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Neuron participation in a synchrony-encoding assembly

机译:神经元参与同步编码程序集

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Background Synchronization of action potentials between neurons is considered to be an encoding process that allows the grouping of various and multiple features of an image leading to a coherent perception. How this coding neuronal assembly is configured is debated. We have previously shown that the magnitude of synchronization between excited neurons is stimulus-dependent. In the present investigation we compare the levels of synchronization between synchronizing individual neurons and the synchronizing pool of cells to which they belong. Results Even though neurons belonged to their respective pools, some cells synchronized for all presented stimuli while others were rather selective and only a few stimulating conditions produced a significant synchronization. In addition the experiments show that one synchronizing pair rarely replicates the level of synchrony between corresponding groups of units. But when synchronizing clusters of neurons increase in number, the correlation (measured as a coefficient of determination) between unit synchronization and the synchronization between the entire pools of cells to which individual neurons belong improves. Conclusion These results prompt the hypothesis that random or spontaneous synchronization becomes progressively less important, whereas coincident spikes related to encoding properties of targets gain significance because a particular configuration of an image biases the excitatory inputs in favor of connections driven by the applied features of the stimulus.
机译:背景神经元之间动作电位的同步被认为是一种编码过程,它允许对图像的各种特征和多个特征进行分组,从而产生连贯的感知。该编码神经元装配的配置方式存在争议。先前我们已经表明,兴奋的神经元之间的同步幅度取决于刺激。在本研究中,我们比较了同步单个神经元与它们所属的细胞同步池之间的同步水平。结果即使神经元属于它们各自的库,一些细胞对所有呈现的刺激均同步,而其他细胞则具有选择性,只有少数刺激条件产生了显着的同步。另外,实验表明,一对同步对很少复制相应单元组之间的同步水平。但是,当同步神经元簇的数量增加时,单位同步与单个神经元所属的整个细胞池之间的同步之间的相关性(作为确定系数来衡量)会提高。结论这些结果提示了以下假设:随机或自发同步变得越来越不重要,而与目标的编码属性相关的重合尖峰则变得有意义,因为图像的特定配置偏向于兴奋性输入,而倾向于由刺激的应用特征驱动的连接。

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