Dasanayake Isuru, Li Jr-Shin
Washington University in St. Louis, St. Louis, Missouri 63130, USA.
Phys Rev E Stat Nonlin Soft Matter Phys. 2011 Jun;83(6 Pt 1):061916. doi: 10.1103/PhysRevE.83.061916. Epub 2011 Jun 27.
In this paper, we study optimal control problems of spiking neurons whose dynamics are described by a phase model. We design minimum-power current stimuli (controls) that lead to targeted spiking times. In particular, we consider bounded control amplitude and characterize the range of possible spiking times determined by the bound, which can be chosen sufficiently small within the range where the phase model is valid. We show that for a given bound the corresponding feasible spiking times are optimally achieved by piecewise continuous controls. We present analytic expressions with numerical simulations of the minimum-power stimuli for several phase models. We demonstrate the applicability of our method with an experimentally determined phase response curve.
在本文中,我们研究了由相位模型描述其动力学的脉冲神经元的最优控制问题。我们设计了能导致目标脉冲发放时间的最小功率电流刺激(控制量)。特别地,我们考虑有界控制幅度,并刻画由该幅度所确定的可能脉冲发放时间的范围,在相位模型有效的范围内,该幅度可以选择得足够小。我们表明,对于给定的幅度,相应的可行脉冲发放时间可通过分段连续控制最优地实现。我们给出了几个相位模型的最小功率刺激的解析表达式及数值模拟。我们用实验确定的相位响应曲线证明了我们方法的适用性。