Department of Mathematics, University of Pittsburgh, Pittsburgh, PA, 15260, USA.
J Math Neurosci. 2011 May 3;1(1):3. doi: 10.1186/2190-8567-1-3.
We consider the constrained optimization of excitatory synaptic input patterns to maximize spike generation in leaky integrate-and-fire (LIF) and theta model neurons. In the case of discrete input kicks with a fixed total magnitude, optimal input timings and strengths are identified for each model using phase plane arguments. In both cases, optimal features relate to finding an input level at which the drop in input between successive spikes is minimized. A bounded minimizing level always exists in the theta model and may or may not exist in the LIF model, depending on parameter tuning. We also provide analytical formulas to estimate the number of spikes resulting from a given input train. In a second case of continuous inputs of fixed total magnitude, we analyze the tuning of an input shape parameter to maximize the number of spikes occurring in a fixed time interval. Results are obtained using numerical solution of a variational boundary value problem that we derive, as well as analysis, for the theta model and using a combination of simulation and analysis for the LIF model. In particular, consistent with the discrete case, the number of spikes in the theta model rises and then falls again as the input becomes more tightly peaked. Under a similar variation in the LIF case, we numerically show that the number of spikes increases monotonically up to some bound and we analytically constrain the times at which spikes can occur and estimate the bound on the number of spikes fired.
我们考虑通过优化兴奋型突触输入模式来最大限度地提高渗漏积分-触发(LIF)和 theta 模型神经元的发放率。在离散输入刺激的情况下,采用相平面方法为每个模型确定了最优的输入时间和强度。在这两种情况下,最优的特征都与找到一个输入水平有关,在此水平下,连续发放之间的输入下降最小。在 theta 模型中始终存在有界的最小化水平,而在 LIF 模型中则不一定存在,这取决于参数调整。我们还提供了估计给定输入序列产生的脉冲数的解析公式。在固定总幅度的连续输入的第二种情况下,我们分析了输入形状参数的调整,以最大化在固定时间间隔内发生的脉冲数。结果是通过我们推导的变分边值问题的数值解以及对 theta 模型的分析以及对 LIF 模型的模拟和分析的组合获得的。特别是与离散情况一致,theta 模型中的脉冲数随着输入变得更加集中而先增加后再次减少。在 LIF 情况下类似的变化下,我们通过数值显示在某些边界处,脉冲数单调增加,并且我们通过分析限制了可以发生脉冲的时间,并估计了发射的脉冲数的上限。