Department of Neurobiology, Weizmann Institute of Science, Rehovot 76100, Israel.
J Neurosci. 2010 Mar 24;30(12):4440-8. doi: 10.1523/JNEUROSCI.5062-09.2010.
In most of the in vivo electrophysiological studies of cortical processing, which are extracellular, the spike-triggered local field potential average (LFP STA) is the measure used to estimate the correlation between the synaptic inputs of individual neuron and the local population. To understand how the magnitude and shape of LFP STA reflect the underlying correlation of synaptic activities, the membrane potential of the firing neuron has to be recorded together with the LFP. Using intracellular recordings from the cortex of awake rats, we found that for a large range of firing rates and for different behavioral states, the LFP STA represents both in its waveform and its magnitude the cross-correlation between the membrane potential of the neuron and the LFP. This data, supported by further analysis, suggests that LFP STA does not represent large network events specific to the spike times, but rather the synchrony between the mean synaptic activity of the population and the membrane potential of the single neuron, present both around spike times and in the intervals between spikes. Furthermore, it introduces a novel interpretation of the available data from unit and LFP extracellular recording experiments.
在大多数皮质处理的体内电生理研究中,采用的是细胞外记录,使用基于尖峰触发的局部场电位平均(LFP STA)来估计单个神经元的突触输入与局部神经元群体之间的相关性。为了理解 LFP STA 的幅度和形状如何反映突触活动的潜在相关性,必须同时记录放电神经元的膜电位和 LFP。我们通过对清醒大鼠皮层的细胞内记录发现,对于很大范围的放电率和不同的行为状态,LFP STA 在其波形和幅度上都代表了神经元膜电位与 LFP 之间的互相关。这一数据得到了进一步分析的支持,表明 LFP STA 并不代表与尖峰时间特定的大网络事件,而是代表了神经元群体的平均突触活动与单个神经元膜电位之间的同步性,这种同步性不仅存在于尖峰时间周围,也存在于尖峰之间的间隔中。此外,它为现有的细胞内和细胞外记录实验的单位和 LFP 数据提供了一种新的解释。