Moore G P, Segundo J P, Perkel D H, Levitan H
Biophys J. 1970 Sep;10(9):876-900. doi: 10.1016/S0006-3495(70)86341-X.
The influence of basic open-loop synaptic connections on the firing of simultaneously recorded neurons has been investigated with auto- and cross-correlation histograms, using experimental records and computer simulations. The basic connections examined were direct synaptic excitation, direct synaptic inhibition, and shared synaptic input. Each type of synaptic connection produces certain characteristic features in the cross-correlogram depending on the properties of the synapse and statistical features in the firing pattern of each neuron. Thus, empirically derived cross-correlation measures can be interpreted in terms of the underlying physiological mechanisms. Their potential uses and limitations in the detection and identification of synaptic connections between neurons whose extracellularly recorded spike trains are available are discussed.
利用实验记录和计算机模拟,通过自相关和互相关直方图研究了基本开环突触连接对同时记录的神经元放电的影响。所研究的基本连接包括直接突触兴奋、直接突触抑制和共享突触输入。每种类型的突触连接根据突触的特性和每个神经元放电模式的统计特征,在互相关图中产生某些特征。因此,根据潜在的生理机制可以解释从经验得出的互相关测量值。讨论了它们在检测和识别可获得细胞外记录的尖峰序列的神经元之间突触连接方面的潜在用途和局限性。