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Spatial clustering property and its self-similarity in membrane potentials of hippocampal CA1 pyramidal neurons for a spatio-temporal input sequence

机译:时空输入序列的海马CA1锥体神经元膜电位的空间聚集特性及其自相似性

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摘要

To clarify how the information of spatiotemporal sequence of the hippocampal CA3 affects the postsynaptic membrane potentials of single pyramidal cells in the hippocampal CA1, the spatio-temporal stimuli was delivered to Schaffer collaterals of the CA3 through a pair of electrodes and the post-synaptic membrane potentials were recorded using the patch-clamp recording method. The input–output relations were sequentially analyzed by applying two measures; “spatial clustering” and its “self-similarity” index. The membrane potentials were hierarchically clustered in a self-similar manner to the input sequences. The property was significantly observed at two and three time-history steps. In addition, the properties were maintained under two different stimulus conditions, weak and strong current stimulation. The experimental results are discussed in relation to theoretical results of Cantor coding, reported by Tsuda (Behav Brain Sci 24(5):793–847, ) and Tsuda and Kuroda (Jpn J Indust Appl Math 18:249–258, ; Cortical dynamics, pp 129–139, Springer-Verlag, ).
机译:为了阐明海马CA3的时空序列信息如何影响海马CA1中单个锥体细胞的突触后膜电位,时空刺激通过一对电极和突触后膜传递至CA3的Schaffer侧支使用膜片钳记录方法记录电位。投入产出关系通过采用两种措施进行了顺序分析。 “空间聚类”及其“自相似性”指标。膜电位以与输入序列自相似的方式分层聚类。在两个和三个时间历史步骤中显着观察到该特性。另外,在两种不同的刺激条件下,即弱电流和强电流刺激下,这些特性得以保持。有关实验结果的讨论与Cantor编码的理论结果有关,由Tsuda(Behav Brain Sci 24(5):793–847,)和Tsuda and Kuroda(Jpn J Indust Appl Math 18:249-258;皮层动力学)报道。 ,第129–139页,Springer-Verlag,)。

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