Neural Basis of Sensorimotor Control, Department of Experimental Medical Science, Faculty of Medicine, Lund University, Lund, Sweden.
Front Neural Circuits. 2019 Jul 19;13:48. doi: 10.3389/fncir.2019.00048. eCollection 2019.
Neuroanatomy suggests that adjacent neocortical neurons share a similar set of afferent synaptic inputs, as opposed to neurons localized to different areas of the neocortex. In the present study, we made simultaneous single-electrode patch clamp recordings from two or three adjacent neurons in the primary somatosensory cortex (S1) of the ketamine-xylazine anesthetized rat to study the correlation patterns in their spike firing during both spontaneous and sensory-evoked activity. One difference with previous studies of pairwise neuronal spike firing correlations was that here we identified several different quantifiable parameters in the correlation patterns by which different pairs could be compared. The questions asked were if the correlation patterns between adjacent pairs were similar and if there was a relationship between the degree of similarity and the layer location of the pairs. In contrast, our results show that for putative pyramidal neurons within layer III and within layer V, each pair of neurons is to some extent unique in terms of their spiking correlation patterns. Interestingly, our results also indicated that these correlation patterns did not substantially alter between spontaneous and evoked activity. Our findings are compatible with the view that the synaptic input connectivity to each neocortical neuron is at least in some aspects unique. A possible interpretation is that plasticity mechanisms, which could either be initiating or be supported by transcriptomic differences, tend to differentiate rather than harmonize the synaptic weight distributions between adjacent neurons of the same type.
神经解剖学表明,相邻的新皮质神经元具有相似的传入突触输入集合,而不是位于新皮质不同区域的神经元。在本研究中,我们在氯胺酮-甲苯噻嗪麻醉的大鼠初级体感皮层(S1)中同时对两个或三个相邻神经元进行单电极膜片钳记录,以研究它们在自发和感觉诱发活动期间的尖峰放电的相关模式。与之前对成对神经元尖峰放电相关性的研究的一个不同之处在于,这里我们通过几个可量化的参数来识别相关模式中的差异,以便对不同的对进行比较。提出的问题是,相邻对之间的相关模式是否相似,以及相似程度与对的层位置之间是否存在关系。相比之下,我们的结果表明,对于 III 层和 V 层内的假定锥体细胞,每对神经元在其尖峰相关模式方面在某种程度上都是独特的。有趣的是,我们的结果还表明,这些相关模式在自发和诱发活动之间没有实质性改变。我们的发现与以下观点一致,即每个新皮质神经元的突触输入连接在至少某些方面是独特的。一种可能的解释是,可塑性机制,无论是由转录组差异引发还是支持,往往会使同一类型的相邻神经元之间的突触权重分布产生差异,而不是协调。