Unité de Neurosciences, Information et Complexité, CNRS, 91198 Gif-sur-Yvette, France.
J Neurosci Methods. 2012 Sep 15;210(1):3-14. doi: 10.1016/j.jneumeth.2011.09.010. Epub 2011 Sep 28.
Variations of excitatory and inhibitory conductances determine the membrane potential (V(m)) activity of neurons, as well as their spike responses, and are thus of primary importance. Methods to estimate these conductances require clamping the cell at several different levels of V(m), thus making it impossible to estimate conductances from "single trial" V(m) recordings. We present here a new method that allows extracting estimates of the full time course of excitatory and inhibitory conductances from single-trial V(m) recordings. This method is based on oversampling of the V(m). We test the method numerically using models of increasing complexity. Finally, the method is evaluated using controlled conductance injection in cortical neurons in vitro using the dynamic-clamp technique. This conductance extraction method should be very useful for future in vivo applications.
兴奋性和抑制性电导的变化决定了神经元的膜电位(V(m))活动及其尖峰反应,因此具有重要意义。估计这些电导的方法需要将细胞钳制在几个不同的 V(m)水平,因此无法从“单次试验”V(m)记录中估计电导。我们在这里提出了一种新的方法,该方法可以从单次试验 V(m)记录中提取兴奋性和抑制性电导的完整时间过程的估计值。该方法基于 V(m)的过采样。我们使用越来越复杂的模型对该方法进行了数值测试。最后,使用动态钳位技术在体外皮质神经元中进行受控电导注入来评估该方法。这种电导提取方法对于未来的体内应用应该非常有用。