkin和Huxley介绍了电压 - 钳位技术,以提取神经元离子频道模型的参数。虽然此方法今天广泛使用,但它有很多缺点。在本文中,我们提出了一种替代方法,使用诸如模拟退火,遗传算法和差分演化等型式化学的电压钳技术的估计方法。该方法通过同时估计具有单个适合功能的单个离子通道的所有参数来避免原始技术的近似。为了比较不同的方法,我们将它们应用于来自神经染色集成电路的测量。由于其模拟行为,该电路提供了像生物系统的嘈杂数据。因此,我们可以在实验数据上验证我们的方法的效率。

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