首页> 美国卫生研究院文献>Frontiers in Computational Neuroscience >Summation in the Hippocampal CA3-CA1 Network Remains Robustly Linear Following Inhibitory Modulation and Plasticity but Undergoes Scaling and Offset Transformations
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Summation in the Hippocampal CA3-CA1 Network Remains Robustly Linear Following Inhibitory Modulation and Plasticity but Undergoes Scaling and Offset Transformations

机译:在抑制性调节和可塑性之后海马CA3-CA1网络中的求和仍保持稳固的线性但正在进行缩放和偏移变换。

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摘要

Many theories of neural network function assume linear summation. This is in apparent conflict with several known forms of non-linearity in real neurons. Furthermore, key network properties depend on the summation parameters, which are themselves subject to modulation and plasticity in real neurons. We tested summation responses as measured by spiking activity in small groups of CA1 pyramidal neurons using permutations of inputs delivered on an electrode array. We used calcium dye recordings as a readout of the summed spiking response of cell assemblies in the network. Each group consisted of 2–10 cells, and the calcium signal from each cell correlated with individual action potentials. We find that the responses of these small cell groups sum linearly, despite previously reported dendritic non-linearities and the thresholded responses of individual cells. This linear summation persisted when input strengths were reduced. Blockage of inhibition shifted responses up toward saturation, but did not alter the slope of the linear region of summation. Long-term potentiation of synapses in the slice also preserved the linear fit, with an increase in absolute response. However, in this case the summation gain decreased, suggesting a homeostatic process for preserving overall network excitability. Overall, our results suggest that cell groups in the CA3-CA1 network robustly follow a consistent set of linear summation and gain-control rules, notwithstanding the intrinsic non-linearities of individual neurons. Cell-group responses remain linear, with well-defined transformations following inhibitory modulation and plasticity. Our measures of these transformations provide useful parameters to apply to neural network analyses involving modulation and plasticity.
机译:神经网络功能的许多理论都假设线性求和。这显然与真实神经元中的几种已知形式的非线性冲突。此外,关键网络属性取决于求和参数,这些求和参数本身在真实神经元中会受到调制和可塑性的影响。我们使用在电极阵列上传递的输入信号进行排列,测试了通过在小群CA1锥体神经元中加标活动来测量的求和响应。我们使用钙染料记录作为网络中细胞装配体总加标反应的读数。每组由2-10个细胞组成,每个细胞的钙信号与单个动作电位相关。我们发现,尽管先前报道了树突状非线性和单个细胞的阈值响应,但是这些小细胞组的响应线性地求和。当输入强度降低时,这种线性求和仍然存在。抑制的阻止将响应向上移至饱和,但并未改变求和线性区域的斜率。切片中突触的长期增强也保留了线性拟合,并增加了绝对响应。但是,在这种情况下,求和增益降低,​​这表明了用于保持整体网络兴奋性的稳态过程。总体而言,我们的结果表明,尽管单个神经元具有内在的非线性,但CA3-CA1网络中的细胞组会严格遵循一组一致的线性求和和增益控制规则。细胞群反应保持线性,在抑制性调节和可塑性之后具有明确定义的转化。我们对这些转换的测量提供了有用的参数,可应用于涉及调制和可塑性的神经网络分析。

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