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Low-dimensional attractor for neural activity from local field potentials in optogenetic mice

机译:低维吸引子用于光遗传学小鼠局部场电位的神经活动

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摘要

We used optogenetic mice to investigate possible nonlinear responses of the medial prefrontal cortex (mPFC) local network to light stimuli delivered by a 473 nm laser through a fiber optics. Every 2 s, a brief 10 ms light pulse was applied and the local field potentials (LFPs) were recorded with a 10 kHz sampling rate. The experiment was repeated 100 times and we only retained and analyzed data from six animals that showed stable and repeatable response to optical stimulations. The presence of nonlinearity in our data was checked using the null hypothesis that the data were linearly correlated in the temporal domain, but were random otherwise. For each trail, 100 surrogate data sets were generated and both time reversal asymmetry and false nearest neighbor (FNN) were used as discriminating statistics for the null hypothesis. We found that nonlinearity is present in all LFP data. The first 0.5 s of each 2 s LFP recording were dominated by the transient response of the networks. For each trial, we used the last 1.5 s of steady activity to measure the phase resetting induced by the brief 10 ms light stimulus. After correcting the LFPs for the effect of phase resetting, additional preprocessing was carried out using dendrograms to identify “similar” groups among LFP trials. We found that the steady dynamics of mPFC in response to light stimuli could be reconstructed in a three-dimensional phase space with topologically similar “8”-shaped attractors across different animals. Our results also open the possibility of designing a low-dimensional model for optical stimulation of the mPFC local network.
机译:我们使用光遗传学小鼠来研究内侧前额叶皮层(mPFC)局部网络对通过光纤通过473 nm激光传输的光刺激的可能的非线性响应。每2秒钟,施加10 ms的短暂光脉冲,并以10 kHz采样率记录局部场电势(LFP)。实验重复了100次,我们只保留和分析了六只动物的数据,这些动物对光刺激表现出稳定且可重复的反应。使用零假设检查了我们数据中是否存在非线性,即数据在时域内线性相关,否则为随机数据。对于每个线索,生成了100个代理数据集,并且时间反向不对称性和错误最近邻(FNN)都被用作零假设的区分统计量。我们发现非线性存在于所有LFP数据中。 LFP记录每2 s的前0.5 s由网络的瞬态响应控制。对于每个试验,我们使用最后1.5 s的稳定活动来测量由短暂的10 ms光刺激引起的相位重置。在校正了LFP的相位重置影响后,使用树状图进行了额外的预处理,以在LFP试验中识别“相似”组。我们发现,mPFC对光刺激的稳定动力学可以在三维相空间中重建,该相空间具有跨不同动物的拓扑相似的“ 8”形吸引子。我们的结果也为设计用于mPFC本地网络的光刺激的低维模型提供了可能性。

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