Chen Yanqing, Nitz Douglas A
The Neurosciences Institute, 10640 John Jay Hopkins Drive, San Diego, CA 92121, USA.
Biol Cybern. 2003 Mar;88(3):177-82. doi: 10.1007/s00422-002-0367-5.
We propose a new method of studying the correlation between neuronal spike trains. This technique is based on the analysis of relative phase between two point processes. Relative phase here is defined as the relative timing difference between two spike trains normalized by the associated interspike interval of one cell. This phase measurement is intended to reveal the relative timing relationship between spike trains at different firing rates. We apply this method to a numerical example and an example from two cerebellar neuronal spike trains of a behaving rat. The results are compared with classical cross-correlation analysis. We show that the technique can avoid some of the limitations of cross-correlation methods, reveal certain statistical dependencies that cannot be shown by cross correlation, and provide information as to the direction of influence between two spike trains.
我们提出了一种研究神经元放电序列之间相关性的新方法。该技术基于对两个点过程之间相对相位的分析。这里的相对相位定义为两个放电序列之间的相对时间差,该时间差通过一个细胞的相关峰峰间隔进行归一化。这种相位测量旨在揭示不同放电率下放电序列之间的相对时间关系。我们将此方法应用于一个数值示例以及一只行为大鼠的两个小脑神经元放电序列的示例。并将结果与经典的互相关分析进行比较。我们表明,该技术可以避免互相关方法的一些局限性,揭示互相关无法显示的某些统计依赖性,并提供有关两个放电序列之间影响方向的信息。