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The neuronal response at extended timescales: long-term correlations without long-term memory

机译:扩展时间范围内的神经元反应:无长期记忆的长期相关性

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摘要

Long term temporal correlations frequently appear at many levels of neural activity. We show that when such correlations appear in isolated neurons, they indicate the existence of slow underlying processes and lead to explicit conditions on the dynamics of these processes. Moreover, although these slow processes can potentially store information for long times, we demonstrate that this does not imply that the neuron possesses a long memory of its input, even if these processes are bidirectionally coupled with neuronal response. We derive these results for a broad class of biophysical neuron models, and then fit a specific model to recent experiments. The model reproduces the experimental results, exhibiting long term (days-long) correlations due to the interaction between slow variables and internal fluctuations. However, its memory of the input decays on a timescale of minutes. We suggest experiments to test these predictions directly.
机译:长期时间相关性经常出现在神经活动的许多水平。我们表明,当这样的相关性出现在孤立的神经元中时,它们表明存在缓慢的潜在过程,并导致这些过程动力学的明确条件。此外,尽管这些缓慢的过程可能会长时间存储信息,但我们证明,即使这些过程与神经元反应双向耦合,也并不意味着神经元对其输入具有很长的记忆力。我们从广泛的生物物理神经元模型中得出这些结果,然后将特定模型拟合到最近的实验中。该模型重现了实验结果,由于慢变量和内部波动之间的相互作用,显示了长期(数天)的相关性。但是,它对输入的记忆会在几分钟的时间范围内衰减。我们建议进行实验以直接测试这些预测。

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